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The influence of condenser cooling seawater fouling on the thermal performance of a nuclear power plant

机译:冷凝器冷却海水结垢对核电站热力性能的影响

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摘要

This study performs a thermodynamic analysis and energy balance to study the effect of fouling change on the thermal performance of the condenser and the thermal efficiency of a proposed nuclear power plant. The study is carried out on a pressurized water reactor nuclear power plant. The results of the study show that the increasing of fouling factor decreases the power output and the thermal efficiency of the nuclear power plant. The main results of this study is that the impact of an increase in the condenser cooling seawater fouling factor in the range 0.00015-0.00035 m~2 K/W is led to a decrease in the plant output power and thermal efficiency of 1.36% and 0.448%, respectively. The present paper researches into a real practical factor that has significant negative effect on the thermal efficiency of the nuclear power plants, which is fouling of condenser cooling seawater. This is abundantly important since one of the top goals of new power stations are to increase their thermal efficiency, and to prevent or minimize the reasons that lead to loss of output power.
机译:这项研究进行了热力学分析和能量平衡,以研究结垢变化对冷凝器热性能和拟建核电站热效率的影响。该研究是在压水堆核电站上进行的。研究结果表明,结垢因子的增加会降低核电站的功率输出和热效率。这项研究的主要结果是,冷凝器冷却海水结垢系数增加在0.00015-0.00035 m〜2 K / W范围内的影响导致电厂输出功率和热效率降低了1.36%和0.448。 %, 分别。本文研究了一个实际的实际因素,该因素对核电站的热效率产生了显着的负面影响,即冷凝器冷却海水结垢。这非常重要,因为新电站的首要目标之一是提高其热效率,并防止或最小化导致输出功率损失的原因。

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