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STUDY OF CONVECTIVE HEAT TRANSFER IN A SQUARE CAVITY FILLED WITH A VISCOPLASTIC FLUID BY TAKING INTO ACCOUNT VISCOUS DISSIPATION

机译:考虑粘滞耗散的粘塑性流体填充方腔内对流换热的研究

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摘要

The present work is devoted to the numerical study of forced, natural and mixed convective heat transfer inside a square cavity filled with a non-Newtonian viscoplastic fluid described by the Bingham rheological model. The upper and bottom walls of the enclosure are thermally insulated, while the remaining walls are mobile and differentially heated. In order to solve the general coupled equations, a code based on the finite volume method is used and has been validated after comparison of the present results with those from the literature. Viscous dissipation effects on hydrodynamic and thermal properties are analyzed for various values of the Richardson number. The results show that the Richardson number affects the hydrodynamic characteristics as well as heat transfer in a cavity filled with a viscoplastic fluid and leads to a flow structure modification different from that obtained for a Newtonian fluid. The same observation is done concerning the effect of the Brinkman number. Indeed, it has been noted that neglecting the viscous dissipation results in a significant underestimation of heat transfer in an enclosure, especially in the case of natural heat transfer convection.
机译:本工作致力于对由Bingham流变模型描述的充满非牛顿粘塑性流体的方腔内强制,自然和混合对流换热的数值研究。外壳的上壁和底壁是热绝缘的,而其余的壁是可移动的并且被不同地加热。为了求解一般的耦合方程,使用了基于有限体积法的代码,并且在将本发明的结果与文献的结果进行比较之后,对代码进行了验证。针对理查森数的各种值,分析了粘性耗散对流体力学和热学性质的影响。结果表明,理查森数会影响流体动力学特性以及在充满粘塑性流体的空腔中的传热,并导致与牛顿流体不同的流动结构改变。关于布林克曼数的影响,进行了相同的观察。实际上,已经注意到,忽略粘性耗散会导致对外壳中的热传递的明显低估,尤其是在自然热对流的情况下。

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