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首页> 外文期刊>Advances in Aircraft and Spacecraft Science >Enlarge duct length optimization for suddenly expanded flows
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Enlarge duct length optimization for suddenly expanded flows

机译:加大风管长度优化以实现突然扩展的流量

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摘要

In many applications like the aircraft or the rockets/missiles, the flow from a nozzle needs to be expanded suddenly in an enlarged duct of larger diameter. The enlarged duct is provided after the nozzle to maximize the thrust created by the flow from the nozzle. When the fluid is suddenly expanded in an enlarged duct, the base pressure is generally lower than the atmospheric pressure, which results in base drag. The objective of this research work is to optimize the length to diameter (L/D) ratio of the enlarged duct using the CFD analysis in the flow field from the supersonic nozzle. The flow from the nozzle drained in an enlarged duct, the thrust, and the base pressure are studied. The Mach numbers for the study were 1.5,2.0 and 2.5. The nozzle pressure ratios (NPR) of the study were 2, 5 and 8. The L/D ratios of the study were 0.5, 1, 2, 3, 4, 5, 6, 7, 8, 9 and 10. Based on the results, it is concluded that the L/D ratio should be increased to an optimum value to reattach the flow to an enlarged duct and to increase the thrust. The supersonic suddenly expanded flow field is wave dominant, and the results cannot be generalized. The optimized L/D ratios for various combinations of flow and geometrical parameters are given in the conclusion section.
机译:在飞机或火箭/导弹等许多应用中,来自喷嘴的流量需要在直径更大的扩大管道中突然扩大。在喷嘴之后提供扩大的导管,以最大程度地增加由喷嘴的流动所产生的推力。当流体在扩大的管道中突然膨胀时,基本压力通常低于大气压,这会导致基本阻力。这项研究工作的目的是在超音速喷嘴的流场中使用CFD分析来优化扩管的长径比(L / D)。研究了从喷嘴排出的,扩大的管道中的流量,推力和基本压力。该研究的马赫数为1.5、2.0和2.5。研究的喷嘴压力比(NPR)为2、5和8。研究的L / D比为0.5、1、2、3、4、5、6、7、8、9和10。结果表明,L / D比应增加到最佳值,以将流量重新连接到扩大的管道并增加推力。超音速突然扩展的流场是波为主的,结果不能一概而论。结论部分给出了各种流量和几何参数组合的最佳L / D比。

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