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Thermal Effectiveness of a Shell and Tube Condenser with Effects of Non-Condensing Gal Leakage

机译:壳体冷凝器具有非冷凝加热泄漏的壳体冷凝器的热效

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This paper investigates the thermal effectiveness of a THMA E shell and one-path tube condenser along the condensation path, including effects of leakage of air as a non-condensing gas. Condensation of steam occurs in the shell side and cooling water flows through the tubes. A new formulation is developed for ihc maximum heat transfer rate between two streams in the heat exchanger, when one stream undergoes a condensation process. Effects of the air mass flow rale, upstream cooling water and steam-air mixture temperatures, steam flow rate and cooling water flow rate on the effectiveness are numerically investigated. The results lead to a new correlation for the local thermal effectiveness as a function of upstream cooling water temperature, air mass flow rate and the local values of heat capacitance ratio and dimensionless temperature, defined as the ratio of the cooling water temperature gradient to the difference between the condensation and inlet cooling water temperatures within an arbitrary volume control Some illustrative examples of the variation of the local effectiveness based on the proposed correlation are also presented.
机译:本文研究了沿着冷凝路径的Thma E壳和单路管冷凝器的热效率,包括空气泄漏作为非冷凝气体的影响。壳体的凝结发生在壳体侧,冷却水流过管。当一流经历冷凝过程时,在热交换器中的两个流之间的IHC最大传热速率之间开发了一种新的制剂。测量空气质量流量,上游冷却水和蒸汽 - 空气混合物温度,蒸汽流速和冷却水流量对效果的影响。结果导致局部热效能的新相关性作为上游冷却水温,空气质量流量和热电容比和无量纲温度的局部值,定义为冷却水温梯度与差异的比率在任意体积内的冷凝和入口冷却水温之间,还介绍了基于所提出的相关性的局部效能变化的一些说明性实例。

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