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Water Flow Diagnostics for Predicting Bi-Propellant Thruster Performance

机译:用于预测双推进剂推进性能的水流诊断

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We demonstrate an environmentally friendly and easily handling cold flow diagnostics to determine the value of exhaust velocity c* in bi-propellant thrusters, practically useful prior to the hot firing tests. We employ only water as the simulant liquid, and directly measure the local ratios of mixture and flow rate using a conventional patternator with an absorbance spectrometer. The density ratio mismatching to the real propellants of MON/MMH is able to be reasonably compensated. Combining with the chemical equilibrium analysis, we calculate c* at wide range of injection mixture ratio under several injector configurations. The validity of the framework is quantitatively evidenced by comparing with corresponding hot firing tests. This fact deduces that the mixing states of MON/MMH at firing condition is reproducible by water flow diagnostics under the appropriate conversion technique. We also investigate the c* trend resulting from injection conditions by flow visualizations.
机译:我们展示了一种环境友好且易于处理的冷流诊断程序,可确定双推进推进器中的排气速度c *值,在热点火测试之前实用。我们仅使用水作为模拟液体,并使用带有吸光度光谱仪的传统图案形成器直接测量混合物的局部比率和流速。与MON / MMH的真实推进剂不匹配的密度比可以合理地补偿。结合化学平衡分析,我们在几种喷射器配置下,在较宽的喷射混合比范围内计算c *。通过与相应的热烧制测试进行比较,可以定量证明该框架的有效性。这一事实推断出,在燃烧条件下,MON / MMH的混合状态在适当的转换技术下可通过水流诊断来再现。我们还通过流动可视化研究了由注入条件引起的c *趋势。

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