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Page 1: WELL SITE SERVICES - etdevelopers.cometdevelopers.com/design-preview/STS/product-catalog/STS_Product... · Thru-Tubing Product List ... The key to harnessing this unique technology

W E L L S I T E S E R V I C E S

Page 2: WELL SITE SERVICES - etdevelopers.cometdevelopers.com/design-preview/STS/product-catalog/STS_Product... · Thru-Tubing Product List ... The key to harnessing this unique technology

Thru-Tubing Product List.....................................................................TT-1Motorhead Assembly...................................................... TT-2Coil Connector................................................................ TT-3Dual Flapper Check Valve.............................................. TT-4Hydraulic Disconnect......................................................TT-5Dual Circulation Sub.......................................................TT-6Torque Thru Knuckle Joint .............................................TT-7Annular Velocity Sub.......................................................TT-8Smart Drill System..........................................................TT-9Computerized Dyna-Meter............................................TT-10Jarable Mud Motors......................................................TT-11Shoes & Mills ...............................................................TT-12Boot Basket..................................................................TT-13Venturi Reverse Basket..............................................TT-14aVenturi Reverse Basket Charts...............................TT-14b-eTubing Cleaner............................................................ .TT-15Locking Swivel Joint................................................... ..TT-16Hydraulic Oil Jar Intensifi er (Bi-Directional)..................TT-17Hydraulic Oil Jar (Bi-Directional)...................................TT-18Hydraulic Oil Jar (Up Only)...........................................TT-19Hydraulic Overshot.......................................................TT-20Mechanical Overshot....................................................TT-21Continuous Coil Tubing Overshot.................................TT-22Continuous Cutting Overshot........................................TT-23Hydraulic J Series Pulling Tool.....................................TT-24Hydraulic GS Series Pulling Tool..................................TT-25Hydraulic Bulldog Spear...............................................TT-26Hydraulic Centralizer.....................................................TT-27Choke Sub..................................................................TT-28aChoke Sub Charts...................................................TT-28b-cMechanical Centralizer.................................................TT-29Nipple Locator...............................................................TT-30Spinning Wash Tool......................................................TT-31Invertible Packer...........................................................TT-32Hydro Hammer..............................................................TT-33Hydraulic Shifting Tool (Double Ended)........................TT-34SpiroStar Stator..........................................................TT-35aSpiroStar Stator Chart................................................TT-35b

TABLE OF CONTENTS

Page 3: WELL SITE SERVICES - etdevelopers.cometdevelopers.com/design-preview/STS/product-catalog/STS_Product... · Thru-Tubing Product List ... The key to harnessing this unique technology

THRU TUBING

Product ListMotor Head Assemblies

Coiled Tubing Connectors• External Slip Type• Internal Slip Type• Internal Roll On• Internal Weld On

Saver Subs

Dual Back Pressure Valves• Flapper Type• Ball Type

Circulating Subs• Dual Circulating Sub• Single Circulating Sub

Hydraulic Disconnects• Drop Ball Type• Straight Pull Type

Torque Thru Knuckle Joints

Locking Swivel Joints

Indexing Tools

Pulling Tools• Mechanical GS• Mechanical JDC• Hydraulic GS• Hydraulic JDC

Box / Taper Tapes

Weight Bars

Deployment Bars

Overshots• Hydraulic • Mechanical• Cutting• Continuous Wire Grabs• Single Prong (Rope Spear)• 2 Prong• 3 Prong• 4 Prong

Cable Grabs• Single Prong (Rope Spear)• Sliding Barrel

Shifting Tools• Hydraulic• Mechanical

Nipple Locators• Hydraulic• Spring Type• Bladed Type

Tubing End Locator• Hydraulic• 1 Arm Bandit Style

Centralizers• Hydraulic• Mechanical• Fixed • Interchangeable• Teflon

Wash Tools• Spinning Wash Nozzle• Reverse Circulating Sub• 5 Port Nozzle• Full Bore Nozzle• Multi Ported Nozzle• Adjustable Jet Nozzles

Packers• Invertible

Lead Impression Blocks

Blind Boxes

Magnets

Spears• Itco• Hydraulic Bull Dog• Mechanical Bull Dog• Mechanical PR

Impact Hammers

Bait Subs• Internal• External

Safety Valves

BHA In Line Screens

Rotor Catchers

Smart Drill Systems

Mud Motors• Fluid Fit• Hot Hole• Nitrogen

Venturi Jet Baskets

Mills• Carbide• Diamond

Shoes• Carbide• Diamond• Borium

Wash Pipe

Tubing Cleaners

Boot Baskets

Surface Iron• Safety Clamps• Lift Subs• Pull Test Subs• Dual Flapper Test Subs• Work Plates• Ditch Magnets• Aluminum Tool Boxes

TT-1

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THRU TUBING

Motorhead Assembly

The Motorhead Assembly (M.A) has been developed in recognition to industry demands for compact, heavy duty, integrated BHA components. The M.A combines the Double Flapper Check Valve with the Heavy Duty Hydraulic Disconnect and the Dual Circulation Valve, standard components for virtually all toolstring designs. The tubing connector has been deliberately eliminated to give the added flexibility of operator choice for the connector type and coil tubing size.

The M.A. provides the operator with a compact, versatile, upper BHA and offers the following features:

- The M.A’s compact design gives an overall length saving of approximately 30% over the use of conven-tional individual components.- The high torque capability of the M.A. provides the ideal Motorhead for today’s high demand coiled tubing drilling applications.- The choice of tubing connector is not dictated by the M.A., therefore giving the operator the flexibility to choose the most appropriate connector to suit the application.- With a considerable reduction in the number of component parts, seals and thread connections, the M.A. is uncomplicated to assemble/disassemble and inexpensive to redress.

Coil O.D. Tool O.D. Min. I.D.* S to S Tool Length 1.25" 1.68" .406" 27"

1.500" 2.125" .406" 25" 1.75" 2.875" .56" 28"

TT-2

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THRU TUBING

Coil Connector

* Tools I.D. may vary due to the connection type.

Coil O.D. Tool O.D. Min. I.D.* Tool Length 1.00" 1.68" .75" 8.87"

8.25" 9.50" 9.50" 9.62"

10.38"

10.12"

11.12"

9.38"

9.87"

.75" 1.00" 1.00" 1.00" 1.00" 1.00" 1.38" 1.38" 1.90"

1.25" 1.68" 1.25" 1.85" 1.500" 1.93" 1.500" 2.125" 1.500" 2.875" 1.75" 2.188" 1.75" 2.875" 2.00" 2.875" 2.00" 3.125"

The Coil Tubing Connector is designed to be used on coil tubing with a diameter of 1.00" to 2.00".

