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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Computations of incompressible fluid flow around a long square obstacle near a wall: laminar forced flow and thermal characteristics
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Computations of incompressible fluid flow around a long square obstacle near a wall: laminar forced flow and thermal characteristics

机译:在墙壁附近的长方障碍周围的不可压缩流体的计算:层压强制流动和热特性

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Computations of incompressible fluid flow and heat transfer around a square obstacle with a nearby adiabatic wall have been performed in a horizontal plane. The ranges of dimensionless control parameters considered are Prandtl number (Pr) = 10-100, Reynolds number (Re) = 1-150 and gap ratio (G) = 0.25-1. The steady-flow regime is observed up to Re = 121 for G = 0.5, and beyond this Re, time-periodic regime is observed. The shift to a time-periodic regime from a steady regime occurred at greater Re than that for an unconfined square obstacle. With increasing Pr, increase in average Nusselt number values is recorded for all Re and G studied. The heat transfer augmentation is approximately 1332% at Re = 150 (Pr = 100, G = 0.25) with regard to the corresponding values at Re = 1. Lastly, a correlation for j (h) factor is determined for the preceded conditions.
机译:在水平平面中执行了具有附近绝热壁的方形障碍物周围的不可压缩流体流量和热传递的计算。 考虑的无量纲控制参数的范围是普朗特数(PR)= 10-100,雷诺数(RE)= 1-150和间隙比(G)= 0.25-1。 对于G = 0.5,观察到稳定状态,延长= 121,并且超出该RE,观察到的时间周期性。 从稳定的制度转移到时间周期性的政权发生在更大的重大比对于不合适的方形障碍物。 随着PR的增加,为所有RE和G记录平均营养数值的增加。 在RE = 1的相应值方面,传热增强在RE = 150(PR = 100,G = 0.25)中的传热增强约为1332%。最后,针对前述条件确定对J(H)因子的相关性。

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