Assessment of rainwater harvesting in Northern Ghana

Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering, 2009. === Includes bibliographical references (leaves 93-96). === This study assesses the current state of rainwater harvesting in the Northern Region of Ghana and makes recommendations regarding i...

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Main Author: Barnes, David Allen
Other Authors: Susan Murcott.
Format: Others
Language:English
Published: Massachusetts Institute of Technology 2010
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Online Access:http://hdl.handle.net/1721.1/50622
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spelling ndltd-MIT-oai-dspace.mit.edu-1721.1-506222019-05-02T16:03:48Z Assessment of rainwater harvesting in Northern Ghana Barnes, David Allen Susan Murcott. Massachusetts Institute of Technology. Dept. of Civil and Environmental Engineering. Massachusetts Institute of Technology. Dept. of Civil and Environmental Engineering. Civil and Environmental Engineering. Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering, 2009. Includes bibliographical references (leaves 93-96). This study assesses the current state of rainwater harvesting in the Northern Region of Ghana and makes recommendations regarding if and how rainwater harvesting could be used to address Pure Home Water's goal of reaching 1 million people in the next five years with safe drinking water. Three principal aspects of the water supply are considered: quality, quantity, and cost. Bacteriological water quality is tested to determine the level of risk. Rainwater supplies ranged from low (1 to 10 E.coli CFU/100ml) to intermediate risk (10 to 99 E. coli CFU/100ml.) Time-based reliability is simulated using a simulation model in Microsoft Excel. Reliability ranges from five percent to ninety-nine percent. Unit cost per cubic meter is calculated for surveyed rainwater harvesting systems in Northern Ghana. The unit cost of water from these designs ranged between approximately $1/m3 and $10/m3. Storage-reliability-yield relationship is developed and graphed for the Northern Region. This curve is useful for properly sizing rainwater harvesting systems. The use of a filter to post-treat rainwater before consumption is recommended, both for use with the rainwater, but also for provision of safe water when the users rely on a supplementary unimproved source, usually a dugout or dug well, for water supply. The feasibility of low-cost underground storage should be investigated. The geology and soil conditions in the Tamale region might provide a suitable match for a cheaper storage mechanism using plastic tarps and constructed pits. (cont.) If the cost of storage could be lowered, rainwater harvesting could contribute in a larger way to Pure Home Water's mission and reach more people. Do-it-yourself rainwater harvesting in the Northern Region of Ghana is a fairly widespread. Finding ways to improve the quantity and quality of informal harvesting is a potential means for improving water supply for many low income households in the Northern Region. Currently, rainwater harvesting presents an opportunity to extend water supply to rural dwellers where few other alternatives are available. by David Allen Barnes. M.Eng. 2010-01-07T21:02:31Z 2010-01-07T21:02:31Z 2009 2009 Thesis http://hdl.handle.net/1721.1/50622 475690841 eng M.I.T. theses are protected by copyright. They may be viewed from this source for any purpose, but reproduction or distribution in any format is prohibited without written permission. See provided URL for inquiries about permission. http://dspace.mit.edu/handle/1721.1/7582 101 leaves application/pdf f-gh--- Massachusetts Institute of Technology
collection NDLTD
language English
format Others
sources NDLTD
topic Civil and Environmental Engineering.
spellingShingle Civil and Environmental Engineering.
Barnes, David Allen
Assessment of rainwater harvesting in Northern Ghana
description Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering, 2009. === Includes bibliographical references (leaves 93-96). === This study assesses the current state of rainwater harvesting in the Northern Region of Ghana and makes recommendations regarding if and how rainwater harvesting could be used to address Pure Home Water's goal of reaching 1 million people in the next five years with safe drinking water. Three principal aspects of the water supply are considered: quality, quantity, and cost. Bacteriological water quality is tested to determine the level of risk. Rainwater supplies ranged from low (1 to 10 E.coli CFU/100ml) to intermediate risk (10 to 99 E. coli CFU/100ml.) Time-based reliability is simulated using a simulation model in Microsoft Excel. Reliability ranges from five percent to ninety-nine percent. Unit cost per cubic meter is calculated for surveyed rainwater harvesting systems in Northern Ghana. The unit cost of water from these designs ranged between approximately $1/m3 and $10/m3. Storage-reliability-yield relationship is developed and graphed for the Northern Region. This curve is useful for properly sizing rainwater harvesting systems. The use of a filter to post-treat rainwater before consumption is recommended, both for use with the rainwater, but also for provision of safe water when the users rely on a supplementary unimproved source, usually a dugout or dug well, for water supply. The feasibility of low-cost underground storage should be investigated. The geology and soil conditions in the Tamale region might provide a suitable match for a cheaper storage mechanism using plastic tarps and constructed pits. === (cont.) If the cost of storage could be lowered, rainwater harvesting could contribute in a larger way to Pure Home Water's mission and reach more people. Do-it-yourself rainwater harvesting in the Northern Region of Ghana is a fairly widespread. Finding ways to improve the quantity and quality of informal harvesting is a potential means for improving water supply for many low income households in the Northern Region. Currently, rainwater harvesting presents an opportunity to extend water supply to rural dwellers where few other alternatives are available. === by David Allen Barnes. === M.Eng.
author2 Susan Murcott.
author_facet Susan Murcott.
Barnes, David Allen
author Barnes, David Allen
author_sort Barnes, David Allen
title Assessment of rainwater harvesting in Northern Ghana
title_short Assessment of rainwater harvesting in Northern Ghana
title_full Assessment of rainwater harvesting in Northern Ghana
title_fullStr Assessment of rainwater harvesting in Northern Ghana
title_full_unstemmed Assessment of rainwater harvesting in Northern Ghana
title_sort assessment of rainwater harvesting in northern ghana
publisher Massachusetts Institute of Technology
publishDate 2010
url http://hdl.handle.net/1721.1/50622
work_keys_str_mv AT barnesdavidallen assessmentofrainwaterharvestinginnorthernghana
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