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Entropy Generation Analysis in a 180-degree Return Bend Pipe using Nanofluid

机译:使用纳米流体的180度返回弯管中的熵生成分析

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Heat transfer and entropy generation analysis for 180-degree return bend has been carried out numerically using Al_2O_3-water nanofluid. The governing differential equations for mass, momentum and energy are solved in a staggered grid arrangement employing finite volume technique. A constant temperature boundary condition has been applied to the bend portion of the pipe. Reynolds number based on the hydraulic diameter of the duct and nanofluid volume fraction have varies from 200 to 1800 and 0 to 5%, respectively. Both the thermal and frictional entropy generations are quantified to access the total entropy generation. The frictional entropy generation is found to be lower than the thermal entropy generation. The ratio of the thermal and total entropy generation rates has been presented in term of Bejan number. Bejan number at low Reynolds number has been close to 1 due to the dominance of the thermal entropy generation.
机译:使用Al_2O_3水纳米流体在数值上进行180度返回弯曲的传热和熵产生分析。在采用有限体积技术的交错网格布置中解决了质量,动量和能量的控制微分方程。恒温边界条件已施加到管道的弯曲部分。基于管道和纳米流体体积级分的液压直径的雷诺数分别从200至1800和0〜5%变化。可以量化热和摩擦熵代以访问总熵生成。发现摩擦熵生成低于热熵生成。在Bejan号的任期内呈现了热和总熵生成率的比率。由于热熵生成的优势,低雷诺数的Bejan号码已接近1。

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