论文标题

平面反流喷气机的空气动力学

Aerodynamics of planar counterflowing jets

论文作者

Weiss, A. D., Sánchez, W. Coenen. A. L.

论文摘要

由两种不同密度的气体射流撞击而产生的平面层流流,从稳定喂养的半宽度$ r $分离的距离$ 2H $的稳定喂食的大喷嘴通过数值和分析方法调查了距离$ 2H $,这是对高元素和低处属性的典型情况的特定考虑来调查的。不可压缩。结果表明,密度加权涡流函数的引入有效地将问题降低到一个涉及两个相等密度的喷头的问题,从而删除了分隔两个喷气流的界面的涡旋表格。除了几何参数$ h/r $外,该解决方案仅取决于进料流中速度曲线的形状和射流动量 - 频率比率。虽然可以使用共形映射来确定与均匀速度曲线相对应的潜在解决方案,但总体上,数值集成需要计算旋转流,包括poiseuille速度剖面的旋转流,以及在限制中发现的简化解决方案$ h/r \ ll 1 $和$ h/r \ gg \ gg \ gg \ gg \ gg \ gg 1 $。结果用于量化逆流式研究研究中感兴趣的近阶点区域,包括应变速率的局部值以及分离界面的曲率以及应变速率的变化,远离停滞点。

The planar laminar flow resulting from the impingement of two gaseous jets of different density issuing into an open space from aligned steadily fed slot nozzles of semi-width $R$ separated a distance $2H$ is investigated by numerical and analytical methods, with specific consideration given to the high-Reynolds and low-Mach number conditions typically present in counterflow-flame experiments, for which the flow is nearly inviscid and incompressible. It is shown that introduction of a density-weighted vorticity-stream function formulation effectively reduces the problem to one involving two jets of equal density, thereby removing the vortex-sheet character of the interface separating the two jet streams. Besides the geometric parameter $H/R$, the solution depends only on the shape of the velocity profiles in the feed streams and on the jet momentum-flux ratio. While conformal mapping can be used to determine the potential solution corresponding to uniform velocity profiles, numerical integration is required in general to compute rotational flows, including those arising with Poiseuille velocity profiles, with simplified solutions found in the limits $H/R \ll 1$ and $H/R \gg 1$. The results are used to quantify the near-stagnation-point region, of interest in counterflow-flame studies, including the local value of the strain rate as well as the curvature of the separating interface and the variations of the strain rate away from the stagnation point.

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