Optimization of Small Run-of-River Hydropower Plant Capacity

Khairullah Yusuf, Y. R. Alkhaly, A. Amalia
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Abstract

The small hydropower plant with a run-of-river concept are being increasingly adopted in less developed and developed countries. The optimization of the plant capacity is critical in the successful development of the plant. The adoption of the current technology will assist in the optimization of the plant development. The important criteria in the evaluation of the optimization are the energy output and plant factor of the plant. In this study, twelve scenarios by varying the installed capacity in range of 4MW to 7.5MW has been simulated in order to obtain the most optimum installed capacity of the plant. In respect to the installed capacity, by the adopting the same available net head of 246.75 m, the design flow would be in range of 1.872 m3/s to 3.510 m3/s with the probability of the flow exceeds or equal to the design flow in range of 29.2% to 8.9%. In the energy calculation, the amount of 0.063 m3/s has been deducted from the available daily flow for the ecological flow. It shows that the energy output for the plant 4MW and 7.5MW would be in range 23 589 MWhr to 28 636 MWhr, respectively. The plant factor of the plant based on all the scenarios are 67.32% for the 4MW plant and 43.59% for the 7.5MW plant. Based on the hydraulic parameters, it was found that the most suitable type of turbine for the plant would be pelton turbines. Based on the relationship between installed capacity, energy output and plant factor, it concludes that the optimum installed capacity is at 5 MW plant.
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小型顺流水电站容量优化
在欠发达国家和发达国家越来越多地采用径流式小型水力发电厂。工厂产能的优化是工厂成功发展的关键。采用目前的技术将有助于优化工厂的发展。评价优化效果的重要标准是电厂的能量输出和电厂因子。在本研究中,为了获得电厂的最优装机容量,模拟了12种装机容量在4MW到7.5MW范围内变化的情景。在装机容量方面,采用同样的可用净水头246.75 m,设计流量范围为1.872 ~ 3.510 m3/s,超过或等于设计流量的概率为29.2% ~ 8.9%。在能量计算中,从生态流的可利用日流量中扣除0.063 m3/s。结果表明,4MW和7.5MW电厂的输出功率分别在23 589 MWhr到28 636 MWhr之间。在所有情景下,4MW电厂的电厂因子为67.32%,7.5MW电厂为43.59%。根据水力参数,确定了最适合该电站的水轮机类型为活塞式水轮机。根据装机容量、能量输出和电厂因素之间的关系,得出电厂的最佳装机容量为5mw。
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