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Cascade hydroelectric scheme: River flow estimation for reservoir regulation improvement and flood-risk mitigation

机译:级联水电方案:水库规范改善和洪水风险减缓的河流流量估算

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Due to present and imminent extreme weather patterns, regulation of hydroelectric reservoirs and flood risk management requires better measurement of river flows. To improve reservoir regulation at our hydroelectric scheme in northern part of Malaysia, a budget river flow measurement system have been installed to estimate flows of rivers that fed four of our hydroelectric reservoirs. The main goal of this measurement system is to estimate water flows into four cascade hydroelectric reservoirs using fore-bay and tail race water levels alone as sensors. With limited number of level sensors installed, mathematical computations have been used to estimate incoming cascade flows. The computation is based on mass balance that volumes of incoming flows should be equal to water stored in the reservoirs over a period plus volumes of water discharge from these hydroelectric plants. The volumes are obtained by integration of flows over selected intervals. However, computation of water volume stored in reservoirs can yield a temporary drift result due to resolution error associated with fore-bay water level measurement that has smallest measured change of 0.01m. These volume computations can causes significant errors as the level variations will be amplified by large surface areas of the reservoirs. Although this measurement system has been able to perform as anticipated, further refinements are needed including to estimate water flow travel times between different reservoir systems. Also, as the lowest level of cascaded hydroelectric stations has limited capacity (due to historical background and construction cost) that spillage is often occur, this proposed system can be used in the future to improve its energy output, in addition to reduce risks of flooding downstream.
机译:由于目前和迫在眉睫的极端天气模式,水力发电库和洪水风险管理的调节需要更好地测量河流。为了提高马来西亚北部水电方案的水库监管,已经安装了预算河流流量测量系统,以估算喂养我们四个水力油藏的河流的流动。该测量系统的主要目的是利用前海湾和尾部赛水水平作为传感器来估计水流入四个级联水力发电。安装了有限的电平传感器,数学计算已被用于估计传入的级联流。计算基于质量平衡,传入流量的体积应等于储存在储存器中的水,而不是这些水力发电植物的水排放量。通过通过所选间隔集成流量来获得卷。然而,由于与前湾水位测量相关的分辨率误差,储存器中存储在储存器中的水量的计算可以产生临时漂移结果,其具有0.01m的最小测量变化。随着水平的变化将由储存器的大表面区域放大,这些体积计算可能导致显着的误差。尽管该测量系统能够以预期执行,但是需要进一步的改进,包括估计不同储层系统之间的水流动行驶时间。此外,随着级联水电站的最低水平具有有限的容量(由于历史背景和施工成本)通常发生溢出,该提出的系统可以在未来使用,以改善其能源产量,除了降低洪水风险之外下游。

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