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NUMERICAL STUDIES OF THERMOACOUSTIC CONVECTION IN NEAR-CRITICAL FLUIDS

机译:近临界流体热声对流的数值研究

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Thermoacoustic convection in carbon dioxide near its critical point is investigated numerically. A real-fluid model has been developed taking into account all the relevant fluid property variations near the critical point, including the bulk viscosity. The thermo-physical properties of the near-critical supercritical fluids are given as functions of both pressure and temperature due to their strong divergence near the critical point. As a layer of supercritical fluid is heated rapidly, the combination of very high thermal compressibility and vanishing thermal diffusivity near the critical points of fluids affect thermal energy propagation, leading to the formation of acoustic waves as carriers of thermal energy. The rapidity of the boundary heating is a key factor in the generation of these acoustic waves. We also study the effect of different rates of boundary heating for the temperature equilibration mechanism near the critical point. As the critically diverging bulk viscosity plays a significant role on the transport processes near the critical point, effect of bulk viscosity on the flow field and heat transport induced by thermoacoustic waves and buoyancy in supercritical fluids is also investigated numerically. The predicted results from the present study can be utilized to understand the thermal transport mechanism in near-critical fluids.
机译:对二氧化碳在其临界点附近的热声对流进行了数值研究。考虑到临界点附近的所有相关流体特性变化(包括整体粘度),已经开发出了真实的流体模型。由于它们在临界点附近的强烈发散,近临界超临界流体的热物理性质是压力和温度的函数。随着超临界流体层的快速加热,流体临界点附近非常高的热压缩率和消失的热扩散率的组合会影响热能的传播,从而导致形成声波作为热能的载体。边界加热的速度是产生这些声波的关键因素。我们还研究了不同边界加热速率对临界点附近温度平衡机制的影响。由于临界发散的本体粘度在临界点附近的传输过程中起着重要作用,因此还对数值计算中的本体粘度对由热声波和超临界流体中的浮力引起的流场和传热的影响进行了数值研究。本研究的预测结果可用于了解近临界流体中的热传输机理。

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