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PREDICTING PERFORMANCE OF A CONDENSER WITH PLUGGED TUBES

机译:预测带塞管的冷凝器的性能

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摘要

The electric power generated in a steam-power plant depends on condenser pressure. Plant performance personnel are frequently called upon to predict effects on megawatts generated and plant heat rate as condenser circumstances vary. The flow rate of circulating water to the condenser is one of the factors that impact the results when doing such predictions. This paper utilizes the PEPSE modeling program to evaluate the effect on the condenser back-pressure and power generation of plugging condenser tubes. The circulating water flow rate is the focal point of this analysis because it influences the heat transfer coefficient inside of the tubes of the condenser. This inside-tube convection heat transfer coefficient is an important contributor to the calculated overall condensing heat transfer coefficient and the resulting condenser pressure. Calculation of the condenser's shell side pressure is based on the Heat Exchange Institute's (HEI) methods that are standard in the industry. In operation the circulating water's flow rate occurs at the point where the head of the circulating water pump balances the hydraulic pressure drops in the circuit. Equations are presented to account for circulating water pressure drops, as foundation for calculations of the hydraulic balancing. The equation methodology is then applied to an actual condenser design.
机译:蒸汽发电厂产生的电力取决于冷凝器压力。经常要求工厂性能人员预测随着冷凝器环境变化而对产生的兆瓦数和工厂热量产生的影响。进行此类预测时,循环水到冷凝器的流量是影响结果的因素之一。本文利用PEPSE建模程序来评估对冷凝器背压和堵塞冷凝器管发电的影响。循环水流速是该分析的重点,因为它会影响冷凝器管内的传热系数。管内对流传热系数是计算出的总冷凝传热系数和所得冷凝器压力的重要因素。冷凝器壳侧压力的计算基于行业内标准的热交换研究所(HEI)方法。在运行中,循环水的流量发生在循环水泵的扬程达到平衡的位置,此时回路中的液压下降。提出了解决循环水压降的方程式,作为计算水力平衡的基础。然后将方程式方法应用于实际的冷凝器设计。

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