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Jet mixing into a heated cross flow in a cylindrical duct: Influence of geometry and flow variations

机译:射流混合到圆柱管中的加热的横流中:几何形状和流量变化的影响

摘要

To examine the mixing characteristics of jets in an axi-symmetric can geometry, temperature measurements were obtained downstream of a row of cold jets injected into a heated cross stream. Parametric, non-reacting experiments were conducted to determine the influence of geometry and flow variations on mixing patterns in a cylindrical configuration. Results show that jet to mainstream momentum flux ratio and orifice geometry significantly impact the mixing characteristics of jets in a can geometry. For a fixed number of orifices, the coupling between momentum flux ratio and injector determines (1) the degree of jet penetration at the injection plane, and (2) the extent of circumferential mixing downstream of the injection plane. The results also show that, at a fixed momentum flux ratio, jet penetration decreases with (1) an increase in slanted slot aspect ratio, and (2) an increase in the angle of the slots with respect to the mainstream direction.
机译:为了检查射流在轴对称罐中的混合特性,在注入到加热的横流中的一排冷射流的下游获得了温度测量值。进行了参数化,非反应性实验,以确定几何形状和流量变化对圆柱形配置中混合模式的影响。结果表明,射流与主流的动量通量比和孔口几何形状显着影响了射流在罐体几何形状中的混合特性。对于固定数量的孔,动量通量比与喷油器之间的耦合关系决定(1)在喷油面的射流穿透程度,以及(2)在喷油面下游的周向混合程度。结果还表明,在固定的动量通量比下,射流穿透随着(1)倾斜槽长宽比的增加和(2)槽相对于主流方向的角度的增加而减小。

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