The coil tubing connector is designed to surpass the tensile and burst of the coil tubing, therefore making the connector much stronger than the coil itself. The connector has a maximum I.D. for a non-restricted flow rate to allow balls to pass through tools below.

TT-3

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THRU TUBING

Dual Flapper Check Valve

The Dual Flapper Check Valve is used in situations where the operator wishes to eliminate the flow or potential flow of fluids back through the work string while running or retrieving pipe under pressure.

The Dual Flapper Check Valve is designed so that the flow area through the valve is equal to or greater than the cross sectional area of I.D. of the valve seat. The Dual Flapper Check Valves are easy to assemble or disassemble, a new flapper cartridge can be inserted in a matter of minutes. The Dual Flapper Check Valve combines reliability, minimum flow restrictions, and the ability to pump wiper plugs or to drop balls through the valve for disconnects, etc.

As with ball type check valves, rust, scale, paraffin, dried hydrocar-bons or materials do not pose a threat of plugging this flapper check valve due to the ability to pump through the valve at all times.

The flapper valve and seat are directly exposed to the pumped fluid and some corrosion may occur on the seat surface and possibly the flapper valve itself, depending on a variety of factors including velocity through the valve, abrasiveness of the fluid pumped, solids content, and duration of the exposure. The flappers and valve seats should be checked and replaced when required.

The Dual Flapper Check Valves are available in a variety of materials to meet your requirements. Please specify materials desired or well conditions when ordering.

Tool O.D. Min. I.D.* Tool Length 1.25" .500" 8.75"

1.500" .469" 15.22" 1.68" .68" 12.50" 1.75" .68" 12.75" 1.81" .68"

.68" 12.75"

2.125" 13.62" 2.875" 1.015" 14.50"

TT-4

Page 7: WELL SITE SERVICES - etdevelopers.cometdevelopers.com/design-preview/STS/product-catalog/STS_Product... · Thru-Tubing Product List ... The key to harnessing this unique technology

THRU TUBING

Hydraulic Disconnect

The Hydraulic Disconnect was designed to withstand the heavy demands of drilling applications while providing a surface controlled means of releasing the coiled tubing from the tools attached below. It is a "Ball and Seat" operated disconnect with Splined Torque Lugs specifically designed for use with Downhole Motors and other situations requiring that the Disconnect transmit torque.

Advances in design incorporated into this latest generation of coiled tubing disconnect include: reduced clearance between the upper and lower halves to better withstand both axial and side thrust loads, increased strength in the load carrying portions of the tool, and large circulating ports exposed after the locking sleeve has shifted.

Features:- Sealed and pressure balanced to allow hydraulic operations- Adjustable Ball Seat ID- Transmits high torque loads- High tensile strength ratings- Internal fishing neck for easy washing and re-entry- Collet design to minimize accidental release- Lower sealing bore to allow resealing w/ Heavy Duty Retrieval Tool or Locator Seal assemblies

Tool O.D. Min. I.D. Tool Length 1.500" .375" 19.85" 1.68" .468" 18.62" 1.75" .468" 16.38" 1.81" .468"

.531" 19.62"

2.125" 21.50" 2.875" .68" 27.43"

TT-5

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THRU TUBING

Dual Circulation Sub

The Dual Circulation Valve provides two means of establishing tubing to annulus communication on a selective basis, when utilized with other downhole tools.

Features:- Ball drop actuated shear-out Seat with full open ports- Large diameter Rupture Disks- Rupture Disk available in a range of pressure ratings

Operation:The Dual Circulation Valve is normally run below a hydraulic disconnect. In the running position, the Dual Circulation Valve allows circulation down the tubing as needed, as in PDM drilling. If the BHA becomes stuck and circulation is lost, the rupture disk can be blown by overpressuring, allowing circulation of the trip ball through the coil down to the valve. Pressuring against the ball will shear screws opening the ports to allow full open circulation of returns to surface.

Tool O.D. Min. I.D. Tool Length 1.500" .250" 12.375" 1.68" .375" 11.56" 1.81" .375" 11.87"

2.125" .43" 12.56" 2.875" .56" 17.06"

TT-6

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THRU TUBING

Torque-Thru Knuckle Joint

The Torque-Thru Knuckle Joint is used in a deviated well to aid in centralization with running a centralizer, stabilizer or mud motor for a few examples.

The Torque-Thru Knuckle Joint will function the same way as the Sealed Knuckle Joint but with the addition that it will transmit torque. It can be placed above and below the mud motor, preventing any unnecessary side loads that may reduce the motor’s life span or cause damages.

The knuckle joint is not a weak link in the string, the footpounds that can be transmitted is equivalent to if not greater than the mud motor. The knuckle joint is also sealed to allow for fluid to pass for washing or operating any hydraulic tools below it.

Tool O.D. Min. I.D. Tool Length 1.68" .53" 12.43" 1.81" .53" 12.56"

2.125" .625" 15.56"

TT-7

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THRU TUBING

Annular Velocity Sub

Tool O.D. Min. I.D. Tool Length1.68" .625" 5.625"2.125" .75" 5.875"2.875" 1.00" 6.75"

The Annular Velocity Sub is designed to divert fluid around a mud motor. This allows you to keep maximum GPM’s thru the motor while diverting the rest of the fluid above to increase your annular velocity (AV) in your tubing. This sub is designed with adjustable carbide orifices that are set per job. The carbide orifices help eliminate washing thru the orifices. This tool helps when you have to go into a large I.D. and are limited on how much you are able to pump to get your AV’s

TT-8

Page 11: WELL SITE SERVICES - etdevelopers.cometdevelopers.com/design-preview/STS/product-catalog/STS_Product... · Thru-Tubing Product List ... The key to harnessing this unique technology

THRU TUBING

Smart Drill System

Smart TechnologyThe Stroke (built in travel) of the Smart Drill™ allows us to rapidly deter-mine the optimal weight on the bit. The Smart Drill™ stores torque and automatically reduces weight on the bit (moves vertically) when an increase in torque is detected. This automatic vertical movement maximizes motor RPM’s while minimizing motor stalls.

Smarter ApplicationThe key to harnessing this unique technology is to integrate the Smart Drill™ into a System, comprised of the following components:• Selecting the most effective Power Section for your application.• Adjusting the Smart Drill’s™ spring tension and travel distance to amplify the Power Section’s maximim torque and RPM capabilities.• Providing an experienced Thru Tubing Specialist with Smart Drill™ know-how.

Keeps Us DrillingThe built in spring tension and travel distance (stroke) is specifically designed to store torque and appreciable weight. This travel distance provides a much larger “weight on bit” window, in which our Specialist can operate, without stalling. Reduction of motor stalls will dramatically increase total milling time on target, useful motor life, and your success rate.

