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首页> 外文期刊>Journal of Spacecraft and Rockets >Study of the Ignition Overpressure Suppression Technique by Water Addition
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Study of the Ignition Overpressure Suppression Technique by Water Addition

机译:加水抑制点火超压技术的研究

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摘要

The main objective of this study is to gain an understanding of the mechanisms responsible for the suppression of the ignition overpressure observed when water is injected through discrete nozzles into a rocket exhaust. A simplified launch-vehicle/launchpad configuration of relevant importance is selected for this study. This configuration is then numerically modeled using two-phase computational fluid dynamics with a representative motor startup sequence and a series of water addition configurations. The study focuses on the interaction between the ignition overpressure wave and the injected water. Chemical reactions are not included in the model; therefore, the effect of afterburning of fuel-rich exhaust is omitted in this study. A total of 11 water addition configurations were studied. The study demonstrated that ignition overpressure is strongly affected by the cooling of the plume and the amount of obstruction restricting the expansion of the plume. Also, the study suggests the existence of an optimal water addition rate with a weak dependence on the water nozzle pressure drop.
机译:这项研究的主要目的是了解抑制水通过离散喷嘴喷入火箭排气中时观察到的点火超压的机理。本研究选择了具有重要意义的简化的发射车/发射板配置。然后,使用具有代表性的电动机启动顺序和一系列加水配置的两相计算流体动力学对这种配置进行数值建模。该研究着重于点火超压波与注入水之间的相互作用。模型中不包括化学反应;因此,本研究中忽略了富燃料废气的后燃影响。共研究了11种加水配置。研究表明,点火超压受羽流冷却和阻碍羽流膨胀的阻塞量的强烈影响。此外,研究表明存在最佳的加水速率,并且对水喷嘴压降的依赖性较小。

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