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首页> 外文期刊>International Journal of Heat and Mass Transfer >Natural convection of Al_2O_3/H_2O nanofluid in an open inclined cavity with a heat-generating element
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Natural convection of Al_2O_3/H_2O nanofluid in an open inclined cavity with a heat-generating element

机译:Al_2O_3 / H_2O纳米流体在带有生热元件的开放倾斜腔中的自然对流

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Free convection of alumina-water nanofluid in a tilted open cavity with a heat-generating solid element has been studied. The considered topic allows understanding an opportunity of nanofluids for cooling of the heat-generating elements in open cavities. Upper border is supposed to be open where nanofluid penetrates into the cavity. Simulation has been performed using the Oberbeck-Boussinesq equations formulated in non-dimensional stream function, vorticity and temperature. Finite difference method of the second order accuracy has been applied. The effects of cavity inclination angle (0 = gamma = pi/2), heater location (0.1 = 8 = 0.7, where delta is the dimensionless distance between the heater and left wall) and nanoparlicles volume fraction (0 = phi = 0.04) have been analyzed. It has been found that the considered parameters allow minimizing average heater temperature. The cavity inclination angle of pi/3 characterizes the heat transfer enhancement (average Nusselt number has the maximum value), while the heater average temperature has the minimum value. At the same time, a proximity of the heater to the cavity wall characterizes non-essential cooling of the heat-generating element. The most effective cooling of the heat-generating element occurs for central heater location with cavity inclination angle of pi/3. The considered alumina-water nanoparticles do not allow to intensify the cooling process for the heater element. (C) 2018 Elsevier Ltd. All rights reserved.
机译:研究了带有生热固体元素的倾斜水腔中氧化铝-水纳米流体的自由对流。所考虑的主题允许理解纳米流体用于冷却开放腔中的发热元件的机会。上边界应该是敞开的,纳米流体渗透到空腔中。使用在无量纲流函数,涡度和温度中公式化的Oberbeck-Boussinesq方程进行了仿真。已应用二阶精度的有限差分法。腔体倾斜角(0 <= gamma <= pi / 2),加热器位置(0.1 <= 8 <= 0.7,其中delta是加热器与左壁之间的无量纲距离)和纳米粒子体积分数(0 <= phi <= 0.04)已被分析。已经发现,考虑的参数允许最小化加热器的平均温度。 pi / 3的腔体倾斜角是传热增强的特征(平均努塞尔数具有最大值),而加热器的平均温度具有最小值。同时,加热器靠近腔壁的特征在于对生热元件的不必要的冷却。发热元件的最有效冷却发生在腔体倾斜角为pi / 3的中央加热器位置。所考虑的氧化铝-水纳米颗粒不允许加强加热元件的冷却过程。 (C)2018 Elsevier Ltd.保留所有权利。

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