Automatically Finds Optimal Rate of Penetration Once the bit contacts the obstruction’s surface, our Specialist will apply sufficient weight to the bit for optimal motor performance. The Smart Drill™ System will be partially closed storing optimal torque while maintaining maximum available RPM’s. As material is removed the Smart Drill™ System will extend to maintain appreciable weight on the bit. During operation the Specialist needs only to maintain a degree of spring compression to effectively drill off material.

Loves Tough, Aggressive ObstaclesWhen contacting slips, metal or other aggressive targets, the Smart Drill™ System will immediately react to the increased back torque generated by the motor power section. Sensing the increased back torque, the Smart Drill™ will advance upward via the lead screw, reducing weight on bit until the motor finds optimal RPM’s. This allows us to quickly establish a wear pattern against even the roughest of surfaces.

Surface Test 01:Objective - Drill through concrete blocks both with and without Smart Drill™ System.

Results – Drilling without the Smart Drill™ System proved difficult to control the weight on the bit and motor stalls were frequent.

Surface Test 02:Objective – Drill out 2.313” XN profile landing nipples to full bore ID (2.437) by removing the profiles and no-go ring.

Results – Two landing nipples were stacked in the testing device. Without the Smart Drill™ System, it proved virtually impossible to contact the landing nipples without stalling the motor. After many attempts we were unable to drill out the nipple. “Failure”

With the Smart Drill™ System it was possible to drill out both landing nipples in less than two minutes. “Success”

Dozens of field operations have been completed with similar results as those accomplished during surface testing. Barium, cement, scale, and bridge plugs have been drilled out using the Smart Drill™ System. Rate of penetration results as high as 4 to 1 have been reported when the Smart Drill™ System is utilized.

SPECIFICATIONS

The values contained herein are not to be construed as absolute. They are for reference only.

Maximum OD 1.687 2.125 2.875

Minimum ID 0.375 0.531 0.625

Make Up Length 42.50" 43.00 " 46.25 "

Torque Capacity ( lbs) 325 1700 4800

Maximum Work Load (yield) 52000 76000 152000

Working Pressur 5000 5000 5000

Standard Connection 1" AMMT 1-1/2"AMMT 2-3/8" PAC

Max. Stroke 4.00” 4.00” 4.00 "

TT-9

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THRU TUBING

Computerized Dyna-Meter

Computerized Dyna-Meters are used to load test down hole motors to ensure reliabilityprior to arriving on your location.

STS Thru-Tubing Services invests in the highest quality assurance program in order to deliver the best possible equipment to your location...period. Our equipment is state-of-the-art and offers you the most options available for any thru-tubing operation. Whether you need high-speed or high-torque motors, we have the rotor/stator configuration to meet your needs.

TT-10

Page 13: WELL SITE SERVICES - etdevelopers.cometdevelopers.com/design-preview/STS/product-catalog/STS_Product... · Thru-Tubing Product List ... The key to harnessing this unique technology

THRU TUBING

Jarable Mud Motors

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Out

side

Dia

met

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500"

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69"

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20

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45 g

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TT-11

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THRU TUBING

Shoes & Mills

4 Bladded Concave Mill

Cut Lip Guide Carbide Shoe

Ocean Wave Bottom Carbide Shoe

Taper Mill

3 Bladed Cement Mill

Scallop Bottom Mill SPT PDC Mill SPTT PDC Mill

5 Bladded Concave Mill

Flat Bottom Carbide Shoe

Matrix Diamond ShoeMS TSD Diamond Mill

5 Bladed Honey Comb Insert Mill

Tooth TypeCarbide Shoe

Bladded Concave Mill

TT-12

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THRU TUBING

Boot Basket

Tool O.D. Min. I.D. Tool Length 1.68" .500" 31.38" 2.06" .562" 33.38" 2.125" .750" 20.00" 2.25" .750" 20.00" 2.500" .750" 20.00" 2.875" .750" 29.75" 3.25" .750" 29.75" 3.500" .750" 29.75" 3.625" .750" 29.75" 3.75" .750" 29.75" 4.125" .750" 29.75" 4.25" .750" 29.75"

The Boot Collar Basket is used to collect debris that is too large to be carried out of the hole by normal circulation. The boot collar is designed to create a change in velocity around the skirt and the upper end of the mandrel, allowing the debris to fall into the cavity between the skirt and the mandrel. Standard material for the mandrel and skirt is AISI 4140 heat treat material.

Owen Oil Tools / Thru Tubing Technology

TT-13

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THRU TUBING

Venturi Reverse Basket

Tool O.D. Tool Length Futter Cage I.D. Finger Cage I.D. 1.68" 27.90" 1.125" n/a 1.81" 27.90" 1.21" n/a 2.06" 28.90" 1.281" 1.500"

2.625" 37.00" 1.95" 1.531" 3.125" 36.10"

24.00" 2.42" 2.031"

4.00" 2.75" n/a

TT-14a

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THRU TUBING

Venturi Reverse Basket

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Venturi Reverse Basket

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Venturi Reverse Basket

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Venturi Reverse Basket

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Tubing Cleaner

The Taylor Made Tubing Cleaner removes barium, scale, cement, paraffin, and most other build up from the production tubing wall. The spring loaded pivotal blades allow the tubing cleaner to pass through normal tubing restrictions and clean out to the full tubing ID. Blades are specially designed to pass through the minimum restriction and expand to the tubing drift diameter. Either rotated from surface or below a motor, the tubing cleaner blades have sufficient spring loading for maximum cleaning efficiency. Design Features: •Blade Cleaning Ports •Pivotal Carbide Blades Carbide dressed blades are designed for each job. The blades are then gauged for the minimum restriction and drift diameter.

Tool O.D. Min. I.D. Tool Length Tubing Size Tubing I.D. Range Torque Capacity Make Up Torque 1.65" .250" 15.375" 2-3/8" 1.65" - 2.00" 550 300 - 400 1.65" .250" 15.375" 2-7/8" 2.150" - 2.500" 550 300 - 400 2.25" .375" 16.00" 3-1/2" 2.412" - 3.00" 2750 400 - 600 2.25" .375" 16.00" 4" 2.912" - 3.500" 2750 400 - 600

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Locking Swivel Joint

Tool O.D. Min. I.D. Tool Length 1.68" .531" 14.10" 1.81" .56" 15.93"

2.125" .81" 15.25"

The Locking Swivel Joint was designed to allow the assem-bly of long coil tubing strings with minimum lubricator length. Many times it is necessary to have long lengths of lubricator to accommodate the tool string, creating a difficult and dangerous situation. Now with the Locking Swivel Joint, it allows for sections of the tool string to be made up and lowered into the well bore. The String is spaced out and a pup joint is inserted, allowing the pup joint to seal in the rams of the BOP. The Swivel is place on top of the section of tools and dropped in the lubricator. Pull the coupling back and tighten the set screw, allowing the clutches to disengage and letting the swivel free spin. The other section of tool string can now be assembled. Before lowering the swivel in the hole, loosen the set screws so the coupling can slide back down engaging the clutches. If rotation is required in the tool string, simply take the brass pins out from under the coupling and this will prevent any back torque through the string. If ran below the motor the clutches must be engaged and brass pins installed.

