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Heat transfer intensification by jet impingement – numerical analysis using RANS approach

机译:射流冲击强化传热–使用RANS方法进行数值分析

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Jet impingement is a method of the heat transfer enhancement applied in the engineering systems. The idea is to generate fast-flow fluid jet which impinge on the heated (or cooled) surface, causing significantly higher heat transfer rate. Although some flat surface jet impingement cases are described in the literature, the validated data is still limited. The reason is coming from the fact, that these flows are hydrodynamically complex. Therefore the numerical analysis is necessary to understand the phenomena, especially in the range of turbulent flow. The well-known and accurate method is Reynolds Averaged Navier-Stokes (RANS) approach. However, depending on the applied turbulence model, various results can be obtained. The reason is that the jet impingement strongly depends on the complex boundary layer effects and their resolving is still challenging for RANS models and until now it is their weakest point. In the paper, the hydrodynamic and thermal, numerical results of jet impingement are presented, depending on selected RANS based models. The aim was to indicate their ability to anticipate the turbulence parameters.
机译:射流冲击是在工程系统中应用的一种增强传热的方法。这个想法是产生撞击在加热(或冷却)表面上的快速流动的流体射流,从而显着提高传热速率。尽管在文献中描述了一些平面射流撞击的情况,但验证的数据仍然有限。原因是因为这些流动在流体力学上是复杂的。因此,数值分析对于理解这种现象是必要的,尤其是在湍流范围内。众所周知且准确的方法是雷诺平均Navier-Stokes(RANS)方法。但是,根据所应用的湍流模型,可以获得各种结果。原因是射流撞击在很大程度上取决于复杂的边界层效应,对于RANS模型来说,其解决仍具有挑战性,并且到目前为止,这是其最薄弱的环节。在本文中,根据所选的基于RANS的模型,给出了射流冲击的流体动力和热力数值结果。目的是表明他们预测湍流参数的能力。

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