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Evaluating and enhancing irrigation water management in the upper Blue Nile basin, Ethiopia: The case of Koga large scale irrigation scheme

机译:评估和加强埃塞俄比亚青尼罗河上游流域的灌溉水管理:以Koga大规模灌溉计划为例

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This paper deals with the objective of evaluating and enhancing irrigation water management of Koga large scale irrigation scheme located in the Blue Nile basin of Ethiopia. Disturbed and undisturbed Soil samples were collected from selected irrigation blocks within the irrigation system. Soil moisture, texture, field capacity, permanent wilting point and bulk density data were obtained from laboratory analysis of the samples. Results of demand versus supply analysis of the scheme showed that there was excess supply at the beginning of reservoir release and upto 7.13 MCM of excess flow water was estimated in year 2015. Results also showed that crop water requirement value varied for each block and for different crops in the same block, assuming the climatic conditions of the site constant. The crop water requirement variations were caused by differences in soil water holding capacity of each block. Based on crop water demand analysis result with appropriate crop water provision of 50% efficiency, the maximum irrigable area which could be accommodated by the reservoir storage was 5635.8 ha as compared to the design command of 7000 ha. The paper also investigated the status of reservoir water availability as compared to the demand and annual release. The findings of this research will have greater implications in creating awareness to the water user associations, farmers and gate operators of Koga irrigation scheme on how to measure the amount of water they are using during the whole crop growth so that optimum irrigation water shall be delivered to a crop for maintaining water management. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文旨在评估和加强位于埃塞俄比亚青尼罗河流域的Koga大规模灌溉计划的灌溉水管理。扰动和未扰动的土壤样本是从灌溉系统中选定的灌溉区域采集的。从样品的实验室分析获得土壤湿度,质地,田间持水量,永久性枯萎点和堆积密度数据。该方案的需求与供应分析结果表明,在水库放水之初就有过剩供应,2015年估计有高达7.13 MCM的过剩流量水。结果还表明,每个区块和不同作物的作物需水量有所不同假设场地的气候条件不变,则在同一街区种植作物。作物需水量的变化是由于每个块的土壤持水量不同而引起的。根据对作物需水量的分析结果(适当提供50%的效率的作物水),水库可以容纳的最大灌溉面积为5635.8公顷,而设计命令为7000公顷。本文还调查了与需求量和年排放量相比的水库可用水状况。这项研究的发现将对提高用水户协会,农民和Koga灌溉计划的门运营商的认识产生更大的影响,这些认识是如何在整个作物生长期间测量他们正在使用的水量,以便提供最佳的灌溉水。维持水管理的作物。 (C)2015 Elsevier B.V.保留所有权利。

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