Owen Oil Tools / Thru Tubing Technology

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Hydraulic Oil Jar Intensifier (Bi-Directional)

General DescriptionThe Bowen Hydraulic Coiled Tubing Jar Intensifier is designed to be operated in conjunction with the Bowen Coiled Tubing Jar. It operates in a straight pull or push operation which intensifies the Jar force initiated by the Coiled Tubing Jar. Its function is to supply acceleration to the Weight Bar and the upper portion of the Jar during its (Jarring) free stroke. Each Bowen Coiled Tubing Intensifier is designed to match a corresponding Bowen Coiled Tubing Jar. The Bowen Coiled Tubing Jar Intensifier is essentially a hydraulic fluid spring which stores energy when a strain is pulled or pushed on the running string. When the strain is removed by the free stroke of the Jar, this stored energy is released, accelerating the Weight Bar and Jar until a blow of high impact is struck.

The variable impact of the Coiled Tubing Jar Intensifier is controlled by the metering action of the Jar, which is controlled by the degree of load placed on the Intensifier and the Jar. A lighter load creates a lighter impact on the tool. A stronger load will, in turn, generate a stronger impact on the tool. The Jar is a hydraulic design which allows for infinitely variable impact blows. The Intensifier amplifies the acceleration of the Jar action.

The comparatively large bore permits the use of drop balls for unlatching devices.

Tool O.D. Min. I.D. Length - Neutral STD. Conn. Total Stroke Max. Overpull Max. Overpush

Max. Lift After Jarring

Torsion Yield

1.68" .56" 76.00" 1" AM MT 6.00" 10,000 lb 10,000 lb 50,000 lb 330 1.81" .56" 73.00" 1" AM MT 6.00" 12,000 lb 12,000 lb 69,000 lb 150

2.125" .75" 87.00" 1 1/2" AM MT 7.00" 18,000 lb 18,000 lb 95,000 lb 700 2.875" 1.00" 104.00" 2 3/8" AM PAC 8.00" 32,000 lb 32,000 lb 195,000 lb 2700

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Hydraulic Oil Jar (Bi-Directional)

General DescriptionThe Bowen Hydraulic Coiled Tubing Jar is a straight pull up and push down Jarring tool that employs a patented combination of proven principles of hydraulics and mechanics. It is designed to be operated in conjunction with the Bowen Coiled Tubing Jar Intensifier. This Jar is simple to assemble and its unique design allows for easy, dependable operation. No setting or adjustment is required before going in the hole, or after the fish is engaged. The Coiled Tubing Jar allows the operator to easily and simply control the intensity of Jarring blows by varying the applied load. The Jar can deliver a wide range of blows, from low to very high impact and impulse forces.

The variable impact control of the Coiled Tubing Jar is made possible by the metering action of the Cone assembly. Fluid flows from one side of the Cone to the other through a metering port as load is applied to the Jar. Forced through this restricted passage, flow is retarded in a manner that delays the stroke. This gives the operator ample time to take the necessary stretch in the running string (and Bowen Coiled Tubing Jar Intensifier) or apply slack off weight to strike a blow of given impact.

The Coiled Tubing Jar is capable of applying up only, down only, or up and down blows in succession. A series of up or down blows can be applied without having to apply the reverse Jarring cycle.

Another advantage of the Coiled Tubing Jar is the ease of closing or resetting. During closing or resetting, large ports open in the Cone assembly, allowing unimpeded fluid flow. Since the metering action does not occur during closing, only sufficient weight to overcome friction is required to close the Jar.

The Jar’s internal chambers are sealed at both ends. Therefore, the lubricating and operating fluids cannot escape and well fluids cannot enter these chambers. The lubricating and operat-ing fluids constantly lubricate the internal working parts, promot-ing long wear life of the Jar. The comparatively large ID (Inside Diameter) of the Coiled Tubing Jar permits the use of drop balls for unlatching devices.

Tool O.D. Min. I.D. Length - Neutral STD. Conn. Total Stroke Max. Overpull Max. Overpush

Max. Lift After Jarring

Torsion Yield

1.68" .56" 69.00" 1" AM MT 9.00" 10,000 lb 10,000 lb 50,000 lb 330 1.81" .56" 67.00" 1" AM MT 9.00" 12,000 lb 12,000 lb 69,000 lb 150 2.125" .75" 68.00" 1 1/2" AM MT 10.00" 18,000 lb 18,000 lb 95,000 lb 700 2.875" 1.00" 84.00" 2 3/8" AM PAC 12.00" 32,000 lb 32,000 lb 195,000 lb 2700

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Hydraulic Oil Jar (Up Only)

General DescriptionThe Bowen Type Z Oil Jar is a straight pull operated jar which employs a patented combination of proven principles of hydraulics and mechanics. This jar is unique in design and operation and is simple to assemble and easy to operate.

No setting or adjustment is required before going in the hole, or after the fish has been engaged. This tool does not interfere with the free operation of fishing tools, formation testers, safety joints, reversing tools, etc. The Bowen Type Z Oil Jar is designed to permit the operator to easily and simply control the intensity of the jarring blow within a wide range, from a very light impact to a blow of very high impact.

Because of the Jar’s closed hydraulic system, the hydraulic fluid within the jar cannot escape and well fluids cannot enter the tool. The hydraulic fluid within the tool constantly lubricates the internal working parts, thus promoting long wear life of the parts.

The unique impact control of the Bowen Hydraulic Jar is made possible by the metering action of the patented piston assembly. As pull is applied to the Jar, fluid is metered from one cavity to another through this piston assembly.

By being forced through a restricted passage, the fluid is retarded in such a manner that the stroke is delayed until the operator has ample time to take the necessary stretch in the running string (and Intensifier, when it is used) to strike a blow of given impact.

An important feature of the Bowen Type Z Oil Jar is the ease of closing or resetting the tools. Only sufficient weight to over come friction is required; only a few hundred pounds. Closing is free of any danger of damage to the tool, since the aforementioned metering action does not take place during re-setting.

During re-setting, large ports are opened in the piston assembly, allowing unimpeded flow of fluid from one cavity to the other.

