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Numerical simulations of the piston effect for near-critical fluids in spherical cells under small thermal disturbance

机译:热扰动小的球形细胞近临界流体活塞效应的数值模拟

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摘要

Near the liquid vapor critical point, strong anomalies in thermodynamic and transport properties induce the piston effect. In the present study, the piston effect is investigated in spherical cells filled with near-critical fluids under zero gravity and small thermal disturbance conditions by numerically solving the thermodynamic model. The results show typical fast-responding bulk temperature, together with high and stable temperature efficiency, which is determined by the particular nature of near-critical fluids. Particularly, a nondimensionalization method is developed to study the influences of the specific heat ratio on the piston effect by simulations for eight near-critical fluids. Results show the specific heat ratio is an efficient indicator, which is negatively correlated with the nondimensional bulk temperature change. The influences of the characteristic length and the boundary conditions on the piston effect are also studied for near-critical carbon dioxide. In addition, some rules concerning the boundary heat flux and the overall heat transfer are also discussed and concluded. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:在液体蒸气临界点附近,热力学和传输特性的强烈异常会引起活塞效应。在本研究中,通过数值求解热力学模型,研究了在零重力和小热扰动条件下充满近临界流体的球形单元中的活塞效应。结果表明典型的快速响应体温,以及高而稳定的温度效率,这取决于近临界流体的特殊性质。特别是,开发了一种无量纲化方法,通过对八种近临界流体的模拟来研究比热比对活塞效应的影响。结果表明,比热比是一个有效的指标,与无量纲整体温度变化呈负相关。还研究了近临界二氧化碳的特征长度和边界条件对活塞效应的影响。此外,还讨论并总结了有关边界热通量和整体传热的一些规则。 (C)2016 Elsevier Masson SAS。版权所有。

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