Difference between revisions of "Groundwater access"

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(Field experiences)
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===Field experiences===
 
===Field experiences===
{| style="width: 70%; text-align: justify; background-color: #f5f5f5;"
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|[[Image:rsr 473.jpg|thumb|none|200px|<font size="2"><center>Project 473</center></font>|link=http://rsr.akvo.org/project/473/]]
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|'''Akvo RSR Project:''' [http://rsr.akvo.org/project/473/ Project Water4Tomorrow]
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This plan for the development of an advanced well, providing daily clean drinking water for over more than a thousand people in Kabul, was at the request of Frada Foundation.
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|[[Image:akvorsr logo_lite.png|center|60px|link=http://akvo.org/products/rsr/]]
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|[[Image:project 473.jpg |thumb|center|140px|<font size="2"><center>[http://rsr.akvo.org/project/473/ RSR Project 473]<br>Project Water4Tomorrow</center></font>|link=http://rsr.akvo.org/project/473/ ]]  
 
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===Groundwater links===
 
===Groundwater links===

Revision as of 23:38, 7 March 2014

Rainwater (if given the chance to infiltrate) eventually becomes groundwater. Groundwater is advantageous to harvest as it is always accessible (in spite of the timing of the rainy season), has a high storage capacity with good water quality (usually), is resilient to inter-annual climate variability and has a low cost relative to alternative sources.

However, the height of the water table depends on a lot of factors: type of soils or rock beneath the surface, nearby reservoirs or rivers, and frequency or overall total abstraction of water from populations nearby. Also consider the quality of the groundwater. Is it too salty or near an agricultural runoff or sewage water area? Locate the infiltration or abstraction points where the water is least likely to be affected by pollutants.

Climate change considerations
Climate change affects the precipitation and temperature dynamics on a global scale, and hence will impact upon the supply and demand for water of local communities. Enhancing water storage capacity, both above and below ground, is widely accepted as a coping strategy against hydrological shocks such as floods and droughts.


Riverbed infiltration galleries icon.png
Springwater icon.png
Subsurface harvesting systems.png
Jetting icon.png
Jetting icon.png
Riverbed infiltration galleries small.jpg
SpringwaterCollecting small.jpg
Subsurface harvesting systems small.jpg
Small rotary machines small.jpg
Jetting - Engine powered rotary jetting small.jpg


Field experiences


Akvorsr logo lite.png
RSR Project 473
Project Water4Tomorrow


Groundwater links


Acknowledgements