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首页> 外文期刊>Fluid Dynamics >Investigation of Flows Induced by Subsonic Turbulent Jets and Their Relation with the Effect of Static Pressure Reduction in a Jet
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Investigation of Flows Induced by Subsonic Turbulent Jets and Their Relation with the Effect of Static Pressure Reduction in a Jet

机译:亚源湍流喷射器诱导的流动的研究及其与静电减压效果的关系

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The interaction between turbulent jets, both swirling and nonswirling, and the ambient medium is studied on the basis of the results of measurements and numerical simulation. It is shown that the turbulent flow and the swirl give rise to induced ejection flow toward the jet. The mechanism of the jet action on the ambient medium is connected with a decrease in the static pressure in the jet, which, in turn, is due to either the flow swirl or the fluctuating flow in the mixing layer, when the static pressure reduces owing to the presence of velocity fluctuations. The former rarefaction mechanism is predominant in swirling jets and the latter predominates in jets without swirling. It is shown that the ambient medium inflow into the jet due to the rarefaction is independent in nature of the mechanism of the lowered pressure generation and that it is the kinetic energy of the jet that is the energy source for the induced flow.
机译:基于测量结果和数值模拟的基础研究了湍流射流之间的相互作用,旋转和非漩涡和环境介质。 结果表明,湍流和旋流使诱导喷射流向射流。 环境介质上的喷射作用的机制与射流中的静压的减小连接,逆转导致在静压降低时流动涡流或混合层中的波动流动 在存在速度波动。 前一种稀疏机制在旋转喷射时是主要的,并且后者在喷射器中占主导地位而不旋转。 结果表明,由于稀释导致的环境介质流入喷射是较低压力产生机制的自然的,并且它是射流的动能是诱导流动的能量源。

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