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Analysis of heat transfer around bluff bodies with variable inlet turbulent intensity: A numerical simulation

机译:具有可变入口湍流强度的凹槽体周围的热传递分析:数值模拟

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In the present study, a numerical simulation is carried out to analyze the effect of turbulent intensity on the flow behavior of flow past two dimensional bluff bodies. Triangular prism, diamond and trapezoidal shaped bodies with the same hydraulic diameter D, a dimensionless length scale are taken into consideration as bluff bodies. The objective of the numerical analysis is to cover cross flow at both turbulent and laminar regime with varying Reynolds number upto 200,000 and inlet intensities ranging between 5% and 40%. The flow medium used is air at a constant Prandtl number. The energy, momentum and continuity equations are dealt with transition SST Model for closure of turbulence. The results obtained through numerical simulation are validated with other published results by researchers and show good agreements. This present study reveals that transition SST Model can be efficiently used to cover both laminar and turbulent flow regimes to estimate the heat transfer. The impact of inlet turbulent intensity on augmentation of heat transfer using bluff bodies has been evaluated. It is observed from the study that the turbulent intensity significantly affects drag coefficient.
机译:在本研究中,进行了数值模拟,以分析湍流强度对过去二维虚空体的流动行为的影响。具有相同液压直径D的三角形棱镜,金刚石和梯形体形体,考虑无量纲长度,作为虚构体。数值分析的目的是覆盖湍流和层流制度的交叉流,随着200,000的不同雷诺数,入口强度范围为5%至40%。使用的流动介质是空气恒定的prandtl编号。能量,动量和连续性方程处理用于关闭湍流的过渡SST模型。通过数值模拟获得的结果与研究人员的其他公布结果验证并显示了良好的协议。本研究表明,可以有效地使用过渡SST模型来覆盖层流和湍流的流动状态以估计传热。已经评估了入口湍流强度对使用虚张体使用虚空体进行热传递增强的影响。从研究中观察到的是,湍流强度显着影响阻力系数。

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