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Numerical modeling of turbulence mixedconvection heat transfer in air filled enclosures byfinite volume method

机译:有限体积法对充气罩内湍流混合对流换热的数值模拟

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摘要

In the present study, first the turbulent natural convection and then laminar mixed convection of air flow was solved in a room and the calculated outcomes are compared with results of other scientists and after showing validation of calculations, aforementioned flow is solved as a turbulent mixed convection flow, using the valid turbulence models Standard k-e, RNG k-ε and RSM. To solve governing differential equations for this flow, finite volume method was used. This method is a specific case of residual weighting method. The results show that at high Richardson Numbers, the flow is rather stationary at the center of the enclosure. Moreover, it is distinguished that when Richardson Number increases the maximum of local Nusselt decreases. Therefore, it can be said that less number of Richardson Number, more rate of heat transfer.
机译:在本研究中,首先解决了室内的湍流自然对流,然后求解了层流混合对流,并将计算结果与其他科学家的结果进行了比较,并且在显示了计算结果之后,将上述流量作为湍流混合对流进行了求解流动,使用标准ke,RNGk-ε和RSM的有效湍流模型。为了解决该流动的控制微分方程,使用了有限体积法。此方法是残差加权方法的特定情况。结果表明,在较高的理查森数下,流动在外壳的中心相当稳定。而且,可以看出当Richardson数增加时,局部Nusselt的最大值会减少。因此,可以说理查森数越少,传热率越高。

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