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Analyzing of Internal Waverider Inlet and Sidewall Compression Inlet Performance

机译:内部Waverider入口和侧壁压缩入口性能分析

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A new internal waverider inlet which has regular rectangular shape of entrance and exit is designed at M=6.0. It's based on ICFC basic flowfield and derived with the technology of stream tracing and shock cutting. Comparisons are made between the newly designed inlet and a typical sidewall compression inlet. The design Mach number and entrance shape of this new inlet are chosen according to the sidewall compression inlet. Numerical results show that most of the performance parameters of the internal waverider inlet are a bit higher than the sidewall inlet, such as the flow capture coefficient, total pressure recovery and the kinetic efficiency. The paper compares the performance of these two inlets at off-design points as well, the internal waverider inlet can capture more than 91% of incoming flow at all conditions simulated, and shows a better performance either. This paper proves that internal waverider inlet using special technologies which lead to three dimensional compression as well as high flow capture coefficient is a kind of fixed-geometry inlet with great performance.
机译:在M = 6.0处设计了具有规则的入口和出口的新的内部Waverider入口。它基于ICFC基本流域,并衍生出流追踪和冲击切割技术。在新设计的入口和典型的侧壁压缩入口之间进行比较。根据侧壁压缩入口选择该新入口的设计马赫数和入口形状。数值结果表明,内部波浪者入口的大多数性能参数是比侧壁入口高的比特,例如流量捕获系数,总压力回收和动力学效率。本文也比较了这两种入口在非设计点时的性能,内部Waverider入口可以在模拟的所有条件下捕获超过91%的传入流量,并且显示出更好的性能。本文证明了使用特殊技术的内部Waverider入口,导致三维压缩以及高流量捕获系数是一种具有很强性能的固定几何入口。

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