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Free-piston driver optimisation for simulation of high Mach number scramjet flow conditions

机译:自由活塞驱动器优化,可模拟高马赫数超燃冲压发动机流动条件

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摘要

The University of Queensland (UQ) is currently developing high Mach number, high total pressure scramjet flow conditions in its X2 and X3 expansion tube facilities. These conditions involve shock-processing a high-density air test gas followed by its unsteady expansion into a low-pressure acceleration tube. This relatively slow shock-processing requires the driver to supply high pressure gas for a significantly greater duration than normally required for superorbital flow conditions. One technique to extend the duration is to operate a tuned free-piston driver. For X2, this involves the use of a very light piston at high speeds so that, following diaphragm rupture, the piston displacement substitutes for vented driver gas, thus maintaining driver pressure much longer. However, this presents challenges in terms of higher piston loading and also safely stopping the piston. This article discusses the tuned driver concept, the design of a very lightweight but highly stressed piston, and details the successful development of a new set of tuned free-piston driver conditions for X2.
机译:昆士兰大学(UQ)目前正在其X2和X3膨胀管设施中开发高马赫数,高总压力超燃冲压发动机流量条件。这些条件包括对高密度的空气测试气体进行冲击处理,然后不稳定地膨胀成低压加速管。这种相对较慢的冲击处理要求驾驶员提供高压气体的持续时间比超轨道流动条件下通常所需的持续时间长得多。延长持续时间的一种技术是操作调谐的自由活塞驱动器。对于X2,这涉及在高速下使用非常轻的活塞,因此,在隔膜破裂后,活塞位移可替代排出的驱动气体,从而使驱动压力保持更长的时间。但是,这在更高的活塞负载以及安全地停止活塞方面提出了挑战。本文讨论了调谐驱动器的概念,非常轻巧但压力很大的活塞的设计,并详细介绍了X2一套新的调谐自由活塞驱动器条件的成功开发。

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