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Generation of entropy and forced convection of heat in a conduit partially filled with porous media- Local thermal non-equilibrium and exothermicity effects applied thermal engineering

机译:在部分填充多孔介质的导管中产生熵和强制对流热 - 局部热非平衡和放热效应应用于热工程

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摘要

The performance of a two-dimensional, axisymmetric channel with porous inserts attached to the walls is analyzed from the perspective of the first and second laws of thermodynamics. In this analysis, the flow is assumed to be fully developed with a constant heat flux imposed on the external surfaces of the walls, while heat could be internally generated by the fluid and solid phases. Using a Darcy-Brinkman model of momentum transport along with a two-equation thermal energy model, a convective model was developed to describe the thermal boundary conditions on the porous-fluid interface. The so-called Model A was employed on the walls of the channel and semi-analytical solutions were developed for the hydrodynamic, temperature, entropy generation fields and the Nusselt number, and an extensive parametric study was subsequently, conducted. The results indicated that the inclusion of exothermicity leads to significant modifications in the thermal and entropic behaviour of the system. In particular, through comparison with the recent literature, it was demonstrated that exothermicity can significantly impact the influence of the porous-fluid interface model upon the generation of both the local and total entropy within the system.
机译:从热力学第一定律和第二定律的角度分析了二维多孔壁对称的轴对称通道的性能。在此分析中,假定在壁的外表面施加恒定的热通量的情况下充分流动,而液相和固相可能在内部产生热量。利用Darcy-Brinkman动量传递模型和一个两方程式热能模型,开发了一个对流模型来描述多孔流体界面上的热边界条件。在通道壁上采用了所谓的模型A,并为流体动力学,温度,熵产生场和Nusselt数开发了半解析解,随后进行了广泛的参数研究。结果表明,放热的引入导致系统的热行为和熵行为发生重大变化。特别是,通过与最新文献进行比较,证明放热可以显着影响多孔流体界面模型对系统内局部熵和总熵的产生的影响。

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