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Dynamics of a thin radial liquid flow

机译:稀薄的径向液体流动的动力学

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The present work proposes an extension of the existing analytical development on the radial spread of a liquid jet over a horizontal surface to the case of a thin radial flow. When the gap, H, between the jet nozzle and the plate is reduced the discharging area may be smaller than the inlet area leading to an increase of the main flow velocity downstream of the thin cylindrical opening. This increase of velocity, defined here as 1/alpha, can be related to the relative gap of the nozzle H/R with R the nozzle pipe radius. Numerical computations with a volume of fluid method were realised with for H/R ranging from 0.2 to 3 and with flow rates Q of 3 and 6 1 min(-1). The results of these computations allowed us to express a with respect to H/R. Taking in account the flow acceleration allowed us to extend the set of equation from the jet impacting flow to the thin cylindrical opening flow. The liquid layer thickness and the surface velocity differ with a maximum error of 4% between the flow predicted by the model and computations. Main discrepancies appear in the region close to the nozzle where the analytical model assumption of a constant velocity outside the boundary layer is not valid. However, further downstream the model and the computations are in good agreement. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本工作提出了将现有的分析方法扩展到液体射流在水平表面上的径向扩散到细径流的情况下的扩展。当喷嘴和板之间的间隙H减小时,排出面积可以小于入口面积,从而导致细圆柱形开口下游的主流速度增加。速度的增加(这里定义为1 / alpha)可能与喷嘴H / R与喷嘴管半径R的相对间隙有关。 H / R范围从0.2到3,流速Q分别为3和6 1 min(-1),实现了用体积流体法进行的数值计算。这些计算的结果使我们能够相对于H / R表达a。考虑到流动加速度,我们可以将方程组从射流冲击流扩展到薄的圆柱形开口流。通过模型和计算预测的流量之间,液层厚度和表面速度的最大误差为4%。主要差异出现在靠近喷嘴的区域,在该区域边界层之外恒定速度的解析模型假设无效。然而,在更下游的模型和计算是一致的。 (C)2016 Elsevier Ltd.保留所有权利。

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