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Hypergolic Propellant Ignition Phenomenon Associated with Two-Phase Oxidizer Flow Injection

机译:两相氧化剂流注相关的高剂量推进剂点火现象

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During pulse-mode operation of a bipropellant engine that uses mixed oxides of nitrogen and monomethyl hydrazine as a propellant, a titanium alloy injector with an unlike-doublet impinging stream absorbs the heat from the injector face, which is heated to a high temperature during combustion. When the injector's temperature exceeds the boiling point of the oxidizer under several operating conditions, evaporation will occur at the initial inflow of each pulse. This evaporation phenomenon causes an unsteady two-phase flow that affects ignition and combustion phenomena. In this paper, this abnormal ignition and combustion phenomenon associated with the two-phase flow is investigated through experiments with a single-element injector. Data analysis on the impinging stream instability and the ignition phenomenon reveals that the unsteady oxidizer jet caused by evaporation may act as a trigger for high-frequency instability.
机译:在使用氮和一甲基肼的混合氧化物作为推进剂的双推进剂发动机的脉冲模式运行期间,具有双重冲击流的钛合金喷油器从喷油器表面吸收热量,该热量在燃烧过程中被加热到高温。 。在几个操作条件下,当喷射器的温度超过氧化剂的沸点时,在每个脉冲的初始流入处都会发生蒸发。这种蒸发现象会导致不稳定的两相流,从而影响点火和燃烧现象。在本文中,通过单元素喷油器的实验研究了与两相流相关的异常点火和燃烧现象。有关撞击流不稳定性和着火现象的数据分析表明,由蒸发引起的不稳定的氧化剂射流可能是引起高频不稳定性的诱因。

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