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A transient three-dimensional model for thermo-fluid simulation of cryogenic plate-fin heat exchangers

机译:低温板翅式热交换器热流体仿真的瞬态三维模型

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摘要

This work proposes a novel, three-dimensional model for transient simulation of cryogenic plate-fin heat exchangers (PFHE). This model is based on the combination of computational fluid dynamics with well-established correlations for calculating heat transfer and pressure drop occurring during fluid flow through various fin types. This reduces the complex geometry of a PFHE to a geometrically simple mesh, allowing for efficient simulation of large-scale industrial PFHE. Successful validation of the model is carried out using both data available in the literature and results calculated using commercial software. The necessity for a three-dimensional model is further demonstrated using a transient case study in which the design of inlet distributors is shown to cause unfavorable distribution of fluid flow and hence severe temperature maldistribution in the PFHE. These results show that the proposed model can be useful in both detailed engineering and lifetime investigations of flexible PFHE.
机译:这项工作提出了一种新颖的三维模型,用于低温板翅片热交换器(PFHE)的瞬态模拟。该模型基于计算流体动力学的组合具有良好的相关性,用于计算通过各种鳍片流体流动期间发生的传热和压降。这将PFHE的复杂几何形状减少到几何简单网格,允许高级工业PFHE的高效模拟。使用文献中可用的数据和使用商业软件计算的结果进行了成功验证。使用瞬态壳体研究进一步证明了三维模型的必要性,其中入口分配器的设计被示出导致流体流动的不利分布,因此在PFHE中严重的温度恶性。这些结果表明,该拟议模型可用于柔性PFHE的详细工程和寿命调查。

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