Analysis of liquid rocket propellant in nitroglycerin injector reactors

maryono maryono, Muhammad Akhlis Rizza
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Abstract

The propulsion of the rocket is due to the thrust resulting from the combustion rate. The propellant energy can be increased by increasing the fuel pressure and temperature of the propellant. Increasing the pressure and temperature of the propellant will increase its combustion rate and the operating conditions of the rocket motor. The most effective liquid propellant used is Nitroglycerin (NG). Nitroglycerin was prepared using the glycerol nitration method with the principle of an injector-based reactor. Therefore, in this research, nitroglycerin was made using the Injector Reactor method with variations in flow rate and injection volume. The results showed that the effect of variations in flow rate and solution volume on the synthesis of nitroglycerin caused a change in solution temperature. Flow rate is closely related to the volume of solution used. The higher the temperature produced, the more heat energy will increase so that the pressure and combustion rate of the propellant increase. The most optimum results use a flow rate of 200 µm/s and a solution volume of 6 ml of glycerin, nitric acid, and sulfuric acid each with a temperature of 37.6oC.
硝酸甘油喷射器反应器中液体火箭推进剂的分析
火箭的推进力来自于由燃烧速率产生的推力。可以通过提高推进剂的燃料压力和温度来提高推进剂的能量。提高推进剂的压力和温度将提高推进剂的燃烧速度和火箭发动机的工作条件。最有效的液体推进剂是硝酸甘油(NG)。采用注入式反应器原理,采用甘油硝化法制备硝酸甘油。因此,在本研究中,采用不同流速和进样量的注射器反应器法制备硝化甘油。结果表明,流速和溶液体积的变化对硝酸甘油合成的影响引起了溶液温度的变化。流速与所用溶液的体积密切相关。产生的温度越高,增加的热能就越多,从而使推进剂的压力和燃烧速度增加。流速为200µm/s,甘油、硝酸和硫酸溶液体积为6ml,温度为37.6℃时,获得最佳结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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