Other important features are: The ability to transmit full torque at all times during operation, in either direction; the ability of the operator to control the intensity of the blow of the Jar at will, without prior adjustment, and to deliver a rapid series of blows when desired, the only limitation being the time required to raise and lower the fishing string the short distance required to make each stroke.

Tool O.D. Min. I.D. STD. Conn. Total Stroke Max. Overpull Max. Lift After

Jarring Torsion Yield 1.625" .25" 56.00”

49.25” 58.50”

1" MT 7.06" 15,400 46,300 260 1.81" .31" 1 13/16" WFJ 7.00" 18,000 59,400 340 2.25" .375" 1 1/4" Reg. 6.93" 21,000 118,500 1800

OverallLength-Close

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Hydraulic Overshot

The Hydraulic Overshot is a variable catch external overshot used to retrieve a lost cylindrical fish from the well bore. The Hydraulic Overshot operates in the same way as a standard non-releasable overshot. The tool is run in hole until it over shoots the cylindrical fish and stops out. Pulling up will cause the slips to set into the fish. Where the Coiled Tubing Releasable Overshot differs from a standard overshot is that, should the fish be irretrievable or simply require transportation to another location in the well, dropping a ball or flow activation will enable the tool to release from the fish and be pulled back to surface. The Hydraulic Overshot can be used to fish lost or broken tubing, coil and also coiled tubing tools that have backed off down hole.

The Hydraulic Overshot can be supplied to over-shoot and seal onto a specific fish in order to form a pressure tight seal. This is of importance if there is a flow activated tool beneath the fish that requires operation before the fish can be retrieved. A complete range of hardened and double tempered slips are available for each size tool. See table for slip and catch size details. Design Features/Benefits: - Internal hammer action assists release - Flow or drop ball activated - Hardened & double tempered slips - Robust construction - Variable slips sizes for each tool - Optional bell guides available

Tool O.D. Min. I.D. * Tool Length Activation Pressure Catch Range 1.85" .250" 19.80" 650 7/16" to 1 9/16"

2.250" .390" 19.83" 650 7/16" to 1 3/4" 2.625" .390" 20.85" 1100 3/8" to 2 1/16"

* Note Minimum I.D. is with out orfice

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Mechanical Overshot

Overview The Mechanical Overshot is a small, rugged tool designed for engaging and retrieving sucker rods, couplings, and other items from inside tubing strings. The Mechanical Overshot consists of a Top Sub, Bowl, Grapple, and a Guide. Depending on the diameter of the fish, either a Spiral or Basket Grapple will be used. Fish diameters near the maximum catch limits require the use of a Spiral Grapple and a Control Guide. Fish diameters that are substantially below the maximum catch limits of the Overshot require a Basket Grapple, a Basket Grapple Control, and a Plain Guide. Engaging a Fish Dress the Overshot with the proper type and size of Grapple. Attach the Overshot to the bottom end of the fishing string and run it into the hole. As the Overshot nears the top of the fish, slowly rotate to the right as the overshot is lowered over the fish. After the fish is engaged, allow right-hand torque to release from the fishing string. Then raise the fish by pulling upward on the fishing string.

Releasing a Fish Bump down or drop the weight of the fishing string against the Overshot to break the hold of the grapple within the Bowl. Elevate the fishing string while slowly rotating it to the right until the Overshot has cleared the fish.

Top Sub

Bowl

Basket Grapple

Basket Grapple Control

Plain Guide

Basket Grapple Assembly

Top Sub

Bowl

Spiral Grapple

Control Guide

Spiral Grapple Assembly

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Continuous Coil Tubing Overshot

The Continuous Tubing Overshot is used to retrieve continuous tubing strings that have been parted, stuck, and/or abandoned in the wellbore. The over-shot is attached to the desired fishing string, then lowered to the top of the fish, maintaining circulation and washover to the required depth. Lifting the work string will cause the grapple to bite on the coil tubing, the fish will part a few inches to several feet below the overshot. Retrieval of the tubing is now possible. The continuous tubing overshot is not releasable for upward travel; the fish must be parted to retrieve the overshot from the wellbore. The guide may also be dressed with carbide to aid in washing over or dressing the top of the coil tubing. A packoff sub can also be run with the overshot to permit circulation through the tubing string.

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Continuous Cutting Overshot

The Cutting Tubing Overshot is used to cut and retrieve continu-ous tubing that have been parted, stuck, and/or abandoned in the wellbore. The Cutting Overshot is attached on the fishing string, lowering to the top of the fish and then stripping over to the desired depth. To initiate the cut, simply pick up on the work string, setting the grapple and shearing the shear screws. This will force the cutting grapple into the fish shearing it in two and leaving a clean top for further retrieval or entry for wireline equipment. The overpull to cut the coil is only 25 to 30% of the yield of the tubing being cut (this can vary due to well bore friction, spalling of cutting grapple blades, etc.). The overshot is not a releasable tool for upward travel, but it can be released to travel down hole. Simply bump down sharply to release the grapple and continue to the desired depth.

Tool O.D. Min. I.D. Tool Length 2.063" 1.31" 33.20" 2.500" 1.563" 35.80" 2.700" 1.813" 39.00" 3.375" 2.130" 45.75"

Owen Oil Tools / Thru Tubing Technology

ITEM DESCRIPTION

1 TOP SUB

2 BOWL

3 GUIDE

4 SHEARABLE SLIP BOWL

5 GRAPPLE

6 CUTTING GRAPPLE RING

7 CUTTING GRAPPLE

8 SHEAR SCREWS

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Hydraulic J Series Pulling Tool

The Hydraulic J Series Pulling Tool provides a strong, reliable method of latching to and retrieving downhole tools using a standard internal fishing neck profile. The bore through the Hydraulic J Series Pulling Tool allows for circulation while entering the internal fishing neck to wash out any debris that may accumulate in the fishing neck while in the well. The use of a large internal fishing neck in the downhole tools and the tapered Core of the pulling tool greatly facilitates latching, especially in deviated or horizontal applications, or when retrieving or fishing through tubing into a larger bore casing. Operation: Flow across the Orifice creates an internal pressure which allows the Piston to pull the Dogs upward. When flow has stopped the internal and external pressure equalizes and the Spring moves the Dogs back to the "latched" position. With the Hydraulic J Series Pulling Tool made up on the workstring, run to depth just above the item to be retrieved. Circulation may be established at any time through the Hydraulic J Series Pulling Tool if it is felt that sand or debris may prevent latching the fishing neck of the fish. Gently set down on the fishing neck until a reduction in weight is observed. (Note: Do not run at a rapid rate and impact the fish.) Take a moderate upstrain on the workstring to verify latching has occurred. When assured of latching the fish, continue to pick-up to retrieve the fish. Upward jarring may be used for difficult or stuck fish. To release from the fish, slack off weight and circulate. The Core will move down while the Dogs move up and fish will no longer be latched. Pick up and pull out of the fishing neck.

