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Numerical analysis of the hydraulic transient response in the presence of surge tanks and relief valves

机译:缓冲罐和溢流阀作用下水力瞬态响应的数值分析

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摘要

Water hammer as a critical consequence of unsteadiness may take place in the penstock of the hydroelectric power plants. Hence, the unsteady flow analysis is important to identify undesirable pressure variations and to take preventive actions toward guaranteeing safe operation of the power plant. Chief among these actions are the installation of a surge tank and relief valve, and the transient flow behavior in the presence of protective devices is investigated herein. The method of characteristics is employed to numerically solve the equations governing the transient flow through channels. Also, in order to better resolve the transient behavior, unsteady friction effects have been considered. Validation of the developed computational code is carried out through comparison of the computed transient pressures with those measured at Karun-Ill Hydropower Plant. According to the results obtained for MONJ Hydropower Station, when only one turbine is in operation, the surge tank decreases the pressure rise within the spiral case and the turbine overspeed by 22% and 6%, respectively. While the percentages associated with employing a proper surge relief valves are accordingly 12% and 14%. This study substantiates how surge relief valves can be used instead of an expensive surge tank to relieve the transient response. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在水力发电厂的压力管道中可能会发生不稳定的严重后果-水锤。因此,非稳态流动分析对于识别不希望的压力变化并采取预防措施以确保电厂的安全运行非常重要。这些措施中的主要措施是安装稳压罐和溢流阀,并在存在保护装置的情况下研究瞬态流动特性。采用特征方法对控制通过通道的瞬态流量的方程进行数值求解。另外,为了更好地解决瞬态行为,已经考虑了不稳定的摩擦效应。通过将计算出的瞬态压力与在Karun-Ill水电厂测得的瞬态压力进行比较,可以验证所开发的计算代码。根据MONJ水电站获得的结果,当仅运行一台涡轮机时,调压罐将螺旋壳体内的压力上升和涡轮机超速分别降低了22%和6%。因此,与使用适当的喘振溢流阀相关的百分比分别为12%和14%。这项研究证实了如何使用喘振溢流阀代替昂贵的喘振罐来减轻瞬态响应。 (C)2017 Elsevier Ltd.保留所有权利。

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