首页> 外文OA文献 >Environmental and social impact monitoring of the Bujagali Hydropower Project (BHPP), Uganda Fisheries Component: monthly patterns in physico-chemical conditions and fish catch in the immediate vicinity of the Bujagali Hydropower construction site, 29th September - 28th October 2007
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Environmental and social impact monitoring of the Bujagali Hydropower Project (BHPP), Uganda Fisheries Component: monthly patterns in physico-chemical conditions and fish catch in the immediate vicinity of the Bujagali Hydropower construction site, 29th September - 28th October 2007

机译:乌干达渔业Bujagali水电项目(BHPP)的环境和社会影响监测组成部分:2007年9月29日至10月28日,Bujagali水电施工现场附近的理化状况和鱼获量的月度模式

摘要

Following the commencement of construction works of a 250 MW hydropower plant at Dumbbell Island in the Upper Victoria Nile in September 2007, BEL requested NaFIRRI to conduct continuous monitoring of fish catches at two transects i.e. the immediate upstream transect of the project site (Kalange-Makwanzi) and the immediate downstream .transect (Buyala-Kikubamutwe). udThe routine monitoring surveys were designed to be conducted twice a week at each of the tWo transects. It was anticipated that major immediate impacts were to occur during construction, and these needed to be known by BEL as part of a mitigation strategy. For example, the construction of it cofferdam could be accompanied by rapid changes in water quality and quantity downstream of the construction. These changes in turn could affect the fish catch and would probably be missed by the quarterly monitoring already in place. Therefore, a major cbjective of the more regular and rapid monitoring was to discern immediate impacts of construction activities by focusing on selected water quality parameters (total suspended solids, water conductivity, temperature, dissolved oxygen and pH) and fish catch characteristics (total catch, catch rates and value of the catch)
机译:在2007年9月在上维多利亚尼罗河的哑铃岛上的一座250兆瓦水力发电厂的建设工程开始后,BEL要求NaFIRRI对两个样点(即项目所在地的上游样样)(Kalange-Makwanzi)上游的渔获量进行连续监测)和紧邻的下游.transect(Buyala-Kikubamutwe)。 ud常规监测调查旨在每周两次在两个样面中进行两次。预计在施工期间会发生重大的直接影响,BEL需要将这些影响作为缓解策略的一部分。例如,围堰的施工可能伴随着施工下游水质和水量的快速变化。这些变化反过来可能会影响鱼的捕获,并且可能已经被季度监测遗漏了。因此,更常规,更快速的监测的主要目的是通过关注选定的水质参数(总悬浮固体,水电导率,温度,溶解氧和pH)和渔获特性(总捕捞量,捕获率和捕获值)

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