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Study of Bulk-Loaded Liquid Propellant Combustion Propulsion Processes With Stepped-Wall Combustion Chamber

机译:阶梯壁燃烧室对散装液体推进剂燃烧过程的研究

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摘要

The multilevel stepped-wall chamber is designed to study the combustion stability control mechanism of the bulk-loaded liquid propellant gun (BLPG). The cold state experiment of the interaction of the high speed gas jet with liquid medium is conducted by means of high speed digital camera system. The simulated small caliber bulk-loaded liquid propellant combustion propulsion device is designed to study the effect of the stepped-wall chamber size on the combustion stability. The experimental results indicate that, the stepped-wall structure can restrain the expansion randomness of the Taylor cavity and leads smooth expansion at each step. In 4 stepped-wall chamber with ΔD/L = 3/40, the interior ballistic performance of BLPG is stable and the consistency of the p-t curves is good. Two-dimensional unsteady model is developed based on the BLPG combustion propulsion experiment. The numerical simulation results coincide well with the experiment.
机译:设计了多层阶梯壁室,研究了散装液体推进剂枪(BLPG)的燃烧稳定性控制机理。通过高速数码相机系统进行了高速气体射流与液体介质相互作用的冷态实验。设计了模拟的小口径散装液体推进剂燃烧推进装置,以研究阶梯式壁室尺寸对燃烧稳定性的影响。实验结果表明,阶梯壁结构可以抑制泰勒腔的膨胀随机性,并导致每一步的平稳膨胀。在ΔD/ L = 3/40的4阶阶梯室中,BLPG的内部弹道性能稳定且p-t曲线的一致性良好。基于BLPG燃烧推进实验建立了二维非定常模型。数值模拟结果与实验吻合良好。

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