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Practical numerical simulations of two-phase flow and heat transfer phenomena in a thermosyphon for design and development

机译:用于设计和开发的热虹吸管中两相流动和传热现象的实际数值模拟

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摘要

Two-phase closed thermosyphons are widely-used in various energy intensive industries including chemical, transportation and other industries for their inherently high heat transfer efficiency, simple construction and reliable operational performance. However, the performance parameters of two-phase closed thermosyphons including the distribution of internal pressure, steam and liquid phase mass fractions, velocity and wall temperatures are obtained primarily via experimental investigations. In this paper numerical methods are discussed and a two-fluid model is employed to describe the two-phase flow and heat transfer processes in a two-phase closed thermosyphon. The IPSA (Inter Phase Slip Algorithm) algorithm is employed to solve the coupled interactions of steam and liquid phases along the phase interface. Flow patterns and distribution of parameters under different conditions are predicted with numerical results agreeing well for the most part with experimental results. Thus, the numerical method and solution procedures are claimed to be of practical utility and can in essence be used profitably to simulate flow and heat transfer phenomena in thermosyphons and other types of heat pipes. © 2009 Springer Berlin Heidelberg.
机译:两相闭式热虹吸管因其固有的高传热效率,简单的结构和可靠的运行性能而广泛用于包括化学,交通运输和其他行业在内的各种高能耗行业。但是,两相闭式热虹吸管的性能参数主要包括实验研究,包括内部压力的分布,蒸汽和液相的质量分数,速度和壁温。本文讨论了数值方法,并采用双流体模型描述了两相闭式热虹吸管中的两相流动和传热过程。 IPSA(相间滑动算法)算法用于解决蒸汽和液相沿相界面的耦合相互作用。预测了不同条件下的流动模式和参数分布,数值结果与实验结果在很大程度上吻合。因此,数值方法和求解程序被认为是实用的,并且本质上可以有益地用于模拟热虹吸管和其他类型的热管中的流动和传热现象。 ©2009 Springer Berlin Heidelberg。

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