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Optimizing Road Development for Groundwater Recharge and Retention Some Solutions from Tigray, Ethiopia

Optimizing road development for groundwater recharge and retention

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Page 1: Optimizing road development for groundwater recharge and retention

Optimizing Road Development for Groundwater Recharge and Retention

Some Solutions from Tigray, Ethiopia

Page 2: Optimizing road development for groundwater recharge and retention

Plate1. Deep trenches at downstream side of roads

Page 3: Optimizing road development for groundwater recharge and retention

Plate 2a. Road side ponds to recharge groundwater and enhance in-situ moisture in soils

Page 4: Optimizing road development for groundwater recharge and retention

Plate 2b. Road side ponds to recharge groundwater and enhance in-situ moisture in soils

Page 5: Optimizing road development for groundwater recharge and retention

Plate 2c. Road side ponds to recharge groundwater and enhance in-situ moisture in soils

Page 6: Optimizing road development for groundwater recharge and retention

Plate 3. Road side runoff diverted into ponds

Page 7: Optimizing road development for groundwater recharge and retention

June 2014

Sept 2014

Plate 4a. Water from a culvert is channeled into farmlands with over 300m long trench

Page 8: Optimizing road development for groundwater recharge and retention

Culvert

June 2014

Sept 2014

Culvert

Plate 4b. Water from a culvert is channeled into farmlands with over 300m long trench

Page 9: Optimizing road development for groundwater recharge and retention

Plate 5. Water from a culvert is channeled into farmlands

June 2014

Sept 2014

Page 10: Optimizing road development for groundwater recharge and retention

Plate 6. Road side runoff is channeled into farmlands (as spate)

Page 11: Optimizing road development for groundwater recharge and retention

Deep trenches

Culverts

Borrow pit

Plate 7. Upstream trenches, and then water from culvert channeled into a borrow pit.

Page 12: Optimizing road development for groundwater recharge and retention

Plate 8. Borrow pit shown in plate 7

Page 13: Optimizing road development for groundwater recharge and retention

Plate 9. Panoramic view of channels to divert water from culverts into a borrow pit shown in Plate 8.

Culvert

Borrow pit

Page 14: Optimizing road development for groundwater recharge and retention

Plate 10. A pond used to store water from road side and a culvert

Page 15: Optimizing road development for groundwater recharge and retention

Plate 11. Water from a culvert which used to cause gully erosion is now channeled and spread into farmlands

Page 16: Optimizing road development for groundwater recharge and retention

Plate 12. Road side runoff is diverted and spread into farm lands through series of chennels

Page 17: Optimizing road development for groundwater recharge and retention

Plate 13. Similar to Plate 12 but different site