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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Modeling of compressible phase-change heat transfer in a Taylor-Bubble with application to pulsating heat pipe (PHP)
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Modeling of compressible phase-change heat transfer in a Taylor-Bubble with application to pulsating heat pipe (PHP)

机译:泰勒气泡中可压缩相变传热的建模及其在脉动热管(PHP)中的应用

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摘要

The present work deals with the development of a compressible phase-change solver and implementation toward the numerical modeling and investigation of a part-unit cell of a pulsating heat pipe (PHP). The fundamental understanding of the working of the part-unit cell is imperative in the development of a complete Computational Fluid Dynamics (CFD) model of a PHP. The compressible model developed in the present work is based on the Volume-of-Fluid solver of the open source CFD software, OpenFOAM, in which the contour-based interface reconstruction algorithm and the contact-line evaporation model have been incorporated. Owing to the lack of a single standard benchmark validation case for a compressible phase-change solver, a huge emphasis in the present work is laid on the solver development and validation, the latter part of which is conducted in stages. Furthermore, simulations for the formation of a Taylor-Bubble through a constrained bubble growth are performed and the fallacy of an incompressible solver is shown distinctly. The validated solver is used to model a part-unit cell of a PHP and a parametric study is performed on the part-unit cell. The effect of variation of evaporator length, evaporator superheat, and liquid fill ratio on the performance of the PHP is discussed.
机译:目前的工作涉及可压缩相变求解器的开发以及对脉动热管(PHP)的零件单元的数值建模和研究的实现。在开发完整的PHP计算流体动力学(CFD)模型时,必须基本了解零件单元的工作原理。当前工作中开发的可压缩模型基于开源CFD软件OpenFOAM的流体体积求解器,其中结合了基于轮廓的界面重建算法和接触线蒸发模型。由于缺乏可压缩相变求解器的单一标准基准验证案例,因此在当前工作中重点放在求解器的开发和验证上,后者的开发是分阶段进行的。此外,进行了模拟模拟,通过有限的气泡增长形成泰勒气泡,并清晰显示了不可压缩求解器的谬误。经过验证的求解器用于对PHP的零件单元建模,并对零件单元执行参数研究。讨论了蒸发器长度,蒸发器过热和液体填充率的变化对PHP性能的影响。

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