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Influence of cooling water temperature on the efficiency of a pressurized-water reactor nuclear-power plant

机译:冷却水温度对压水堆核电站效率的影响

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In this study, the influence of the cooling water temperature on the thermal efficiency of a conceptual pressurized-water reactor nuclear-power plant is studied through an energy analysis based on the first law of thermodynamics to gain some new insights into the plant performance. The change in the cooling water temperature can be experienced due to the seasonal changes in climatic conditions at plant site. It can also come into the question of design processes for the plant site selection. In the analysis, it is considered that the condenser vacuum varies with the temperature of cooling water extracted from environment into the condenser. The main findings of the paper is that the impact of 1 deg C increase in temperature of the coolant extracted from environment is predicted to yield a decrease of approx 0.45 and approx 0.12 percent in the power output and the thermal efficiency of the pressurized-water reactor nuclear-power plant considered, respectively.
机译:在这项研究中,通过基于热力学第一定律的能量分析,研究了冷却水温度对概念性压水堆核电厂热效率的影响,从而获得了对电厂性能的一些新见解。由于工厂现场气候条件的季节性变化,冷却水温度可能会发生变化。也可能会涉及到工厂选址的设计过程问题。在分析中,认为冷凝器真空度随从环境抽取到冷凝器中的冷却水的温度而变化。该论文的主要发现是,从环境中抽出的冷却剂温度每升高1摄氏度的影响,预计将使压水反应堆的功率输出和热效率降低约0.45%和约0.12%分别考虑了核电站。

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