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首页> 外文期刊>Journal of aerospace engineering >Experimental and Numerical Research on the Diversion Effect of a Conic Flame Deflector for a Lunar Module Ascent Stage
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Experimental and Numerical Research on the Diversion Effect of a Conic Flame Deflector for a Lunar Module Ascent Stage

机译:月球模块上升阶段圆锥形火焰偏转器转移效果的实验和数值研究

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The diversion effect of a conic flame deflector for a lunar module ascent stage is investigated experimentally and numerically. Eighteen tests were performed in a vacuum chamber mounted with a liquid helium cryogenic pump using a scaled engine and models. The experimental results indicate that the conic flame deflector can guide the exhaust gas away from the ascent stage model more effectively than a plate; meanwhile, the conic flame deflector can create a reverse torque, which helps to correct the deflection of the ascent stage model. Finally, the experimental results show that the reverse torque changes with the distance and angle between the ascent stage model and the conic flame deflector model. Numerical simulations have been done with the computational fluid dynamics and direct simulation Monte Carlo (CFD/ DSMC) method, and the numerical results are in good agreement with the experimental results. The numerical results reveal that the reason for the above phenomena is shock waves. An expansion wave starting from the nozzle lip and a compression wave starting from the cone surface control the amount and speed of the exhaust gas by changing the magnitude and direction of flow velocity and then influence the aerodynamic pressure on the ascent stage model. (C) 2016 American Society of Civil Engineers.
机译:实验和数值研究了圆锥形导流板对登月舱上升阶段的导流作用。使用比例发动机和模型在装有液氦低温泵的真空室中进行了18个测试。实验结果表明,与平板相比,圆锥形导流板可以更有效地引导废气离开上升模型。同时,锥形导流板会产生反向扭矩,这有助于校正上升阶段模型的挠度。最后,实验结果表明,反向转矩随上升阶段模型和圆锥形火焰偏转器模型之间的距离和角度而变化。用计算流体动力学和直接模拟蒙特卡洛(CFD / DSMC)方法进行了数值模拟,数值结果与实验结果吻合良好。数值结果表明,上述现象的原因是冲击波。从喷嘴唇缘开始的膨胀波和从锥面开始的压缩波通过改变流速的大小和方向来控制废气的量和速度,然后影响上升模型上的空气压力。 (C)2016年美国土木工程师学会。

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