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Effect of turbulent dispersion on hydrodynamic characteristics in a liquid jet ejector

机译:湍流扩散对液体喷射器中水动力特性的影响

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摘要

Gas induction using a liquid jet is an extensively studied phenomenon. Many studies have been published detailing various hydrodynamic and mass transport aspects of gas induction in ejectors. Conversely, multiple studies have been published detailing jet dynamics, jet break up, nozzle geometry, effects of turbulence etc. In the modelling of the jet ejector systems CFD framework is used as the flow of gas is coupled with the liquid flow and the flow parameters like volume fraction, pressure drop/profile and velocity profiles both local and average are highly interdependent. Hence, it becomes important to capture all the flow physics in the simulations in order to understand the hydrodynamics. In the previous models the effect of turbulent dispersion was not included which led to incorrect calculation of phase profile, and other related parametric values. In the present work, the turbulence effects and its impact on the jet dynamics and gas induction rate in an ejector have been studied. Capturing the correct phase as well as velocity profile is imperative for the extension of the model to mass transfer and reactions. Lastly, other hydrodynamic properties like pressure drop, phase hold up and pressure profile help better the design correlations for jet ejectors. (C) 2018 Elsevier Ltd. All rights reserved.
机译:使用液体射流的气体诱导是广泛研究的现象。已经发表了许多研究,详细介绍了喷射器中气体诱导的各种流体动力学和质量传输方面。相反,已经发表了许多研究,详细介绍了射流动力学,射流破碎,喷嘴几何形状,湍流影响等。在射流喷射器系统的建模中,由于气体流与液体流以及流参数耦合,因此使用CFD框架如体积分数,局部和平均值的压降/分布和速度分布高度相关。因此,重要的是要在模拟中捕获所有流动物理学,以便理解流体力学。在以前的模型中,湍流弥散的影响并未包括在内,这会导致对相位分布以及其他相关参数值的错误计算。在目前的工作中,研究了湍流效应及其对喷射器中射流动力学和气体诱导率的影响。为了将模型扩展到传质和反应,必须捕获正确的相以及速度分布。最后,其他流体力学特性(如压降,相位滞留和压力曲线)有助于更好地设计射流喷射器的相关性。 (C)2018 Elsevier Ltd.保留所有权利。

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