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首页> 外文期刊>Journal of Fluid Science and Technology >Effects of Leading-Edge Truncation and Stunting on Drag and Efficiency of Busemann Intakes for Axisymmetric Scramjet Engines
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Effects of Leading-Edge Truncation and Stunting on Drag and Efficiency of Busemann Intakes for Axisymmetric Scramjet Engines

机译:前沿截断和发育迟缓对轴对称超燃冲压发动机Busemann进气道阻力和效率的影响

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摘要

Designing high-performance air intakes is of crucial importance for the successful operation of hypersonic scramjet propulsion. This paper investigates the performance of axisymmetric intakes obtained by applying two shortening methods, namely, leading-edge truncation and stunting (longitudinal contraction), to the full Busemann intake in inviscid and viscous flowfields. The primary aim is to identify the key design factors and underlying flow physics in order to achieve the optimum performance with minimum weight by striking the balance between viscous and shock losses. The effects of intake shortening on performance are similar for the two methods for moderate length reduction (25%), conducing to considerable reduction in intake weight. Even reduced to half length, truncated intakes can produce reasonable compression (60% of the full Busemann intake) with the original level of total pressure recovery maintained in viscous flowfields. Stunted intakes, on the other hand, can enhance compression with considerable total pressure penalty, eventually leading to intake unstart at a certain point due to the emergence of Mach reflection, which makes this method potentially useful in situations where locally high pressure and temperature are desired near the centreline at the cost of total pressure recovery.
机译:设计高性能进气口对于高超音速超燃冲压发动机推进的成​​功运行至关重要。本文研究了在无粘性和粘性流场中,对整个Busemann进气口采用两种缩短方法,即前沿截短和发育迟缓(纵向收缩),从而获得了轴对称进气口的性能。主要目的是确定关键的设计因素和潜在的流动物理特性,从而通过在粘性和冲击损失之间取得平衡来以最小的重量实现最佳性能。对于中等长度的减少(25%)的两种方法,进气缩短对性能的影响是相似的,从而导致进气重量的显着降低。即使减少到一半长度,截断的进气口也可以产生合理的压缩力(占整个Busemann进气口的60%),同时在粘性流场中保持原始的总压力恢复水平。另一方面,进风不畅会增加压缩力,但总压力会相当大,由于马赫反射的出现,最终导致进气在某个点不启动,这使得该方法在需要局部高压和高温的情况下可能有用在中心线附近,以恢复总压力为代价。

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