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Steady natural convection of non-Newtonian power-law fluid in a trapezoidal enclosure

机译:梯形外壳中非牛顿幂律流体的稳定自然对流

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摘要

Numerically investigation of free convection heat transfer in a differentially heated trapezoidal cavity filled with non-Newtonian Power-law fluid has been performed in this study. The left inclined surface is uniformly heated whereas the right inclined surface is maintained as uniformly cooled. The top and bottom surfaces are kept adiabatic with initially quiescent fluid inside the enclosure. Finite volume based commercial software FLUENT 14.5 is used to solve the governing equations. Dependency of various flow parameters of fluid flow and heat transfer is analyzed including Rayleigh number, Ra ranging from 10^5 to 10^7, Prandtl number, Pr of 100 to 10,000 and power index, n of 0.6 to 1.4. Outcomes have been reported in terms of isotherms, streamline, and local Nusselt number for various Ra, Pr, n and inclined angles. Grid sensitivity analysis is performed and numerically obtained results have been compared with those results available in the literature and found good agreement.
机译:在这项研究中,对装有非牛顿幂律流体的差热梯形腔中的自由对流换热进行了数值研究。左倾斜表面被均匀加热,而右倾斜表面被保持均匀冷却。顶部和底部表面保持绝热状态,最初处于外壳内部的流体处于静止状态。基于有限体积的商业软件FLUENT 14.5用于求解控制方程。分析了流体流动和传热的各种流动参数的依赖性,包括瑞利数,Ra在10 ^ 5至10 ^ 7之间,普朗特数,Pr在100至10,000和功率指数n在0.6至1.4之间。对于等温线,流线和各种Ra,Pr,n和倾斜角的局部Nusselt数,已经报道了结果。进行了网格灵敏度分析,并将数值获得的结果与文献中提供的结果进行了比较,并发现了很好的一致性。

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