Optical diagnostics and instrumentation for supercritical combustion studies in a LOX/H/sub 2/ rocket engine combustion chamber

D. Klimenko, W. Clauss, W. Mayer, M. Oschwald, J.J. Smith
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引用次数: 4

Abstract

Quantitative and qualitative optical diagnostics have been successfully applied within a liquid propellant rocket engine with optical access at representative, supercritical operating conditions. A series of unique optical techniques have been implemented in an attempt to characterise the liquid oxygen (LOX) and hydrogen (H/sub 2/) spray flames prevalent in today's heavy launch vehicle engines. A windowed, high-pressure combustion chamber has been developed and constructed specifically for the purpose of the application of optical diagnostics. Precise control and regulation of operational and injection conditions is important to ensure consistent, stable operation of the combustor. A variety of parameters have been carefully monitored with the aid of an array of measurement instrumentation including, temperatures, pressures, vibrations and massflow rates.
LOX/H/ sub2 /火箭发动机燃烧室超临界燃烧研究的光学诊断和仪器
定量和定性光学诊断已成功地应用于具有代表性的超临界工况下具有光学通道的液体推进剂火箭发动机。一系列独特的光学技术已经在尝试表征液态氧(LOX)和氢(H/sub 2/)喷射火焰在今天的重型运载火箭发动机中普遍存在。为了光学诊断的应用,专门开发和建造了一个带窗的高压燃烧室。精确控制和调节操作和喷射条件对于确保燃烧室持续、稳定地运行非常重要。在一系列测量仪器的帮助下,对各种参数进行了仔细的监测,包括温度、压力、振动和质量流量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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