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Average-passage simulation of counter-rotating propfan propulsion systems as applied to cruise missiles

机译:反向巡航螺旋桨推进系统在巡航导弹中的平均通过模拟

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摘要

Counter-rotating propfan (CRP) propulsion technologies are currently being evaluated as cruise missile propulsion systems. The aerodynamic integration concerns associated with this application are being addressed through the computational modeling of the missile body-propfan flowfield interactions. The work described in this paper consists of a detailed analysis of the aerodynamic interactions between the control surfaces and the propfan blades through the solution of the average-passage equation system. Two baseline configurations were studied, the control fins mounted forward of the counter-rotating propeller and the control fins mounted aft of the counter-rotating propeller. In both cases, control fin-propfan separation distance and control fin deflection angle were varied.
机译:反向旋转螺旋桨(CRP)推进技术目前正在作为巡航导弹推进系统进行评估。与这种应用有关的空气动力学集成问题正在通过导弹体-propfan流场相互作用的计算模型来解决。本文描述的工作包括通过平均通道方程组的解决方案,对控制表面和螺旋桨叶片之间的空气动力学相互作用进行详细分析。研究了两个基准配置,控制鳍安装在反向旋转的螺旋桨前方,控制鳍安装在反向旋转的螺旋桨后方。在这两种情况下,控制鳍片-propfan的分离距离和控制鳍片的偏转角都不同。

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