首页> 外文会议>6th AIAA/ASME Joint Thermophysics and Heat Transfer Conference June 20-23, 1994/Colorado Springs, CO >A Solution-Adaptive Gridding Analysis of Base Flowfield for a Four-Engine Clustered Nozzle Configuration
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A Solution-Adaptive Gridding Analysis of Base Flowfield for a Four-Engine Clustered Nozzle Configuration

机译:四引擎簇状喷嘴配置的基础流场自适应求解网格分析

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The objective of this study is to propose a computational methodology that can effectively anchor the base flowfield of a four-engine clustered nozzle configuration. This computational methodology is based on a three-dimensional, viscous flow, pressure-based computational fluid dynamics (CFD) formualtion. For efficient CFD calculation, a Prandtl-Meyer solution treatment is applied to the algebraic grid lines for initial plume expansion resolution. As the solution evolves, the computational grid is adapted to the pertinent flow gradients. The CFD model employs an upwind scheme in which second- and fourth-order central differencing schemes with artificial dissipation are used. The computed quantitative base flow properties such as the radial base pressure distributions, model centerline static pressure, Mach number and impact pressure variations, and base pressure characteristic curve agreed reasonably well with those of the measurement.
机译:这项研究的目的是提出一种计算方法,该方法可以有效地锚定四引擎群集喷嘴配置的基本流场。此计算方法基于三维,粘性流,基于压力的计算流体动力学(CFD)形式。为了进行有效的CFD计算,将Prandtl-Meyer求解处理应用于代数网格线,以实现初始羽流扩展分辨率。随着解决方案的发展,计算网格将适应相关的流量梯度。 CFD模型采用逆风方案,其中使用了带有人工耗散的二阶和四阶中心差分方案。计算得出的定量基础流动特性,例如径向基础压力分布,模型中心线静压力,马赫数和冲击压力变化以及基础压力特性曲线与测量值基本吻合。

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