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SWIRL INFLUENCE ON MIXING AND REACTIVE FLOWS

机译:旋流对混合流和反应流的影响

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The interaction of two confined coaxial jets has been studied using Computational Fluid Dynamics. Annular jet flows over 8 flat blade swirl generator. Numerical simulation uses RNG k-e turbulence model. These models are suitable for turbulent swirl dominated flows. Intermediate swirl injector has been simulated and the flow patterns for non-reactive and reactive cases are contrasted. Low swirling injectors do not promote the fluid to turn over near the center of the chamber, resulting larger mixing zones with weak gradients. Whereas large swirling flows promote the formation of an Inner Recirculation Zone that is a precursor of higher gradients. Probability Density Function is selected as combustion model. High swirl numbers let fix the location of the reactive zone.
机译:已经使用计算流体动力学研究了两个受限同轴射流的相互作用。环形射流流过8个扁平叶片涡流发生器。数值模拟使用RNG k-e湍流模型。这些模型适用于湍流旋流为主的流动。模拟了中间旋流喷油器,对比了非反应性和反应性情况下的流型。低涡旋喷射器不会促进流体在腔室中心附近翻转,从而导致较大的混合区域且梯度较弱。而大的旋流则促进了内部再循环区的形成,该内部再循环区是较高梯度的先兆。选择概率密度函数作为燃烧模型。高旋流数可以确定反应区的位置。

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