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A numerical procedure for the laminar heat transfer in curved square ducts

机译:弯曲方管内层流传热的数值程序

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摘要

The fully developed forced convective heat transfer flow in a curved square duct is studied, under a constant uniform wall temperature axially and peripherally. The continuity and momentum equations are solved with a new numerical-variational method denoted the CVP method. The method uses a nonstaggered grid for all primitive variables without introducing spurious oscillations in the solutions. Numerical results are presented for the effects of the curvature, the Dean number and the stream pressure gradient, on the velocity, the temperature, the friction factor, and the Nusselt number for fluids with Prandtl numbers 0.7 and 7. The accuracy of the method is discussed, and the results are in close agreement with those obtained by other methods.
机译:研究了在恒定的均匀壁温下轴向和周向在弯曲方管中充分展开的强制对流传热流。用表示为CVP方法的新的数值变分方法求解连续性和动量方程。该方法对所有原始变量使用非交错网格,而不会在解中引入杂散振荡。给出了曲率,迪安数和流体压力梯度对普朗特数为0.7和7的流体的速度,温度,摩擦系数和Nusselt数的影响的数值结果。该方法的准确性为讨论,并且结果与通过其他方法获得的结果非常一致。

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