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Natural Convection of a Nanofluid in a Conical Container

机译:锥形容器中纳米流体的自然对流

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Natural convection is simulated in a truncated cone filled with nanofluid. Inclined and top walls have constant temperature where the heat source is located on the bottom wall of the conical container which is thermally insulated. A finite volume approach is used to solve the governing equations using the SIMPLER algorithm for different parameters such as Rayleigh number, inclination angle of inclined walls of the enclosure and heat source length. The results showed an enhancement in cooling system by using a nanofluid, when conduction regime is assisted. The inclination angle of inclined sidewall and heat source length affect the heat transfer rate and the maximum temperature.
机译:在填充有纳米流体的截头锥中模拟自然对流。倾斜和顶壁具有恒定温度,其中热源位于具有热绝缘的锥形容器的底壁上。有限体积方法用于解决使用更简单的参数的控制方程,例如瑞利数,倾斜壁的倾斜壁的倾斜角度和热源长度。当辅助传导制度时,通过使用纳米流体来说,结果表明了冷却系统的增强。倾斜侧壁的倾斜角和热源长度影响传热速率和最高温度。

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