Tool O.D. Min. I.D. Tool Length Activating PSI Fishing Neck Size 1.85" .390" 16.71" 700 PSI

700 PSI 700 PSI 700 PSI 350 PSI

1" Fishing Neck 1.85" .390" 16.71" 1.187" Fishing Neck1.85" .390" 16.71" 1.375" Fishing Neck

2.300" .390" .390"

16.70" 19.60"

1.75" Fishing Neck 2.625" 2.313" Fishing Neck

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Hydraulic GS Series Pulling Tool

The Hydraulic GS Pulling Tool provides a strong, reliable method of latching to and retrieving downhole tools using a standard internal fishing neck profile. The bore through the Hydraulic GS Pulling Tool allows for circulation while entering the internal fishing neck to wash out any debis that may accumulate in the fishing neck while in the well. The use of a large internal fishing neck in the downhole tools and the tapered Core of the pulling tool greatly facilitates latching, especially in deviated or horizontal applications, or when retrieving or fishing through tubing into a larger bore casing. Operation: Flow across the Orifice creates an internal pressure which allows the Piston to pull the Dogs upward. When flow has stopped the internal and external pressure equalizes and the Spring moves the Dogs back to the "latched" position. With the Hydraulic GS Series Pulling Toolmade up on the workstring, run to depth just above the item to be retrieved. Circulation may be established at any time through the Hydraulic J Series Pulling Tool if it felt that sand or debris may prevent latching the fishing neck of the fish. Gently set down on the fishing neck until a reduction in weight is observed. (Note: Do not run at a rapid rate and impact the fish.) Take a moderate upstrain on the workstring to verify latching has occurred. When assured of latching the fish, continue to pick-up to retrieve the fish. Upward jarring may be used for difficult or stuck fish. To release from the fish, slack off weight and circulate. The Core will move down while the Dogs move up and fish will no longer be latched. Pick up and pull out of the fishing neck.

Tool O.D. Min. I.D. Tool Length Catch Range 1.500" .095" 17.00" 1.062" I.D. 1.68" .250" 19.25" 1.375" I.D. 2.175" .281" 19.25" 1.812" I.D. 2.700" .312" 19.25" 2.313" I.D. 2.875" .250" 32.20" 2.313" I.D.

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Hydraulic Bulldog Spear

Tool O.D. Min. I.D. * Tool Length Activation Pressure Catch Range 1.85" .250" 18.38" 1 1/8" to 1 7/8" 2.25" .390" 21.62" 1 3/4" to 2 1/2"

2.625" .390" 24.30"

1000 psi 1200 psi 1400 psi 2 1/4" to 2 7/8"

* Note Minimum I.D. is with out orfice

The Flow Activated Coiled Tubing Release Fishing/Bulldog Spear is a variable catch internal spear used to retrieve a lost cylindrical fish from the well bore. To release from the fish simply set down weight, circulate in conjunction with a Hydraulic Sequencing Tool above the spear. The spear will then release due to the flow created differential. A complete range of slips is available for each size tool. To operate simply run into the fish and set down weight, pick up, and retrieve the fish. Design Benefits: • Flow or drop ball activated • Hardened & double tempered slips • Robust construction

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Hydraulic Centralizer

Tool O.D. Min. I.D. Tool Length Activating PSI Max. Casing Size 1.68" .563" 57.50" 700 - 850 9" 1.81" .563" 57.50" 475 - 550 9"

2.125" .563" 59.50" 475 - 550 9 5/8" 2.875" 1.00" 60.65" 475 - 550 9 5/8"

The Hydraulic Bow Centralizer is designed to pass through the production tubing, packers, and nipples, then centralize inside of the casing below, to assist in fishing, cutting, milling, underreaming, or washing over. When the circulation is initiated and the required PSI for the tool is achieved, the centralizer will expand, centralizing the tool string. As long as there is the recommended flow rate through the tool, the springs will stay expanded, but once the flow rate is dropped, the springs will collapse and the BHA can be retrieved from the hole. Care should be taken when running in and out through the restricted diameters to prevent any damage to the springs.

Owen Oil Tools / Thru Tubing Technology

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Choke Sub

The Choke Sub is used below the Hydraulic Bow Spring Centralizer in order to help expand the bow springs of the centralizer by differen-tial pressure held across the tool.

Nozzle Size 700 PSI 850 PSI .156" 18.2 20.1 .172" 22.2 24.4 .188" 26.4 29.2 .196" 28.8 31.7 .203" 30.9 34 .219" 35.9 39.6 .234" 41.2 45.2

Capacity in Gallons Per Minute

ITEM DESCRIPTION 1 CHOKE HOUSING 2 STEEL ALLEN LOCK SCREW 3 O-RING 4 ORIFICE NOZZLE

Owen Oil Tools / Thru Tubing Technology

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Choke Sub

Owen Oil Tools / Thru Tubing Technology

For 1 - 11/16" O.D. Hydraulic Bow Spring Centralizer Using Fresh Water as a Fluid

Pressures listed are the Minimum and Maximum Preferred Pressure Differential to be Held Across Tool to Function Hydr aulic Bow Spring Centralizer.

Nozzle Number Nozzle Size (inches)

Capacity in Gallons Per Minute at PSI

700 PSI 850 PSI TT0912 - 168CO - 001 0.156 18.2 20.1 TT0912 - 168CO - 002 0.172 22.2 24.4 TT0912 - 168CO - 003 0.188 26.4 29.2 TT0912 - 168CO - 004 0.196 28.8 31.7 TT0912 - 168CO - 005 0.203 30.9 34.0 TT0912 - 168CO - 006 0.219 35.9 39.6 TT0912 - 168CO - 007 0.234 41.2 45.2

NOTE: All of the Above Flow Rates & Pressures are Based on Fresh Water as a Fluid.

Weight of Solution Specific Gravity Conversion Factor

7.0 lb s. per gallon 0.84 1.09

8.0 lbs. per gallon 0.96 1.02

8.34 lbs. per gallon - WATER 1.00 1.00

9.0 lbs. per gallon 1.08 0.96

10.0 lbs. per gallon 1.20 0.91

11.0 lbs. per gallon 1.32 0.87

12.0 lbs. per gallon 1.44 0.83

14.0 lbs. per gallon 1.68 0.77

To Calculate Flow Rates for other Fluids than Fresh Wat er, Multiply the Tabulated Capacities by the Conversion Factor that applies to the Specific Gravity of the desired liquid from the chart at the left.

