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Selecting the cooling water mass flow rate for a power plant under variable load with entropy generation rate minimization

机译:选择熵负荷最小的发电厂可变负荷下的冷却水质量流量

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The paper deals with selecting the mass flow rate of cooling water under variable load of a power unit such that optimum operating parameters of the unit can be achieved. The change in the cooling water mass flow rate influences the resistance to flow (on the cooling water side) and the pressure of the condensing steam. A higher cooling water mass flow rate increases the resistance to flow and power supplied to the cooling water pump, but it also results in a drop in the condensing steam pressure and an increase in the power generated in the LP (low-pressure) part of the turbine. Since the change in the mass flow rate affects the performance of the condenser, the LP part of the turbine, and the cooling water pump, a system comprising these components was analyzed. The cooling water mass flow rate was chosen via minimization of the total entropy generation rate in these components and a change in the unit's power output defined as a difference between the power outputs of the LP part of the turbine and the cooling water pump. The aim of this paper is to find the optimum value of the mass flow rate of cooling water under variable load of the power plant. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文涉及选择动力单元可变负载下冷却水的质量流量,以便可以实现该单元的最佳运行参数。冷却水质量流量的变化会影响流动阻力(在冷却水侧)和冷凝蒸汽的压力。较高的冷却水质量流量会增加对流向冷却水泵的阻力和提供给冷却水泵的功率,但同时也会导致冷凝蒸汽压力下降,并且导致在LP(低压)部分产生的功率增加。涡轮机。由于质量流量的变化会影响冷凝器,涡轮机的LP部分和冷却水泵的性能,因此对包含这些组件的系统进行了分析。冷却水质量流量的选择是通过使这些组件中的总熵产生率最小,以及将单位功率输出的变化定义为涡轮机LP部件和冷却水泵的功率输出之间的差来选择的。本文的目的是找到发电厂可变负荷下冷却水质量流量的最佳值。 (C)2016 Elsevier Ltd.保留所有权利。

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