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PERFORMANCE ANALYSIS AND OPTIMAL DESIGN OF HEAT EXCHANGERS USED IN A HIGH TEMPERATURE AND HIGH PRESSURE SYSTEM

机译:高温高压系统换热器的性能分析与优化设计

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A computational study for the optimal design of heat exchangers used in a high temperature and high pressure system is presented. Two types of air to air heat exchangers are considered in this study. One is a single-pass cross-flow type with straight plain tubes and the other is a two-pass cross-counter flow type with plain U-tubes. These two types of heat exchangers have the staggered arrangement of tubes. The design models are formulated using the number of transfer units (ε-NTU method) and optimized using a genetic algorithm. In order to design compact light weight heat exchangers with the minimum pressure loss and the maximum heat exchange rate, the weight of heat exchanger core is chosen as the object function. Dimensions and tube pitch ratio of a heat exchanger are used as design variables. Demanded performance such as the pressure loss (△P) and the temperature drop (△T) are used as constraints. The performance of heat exchangers is discussed and their optimal designs are presented with an investigation of the effect of design variables and constraints.
机译:提出了高温高压系统中换热器优化设计的计算研究。在这项研究中考虑了两种类型的空气对空气热交换器。一种是带直管的单程横流式,另一种是带U型管的二程横流式。这两种类型的热交换器的管子交错排列。使用转移单元的数量(ε-NTU方法)制定设计模型,并使用遗传算法对其进行优化。为了设计具有最小压力损失和最大热交换率的紧凑型轻质热交换器,选择热交换器芯的重量作为目标函数。热交换器的尺寸和管节距比用作设计变量。要求的性能(如压力损失(△P)和温度下降(△T))用作约束条件。讨论了换热器的性能,并通过研究设计变量和约束的影响来介绍其最佳设计。

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