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基于ADN的液体推进剂微波点火及燃烧特性的实验研究

Experimental Research on Microwave Ignition and Combustion Characteristics of ADN-Based Liquid Propellant.

作者信息

Shen Jiannan, Yu Yusong, Liu Xuhui, Cao Jie

机构信息

Hydrogen Energy and Space Propulsion Laboratory, School of Mechanical, Electronic and Control Engineering, Beijing Jiaotong University, Beijing 100044, China.

Beijing Institute of Control Engineering, Beijing 100190, China.

出版信息

Micromachines (Basel). 2022 Mar 25;13(4):510. doi: 10.3390/mi13040510.

Abstract

Microwave ignition has attracted much attention due to its advantages of reliable ignition, large ignition area and cold-start capability. In this paper, the experimental method is used to explore the ignition ability of the microwave device to ADN-based liquid propellant. Additionally, we discuss the influence of the inlet power and rate of propellant injected into the ignition system on the height of the combustion jet and the combustion temperature. In the experiment, a microwave-assisted ignition system was established based on a special microwave resonant cavity. The liquid propellant and working gas were sprayed into the resonator cavity through the hollow straight tube beneath the resonant cavity. The test results show that the device can ignite the propellant under the condition of 800 W input power, which proves the feasibility of the microwave ignition device for ADN-based liquid propellant. Microwave power has some influence on the flame spray height at the initial stage of combustion. The spray height at 2000 W is increased by 55.7% in comparison to 1000 W. In the stable combustion stage, the input power has a very significant increase in the average temperature of the flame, which is increased by 25%. The combustion is relatively better when the propellant flow rate is 30 mL/min, and the height of the flame spray increases by 25.2%. The increase in throughput did not have a significant impact on the flame temperature.

摘要

微波点火因其点火可靠、点火面积大及冷启动能力等优点而备受关注。本文采用实验方法探究微波装置对基于二硝酰胺铵(ADN)的液体推进剂的点火能力。此外,我们还讨论了进入点火系统的推进剂的输入功率和注入速率对燃烧射流高度和燃烧温度的影响。在实验中,基于一个特殊的微波谐振腔建立了微波辅助点火系统。液体推进剂和工作气体通过谐振腔下方的空心直管喷入谐振腔内。测试结果表明,该装置在800W输入功率的条件下能够点燃推进剂,这证明了微波点火装置对基于ADN的液体推进剂的可行性。微波功率在燃烧初始阶段对火焰喷射高度有一定影响。与1000W相比,2000W时的喷射高度增加了55.7%。在稳定燃烧阶段,输入功率使火焰的平均温度有非常显著的升高,升高了25%。当推进剂流速为30mL/min时燃烧相对较好,火焰喷射高度增加了25.2%。流量的增加对火焰温度没有显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb49/9027818/b0f37580c6de/micromachines-13-00510-g001.jpg

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