首页> 外文期刊>Journal of Heat Transfer >Simulation Algorithm for Multistream Plate Fin Heat Exchangers Including Axial Conduction, Heat Leakage, and Variable Fluid Property
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Simulation Algorithm for Multistream Plate Fin Heat Exchangers Including Axial Conduction, Heat Leakage, and Variable Fluid Property

机译:多流板翅式换热器的轴向传导,热泄漏和可变流体特性仿真算法

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The effect of axial conduction through heat exchanger matrix, heat exchange with the surroundings, and variable fluid properties are included in the simulation algorithm of multistream plate fin heat exchangers. The procedure involves partitioning of the exchanger in both axial and normal directions, writing conservation equations for each segment, and solving them using an iterative procedure. In the normal direction, the exchanger is divided into a stack of overlapping two-stream exchangers interacting through their common streams. In the axial direction, the exchanger is successively partitioned to 2~k segments, the final value of k being determined by the point where further partitioning has only marginal effect. The effects of axial conduction, heat leakage, and variable fluid properties are illustrated with the help of multistream heat exchanger examples solved by the above-mentioned technique.
机译:多流板翅式换热器的模拟算法包括通过换热器矩阵进行轴向传导,与周围环境进行热交换以及可变的流体特性的影响。该过程包括在轴向和法线方向上划分交换器,为每个段编写守恒方程,并使用迭代过程求​​解它们。在法线方向上,交换器被分成重叠的两流交换器的堆栈,该两流交换器通过它们的公共流相互作用。在轴向方向上,交换器被依次划分为2〜k个段,k的最终值由进一步划分仅具有边际效应的点确定。借助通过上述技术解决的多流换热器实例,说明了轴向传导,热泄漏和可变流体特性的影响。

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