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Choke Sub

Choke Sub Orifice Flow Chart for 1 - 13/16" thru 2 - 1/4" O.D. Hydraulic Bow Spring Centralizer

Using Fresh Water as a Fluid Pressures listed are the Minimum and Maximum Preferred Pressure Differential to be

Hel d Across Tool to Function Hydraulic Bow Spring Centralizer.

Nozzle Number Nozzle Size (inches)

Capacity in Gallons Per Minute at PSI

475 PSI 550 PSI TT0912 - 168CO - 001 0.156 15.0 16.2 TT0912 - 168CO - 002 0.172 18.3 19.7 TT0912 - 168CO - 003 0.188 21.8 23.5 TT0912 - 168CO - 004 0.196 23.7 25.5 TT0912 - 168CO - 005 0.203 25.5 27.4 TT0912 - 168CO - 006 0.219 29.6 31.9 TT0912 - 168CO - 007 0.234 33.8 36.4 TT0912 - 168CO - 008 0.250 38.6 41.5 TT0912 - 168CO - 009 0.281 48.8 52.5 TT0912 - 168CO - 010 0.302 56.3 60.6 TT0912 - 168CO - 011 0.316 61.7 66.4 TT0912 - 168CO - 012 0.344 73.1 78.6

NOTE: All of the Above Flow Rates & Pressures are Based on Fresh Water as a Fluid.

Weight of Solution Specific Gravity Conversion Factor 7.0 lbs. per gallon 0.84 1.09

8.0 lbs. per gallon 0.96 1.02

8.34 lbs. per gallon - WATER 1.00 1.00

9.0 lbs. per gallon 1.08 0.96

10.0 lbs. per gallon 1.20 0.91

11.0 lbs. per gallon 1.32 0.87

12.0 lbs. per gallon 1.44 0.83

14.0 lbs. per gallon 1.68 0.77

To Calculate Flow Rates for other Fluids than Fresh Water, Multiply the Tabulated Capacities by the Conve rsion Factor that applies to the Specific Gravity of the desired liquid from the chart at the left.

Owen Oil Tools / Thru Tubing Technology

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Mechanical Centralizer

The Mechanical Bow Spring Centralizer is used to centralize the BHA inside larger tubing or casing after it has passed through a restricted ID, packer, or production tubing and then assist in fishing, cutting, milling, underreaming, or washing over. The Centralizer is designed for the springs to be at maxi-mum expansion constantly, collapsing when passing through the restric-tions, then expanding back to the desired tubing or casing size in which it is to centralize. Circulation can be maintained through the Centralizer for any hydraulic tools placed below it or for washing. Due to the design of the tool, the tool string will have drag while running in and out of the wellbore. Care should be taken when approaching any restricted diameters, to prevent damage to the springs.

Tool O.D. Min. I.D. Tool Length Max. Casing Size 1.68" .56" 43.50" 9-5/8" 1.81" .56" 43.50" 9-5/8"

2.125" .56" 43.00" 9-5/8" 2.875" 1.00" 45.75" 9-5/8"

Owen Oil Tools / Thru Tubing Technology

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Nipple Locator

Tool O.D. Min. I.D. Tool Length Locate Nipple I.D. Max. Overpull 1.68" .688" 19.40" 1.710" - 2.205" 2000

2.125" .81" 22.50" 2.205" - 2.562" 2000

Owen Oil Tools / Thru Tubing Technology

The Tubing Nipple Locator is designed to locate nipples in the tubing. This makes the tool ideal for depth correlation by tagging a known datum in the production tubing. The Nipple Locator can be positioned virtually anywhere in the BHA. As the Nipple Locator is purely mechanical, the operation of the tool does not require any hydraulic pressure to operate. The Nipple Locator is run below the nipple to the desired position. A slow pick up will then allow the dogs to tag the back of the nipple profile. A overpull (approximately 2000lbs) will be seen on the weight indicator. This procedure may be repeated indefinitely ensuring that the datum points can be re-checked, therefore a constant indication can be deter-mined.

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THRU TUBING

Spinning Wash Tool

Tool O.D. Min. I.D. Tool Length 1.25" .218" 6.62" 1.68" .31" 7.62"

2.125" .390" 8.56"

The Spinning Washtool is a self-rotating swivel designed for coil tubing well service. The powerful rotating jets cover a large area for efficient cleaning. Jet reaction force powers rotation of the head. The standard nozzle sleeve has 13 ports; seven forward, and 6 backwards. Some of the ports may be plugged in a balanced pattern to concentrate the flow in a particular direction. Whether your deposits are paraffin, asphaltine, hydrates, calcium carbonate, barium sulfate, corrosion products, or mineral scale – the Spinning Washtool is ready to restore production!

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Invertible Packer

The Invertible Packer is a mechanical-set packer that can be run as a tension or compression packer. It can be set and released multiple times in one run. The invert-ible packer is typically used to temporarily isolate the section above or below the packer during fluid treatments. The Model B invertible packer is the standard version packer; the Model BL provides a larger bore for high flow rate applications.

Applications- Selective treatments in oil, gas, and injector wells- Wellbore stimulation- Conformance treatments- Tubing leak detection- Sweet and sour service (H2S)

Benefits and features- Hydraulically isolates the well section above or below the packer- Packer sets and unsets by upward and downward movement of CT string- Uses proven one-piece packing element- Adjustable gauge rings to fit well profile- Proven collet slips for wide setting range- Simple, low-cost operation and redress- Packer can be run in tension or compression mode.- Multiset tool can be set several times without redressing it at surface.- Safety release feature to enable emergency release in tension mode- Pinned emergency release shear ring with field adjustable shear tension setting- Available in standard and large bore versions- Can be run with tandem packer to straddle across treatment zone

Tool O.D. Min. I.D. * Tool Length I.D. Setting Range Setting Force 1.68" .562" 43.35" 1.750" - 1.995" 3000

2.125" 1.00" 44.75" 2.187" - 2.441" 3000 2.56" 1.375" 46.35" 2.625" - 2.992" 4000

* Note Minimum I.D. is with out orfice

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Hydro Hammer

Tool O.D. Min. I.D. Tool Length Flow Rate (GPM) Wt. on Tool (lbs.) Tool Operating

Range (PSI) Hits Per Min. RPM (Flow Rotation)

1.68" .43" 34.25" 11 - 50 750 - 1500 500 - 2000 25 - 800 3 - 16 2.125" .500" 39.75" 21 - 84 750 - 2500 500 - 2100 25 - 800 3 - 16

