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Numerical study of local entropy generation in a heated turbulent plane jet developing in a co-flowing stream

机译:并流产生的热湍流平面射流中局部熵产生的数值研究

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The present paper numerically investigates the effects of a co-flowing stream on the mean and turbulent flow properties, air entrainment, mixing efficiency, entropy generation rate, and Merit and Bejan numbers of a heated turbulent plane jet emerging in a co-flowing stream. The angle of moving external stream (α) is varied between −10° and + 10°.The first order k-ε turbulence model was used and compared to the existing experimental data. The Finite Volume Method (FVM) was used to discretize the governing equations. The predicted results were consistent with the experimental data. The obtained results showed that the alfa angle directed away from the centerline enhances the mixing. Moreover, the entrainment hypothesis was introduced to describe the development of turbulent jets issuing in a co-flowing air stream. This hypothesis is related to the mass flow rate of the surrounding fluid entrained into the jet. So far, it is obvious that the co-flow has considerably decreased air entrainment.
机译:本文从数值上研究了同向流对均流和湍流特性,空气夹带,混合效率,熵产生速率以及在同向流中出现的受热湍流平面射流的品质和Bejan数的影响。外流运动的角度(α)在-10°和+ 10°之间变化。使用一阶k-ε湍流模型并将其与现有实验数据进行比较。有限体积法(FVM)用于离散控制方程。预测结果与实验数据一致。所得结果表明,偏离中心线的阿尔法角增强了混合。此外,引入了夹带假说来描述在并流的气流中发出的湍流射流的发展。该假设与夹带到射流中的周围流体的质量流率有关。到目前为止,很明显,同流已大大减少了空气夹带。

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