Temporal analysis of water balance in a Sahelian City: implication for water management

Water balance analysis is a valuable tool for assessing the general status of water resource availability and environmental comfort, particularly in the arid and the semi-arid regions. It also strengthens water management decision making. This research examines water balance in a Sahelian City (Ni...

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Main Authors: Oriola, E. O., Ifabiyi, I. P., A. A, Mousafawou
Format: Article
Language:English
Published: Penerbit Universiti Kebangsaan Malaysia 2017
Online Access:http://journalarticle.ukm.my/11898/1/17860-51841-1-PB.pdf
http://journalarticle.ukm.my/11898/
http://ejournal.ukm.my/gmjss/issue/view/923
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Institution: Universiti Kebangsaan Malaysia
Language: English
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spelling my-ukm.journal.118982018-07-13T04:53:48Z http://journalarticle.ukm.my/11898/ Temporal analysis of water balance in a Sahelian City: implication for water management Oriola, E. O. Ifabiyi, I. P. A. A, Mousafawou Water balance analysis is a valuable tool for assessing the general status of water resource availability and environmental comfort, particularly in the arid and the semi-arid regions. It also strengthens water management decision making. This research examines water balance in a Sahelian City (Niamey). Relevant meteorological and hydrology data of Niger Republic were captured. Descriptive and inferential statistics were used to analyze the data. Standard Deviation and Coefficient of Variation were employed to examine variation within the data set, Time Series to show a trend, and scattered plots for graphical presentation of results. Multiple Regression and Correlations adopted for relationships between variables and Warren and Lewis water balance equation for the water balance. The mean annual rainfall in Niamey was computed to be 516.38mm. The total annual water loss by evaporation was 3,906.5 mm. The result shows that the total annual water loss and mean annual runoffs were 3,906.5 mm and 11,600m2/sec respectively, the rainy season last for three months and dry season last for nine months. Variation of runoff in Niamey revealed that River Niger has two hydrological seasons of high water discharge from September to January and low water discharge between February and August. There is a positive linear correlation between evaporation and water balance on one hand and run off and water balance on the contrary. The study concludes that Niamey had water deficit and classified as drought-prone area. Therefore, there must be an effective and efficient water resource management to redress deteriorating hydrology condition in Niamey. Penerbit Universiti Kebangsaan Malaysia 2017 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/11898/1/17860-51841-1-PB.pdf Oriola, E. O. and Ifabiyi, I. P. and A. A, Mousafawou (2017) Temporal analysis of water balance in a Sahelian City: implication for water management. Geografia : Malaysian Journal of Society and Space, 13 (2). pp. 75-83. ISSN 2180-2491 http://ejournal.ukm.my/gmjss/issue/view/923
institution Universiti Kebangsaan Malaysia
building Perpustakaan Tun Sri Lanang Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Kebangsaan Malaysia
content_source UKM Journal Article Repository
url_provider http://journalarticle.ukm.my/
language English
description Water balance analysis is a valuable tool for assessing the general status of water resource availability and environmental comfort, particularly in the arid and the semi-arid regions. It also strengthens water management decision making. This research examines water balance in a Sahelian City (Niamey). Relevant meteorological and hydrology data of Niger Republic were captured. Descriptive and inferential statistics were used to analyze the data. Standard Deviation and Coefficient of Variation were employed to examine variation within the data set, Time Series to show a trend, and scattered plots for graphical presentation of results. Multiple Regression and Correlations adopted for relationships between variables and Warren and Lewis water balance equation for the water balance. The mean annual rainfall in Niamey was computed to be 516.38mm. The total annual water loss by evaporation was 3,906.5 mm. The result shows that the total annual water loss and mean annual runoffs were 3,906.5 mm and 11,600m2/sec respectively, the rainy season last for three months and dry season last for nine months. Variation of runoff in Niamey revealed that River Niger has two hydrological seasons of high water discharge from September to January and low water discharge between February and August. There is a positive linear correlation between evaporation and water balance on one hand and run off and water balance on the contrary. The study concludes that Niamey had water deficit and classified as drought-prone area. Therefore, there must be an effective and efficient water resource management to redress deteriorating hydrology condition in Niamey.
format Article
author Oriola, E. O.
Ifabiyi, I. P.
A. A, Mousafawou
spellingShingle Oriola, E. O.
Ifabiyi, I. P.
A. A, Mousafawou
Temporal analysis of water balance in a Sahelian City: implication for water management
author_facet Oriola, E. O.
Ifabiyi, I. P.
A. A, Mousafawou
author_sort Oriola, E. O.
title Temporal analysis of water balance in a Sahelian City: implication for water management
title_short Temporal analysis of water balance in a Sahelian City: implication for water management
title_full Temporal analysis of water balance in a Sahelian City: implication for water management
title_fullStr Temporal analysis of water balance in a Sahelian City: implication for water management
title_full_unstemmed Temporal analysis of water balance in a Sahelian City: implication for water management
title_sort temporal analysis of water balance in a sahelian city: implication for water management
publisher Penerbit Universiti Kebangsaan Malaysia
publishDate 2017
url http://journalarticle.ukm.my/11898/1/17860-51841-1-PB.pdf
http://journalarticle.ukm.my/11898/
http://ejournal.ukm.my/gmjss/issue/view/923
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