The Hydro Hammer is a positive displacement impact drill that produces optimum power output with maximum efficiency. It utilizes a large range of speed, impact force, and flow rates to convert hydraulic fluid energy - created by flow and pressure - into mechanical energy to produce maximum efficiency for any demanding thru-tubing project. The main applications for the Hydro Hammer use are: the removal of scale, gravel, resin sand, paraffin, breaking ceramic disks and drilling in high temperature and H2S wells. TRANSMISSION The Hydro Hammer consists of a single-piece non-flexible shaft. This feature makes it the simplest and the most reliable transmission for standard, small-diameter impact drill applications. POWER SECTION The power section contains no rubber components or chromed steel rotors. The advan-tage gained is that not only can liquid be used as a circulating medium, but an Operator can also use nitrogen, foam, diesel, zylene, and *HCl (in hostile environ-ment tool), and light bodied fluids up to 12#. The Hydro Hammer is easily adjusted to the planned well intervention no matter if it’s a high temperature application or an aggressive fluid applica-tion. The Hydro Hammer can be operated in temperatures of up to 700 degrees and in H2S, HCl, and carbonic acid environments. BEARING ASSEMBLY The bearing assembly of the Hydro Hammer is perfect for weight on bit, side loading, and over pulls. Conventional problems with lubrication failure and overheating are eliminated through the use of non-typical bearings. When fluid is pumped through the Hydro Hammer it transmits multiple downward impact forces at high frequency, eliminating the need to cycle the coil. It operates through a combination of layoff weight and controlled flow activation in the tool-string, efficiently converting flow and pressure into mechanical energy. The Hydro Hammer is made up of a single-piece, non flexible impact shaft, and thus allows for simplicity and efficiency in transmitting impacts. An internal fluted dart ensures that fluid can flow through the tool with the minimum amount of interruption. Once the Hydro Hammer is set down, the impact shaft becomes seated onto the fluted dart. The dart is then extended upwards against a spring under piston-pressure. Once a critical point is reached, the dart comes into contact with a tappet valve. As the tappet valve becomes seated the fluid flow path through the tool is interrupted, causing a rapid pressure drop resulting in downward impact between dart and seat. The cycle can be restarted through continuous flow with set down weight.

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Hydraulic Shifting Tool (Double Ended)

The PCE Coiled Tubing Double Ended Selective Shifting Tool (DESST) has been designed specifically to selectively shift PCE, Otis, Camco, Baker sliding sleeves (SSD’s) in horizontal well bores. The DESST shifting keys are normally retracted during the running operation and are hydraulically flow activated to the open shift position by increasing surface pump volume and therefore, pressure at the downhole location of the DESST and SSD. The DESST can selectively open or close multiple SSD's in a single coiled tubing trip. Design Features/Benefits: - Flow activated (No drop balls required) - Dual action for opening or closing sliding sleeves - Positive or selective key options - Optional external fish neck

Tool O.D. Min. I.D. * Tool Length Activating PSI Sliding Sleeve (I.D.) Choke Size 1.850" .250" 40.00" 600 1.875" 9/64 2.160" .390" 40.00" 450 2.313" 1/8

* Note Minimum I.D. is with out orfice

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SpiroStar Stator

PROVEN25,000 + Runs

INNOVATIVE

+ TechnologyPlus

• “Breathable” Rubber for Nitrogen• Hot Hole Elastomers• Shorter Tool lengths• Availability of 2-7/8 Stator Relines

RESPONSIVE“Just an Old Fashioned Service

Company”We Don’t Cut Corners...EVER!

Mor power

L fe

temperatur ra

C c r ce

rov performanc c ty

Underlying steel lobes permit the rubber to achieve a stronger seal resulting in 2x more power than most conventional motors. This often results in higher effective ROP’s due to more time on bottom drilling in directional steering applications due to a more consistent tool face. This can be critical in high angle, extended reach, performance drilling, over thrust drilling or applications where you need more power such as when you require high weight on bit or run larger bi-center bits in a deepwater application.

Uniform thickness of injected elastomer in each tool reduces the probability of chunking due to hysteretic failure since the elastomer is structurally supported by the steel tube.

Thin, uniform thickness of the rubber causes it to expand very little with temperature changes. Heat generated in standard drilling operations is more readily dissipated through the thin layer of rubber, directly to the steel tube. Even Wall power sections have been run in wells with temperatures approaching 400 Degrees.

Fluids that tend to swell or soften other various rubber compounds on the market do not effect the Even Wall stators in many cases. Performance in oil based and synthetic muds has been impressive and the number of relines has been greatly reduced.

In many directional applications a shorter tool can be run due to the higher power output per unit length. This has permitted higher dogleg capability and increased the use of motors in specialty applications. Some of the specialty applications have included dual laterals, open hole sidetracks, use on production decks of offshore platforms, coiled tubing and coal bed methane applications.

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SpiroStar Stator Chart

PERFORMANCE CHART

MOTOR TYPE TOOL LENGTH

POWER SECTION SPEEDTORQUE FLOW

RATEMOTOR

PRESSURE POWER

Dia(in)

1-11/16 SS100 7.8 5/6 2.3 131 216-433 20-40 600 11

2-1/8 SS150

SS150

SS150

11.0

12.0

18.8

5/6

5/6

4/5

6.0

3.5

4.3

412

637

1995

270-680

200-400

128-320

20-50

60-120

80-200

1,500

875

1,075

53

49

101

2-7/8

3-3/4

- ft.Model Fixed

Lobes Stages ft. lbs rpm gpm psi hp

Motor Type Motor Output Motor Input Physical Motor Data

Dia

(IN)

1-11/16”

2-1/8”

2-7/8”

3-3/4”

Model

-

SS100 202-405

270-680

200-400

191-383

125-281

125-281

168 (227)

412(559)

535(725)

535(725)2000

(2712)1023

(1387)

13 (9.7)

53 (40)

48 (36)

39 (29)

100 (75)

55 (41)

20-40 (76-151)

20-50 (76-190)

60-120 (225-450)

225-450 (637-1275)

80-180 (300-680)

80-180 (300-680)

575 (40)1500 (103)

875 (60)

875 (60)

1075 (75)

550 (38)

1-7/8” to 2-3/4”

2-3/16” to 3-1/4”

3-1/4” to 4”

4-1/8” to 5-1/2”

2.3

6

3.5

3.5

4.3

2.2

5/6

5/6

5/6

5/6

4/5

4/5

10.12

13.61

3.333

0.851

1.56

1.56

SS150

SS150

SS150AD

SS150

SS150SR

Bit Speed

RPM

TorqueFT-LBS

(NM)

Power

HP (KW)

Flow Range

GPM (LPM)

Motor DP

PSI (BAR)

Bit Size

(IN) STAGES LOBES REV/GAL

Power Section

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