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Brinkman-Forchheimer modeling for porous media thermoacoustic system

机译:多孔介质热声系统的Brinkman-Forchheimer建模

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摘要

In this paper, analytical studies have been conducted on the flow and thermal fields of unsteady compressible viscous oscillating flow through channels filled with porous media representing stacks in thermoacoustic systems. The flow in the porous material is described by the Brinkman-Forchheimer-extended Darcy model. Analytical expressions for oscillating velocity, temperature, and energy flux density are obtained after linearizing and solving the governing differential equations with long wave, short stack, and small amplitude oscillation approximations. Experimental work is also conducted to verify the temperature difference obtained across the porous stack ends. To produce the experimental results, a thermoacoustic heat pump is designed and constructed where reticulated vitreous carbon (RVC) is used as the stack material. A very good agreement is obtained between the modeling and the experimental results. The expression of temperature difference across the stack ends obtained in the present study is also compared with the existing thermoacoustic literature. The proposed expression surpasses the existing expression available in the literature. The system of equations developed in the present study is a helpful tool for thermal engineers and physicist to design porous stacks for thermoacoustic devices.
机译:在本文中,已经对不稳定的可压缩粘性振荡流通过填充有代表热声系统中的堆叠的多孔介质的通道的流场和热场进行了分析研究。多孔材料中的流动由Brinkman-Forchheimer扩展的Darcy模型描述。线性化并求解长波,短叠加和小振幅振荡近似的控制微分方程后,获得了振荡速度,温度和能量通量密度的解析表达式。还进行了实验工作,以验证在多孔堆叠两端获得的温差。为了产生实验结果,设计并构造了一个热声热泵,其中网状玻璃碳(RVC)被用作堆叠材料。在建模和实验结果之间获得了很好的一致性。本研究中获得的烟囱两端的温差表达也与现有的热声文献进行了比较。拟议的表达方式超过了文献中现有的表达方式。在本研究中开发的方程组系统是热工程师和物理学家设计热声器件多孔堆栈的有用工具。

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