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Lattice Boltzmann study of flow and mixing characteristics of two-dimensional confined impinging streams with uniform and non-uniform inlet jets

机译:Lattice Boltzmann研究具有均匀和非均匀入口射流的二维约束撞击流的流动和混合特性

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Previous works have shown that impinging streams are susceptible to instabilities which will lead to asymmetric and deflecting flows. The inlet velocity profiles as one factor may affect the flow, temperature and mixing characteristics of this flow, which are very important in practical applications and little considered in previous works. In the present work, these characteristics for two inlet velocity profiles (uniform velocity and parabolic velocity, two representative profiles) at different configuration parameters {H/W = 1-4, H and W are the jets' separation and inlet width) and Reynolds numbers (Re = 10-200) are studied numerically via lattice Boltzmann method and compared in detail. In particular, the temperature characteristics with and without the buoyancy effects are investigated. The simulation results show that the inlet velocity profiles have strong influences on these characteristics at larger H/W and Re, which confirm that impinging streams are easily affected by the inlet velocity profiles.
机译:先前的工作表明,撞击流容易受到不稳定的影响,这将导致流动不对称和偏转。入口速度分布作为一个因素可能会影响该流的流量,温度和混合特性,这在实际应用中非常重要,在以前的工作中很少考虑。在本工作中,两个进气速度曲线(匀速和抛物线速度,两个代表性曲线)在不同的配置参数(H / W = 1-4,H和W是射流的分离度和进气宽度)下的这些特性和雷诺兹通过格子Boltzmann方法对数值(Re = 10-200)进行了数值研究,并进行了详细比较。特别地,研究了具有和没有浮力效应的温度特性。仿真结果表明,在较大的H / W和Re时,入口速度曲线对这些特性有很大的影响,这证实了撞击流很容易受到入口速度曲线的影响。

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