提高能源效率的双氧水基推进剂系统的发展

Godwin Glivin, V. Sreeja
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引用次数: 3

摘要

本文研究了单推进剂火箭发动机的推进剂系统,该系统采用单一燃料作为推进剂。其目的是提出完美的合适的推进剂,催化剂床设计和推进剂罐,这是发现在自然环境友好的绿色生产。过氧化氢是替代现有所有液体火箭发动机的最佳候选者之一,因为它具有生态友好的性质。由于90%过氧化氢具有简单、通用的控制特性,世界各国都在积极地进行研究。在双推进剂火箭发动机中,过氧化氢用作氧化剂,煤油用作燃料。过氧化氢在单推进剂火箭发动机中用作推进剂。因此,该项目工作将非常有助于生产出与90%过氧化氢兼容的材料,并设计用于地面测试和运载火箭/卫星的存储和处理系统。在这种观点下,设计了一种催化剂床,用于在单推进剂发动机中将过氧化氢分解为热蒸汽和氧,以提高能源效率。设计了一种与过氧化氢兼容的推进剂储罐,用于无污染储存。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Hydrogen Peroxide Based Propellant Systems for Increasing Energy Efficiency
The paper focuses on the propellant system of the monopropellant rocket engine where a single fuel is used as a propellant. The aim was to come out with perfect suitable propellant, catalyst bed design and a propellant tank which is found to be eco-friendly in nature as greener production. 90% Hydrogen peroxide is one of the best candidates for the replacement of all the existing liquid rocket engines with hydrazine based systems because of its eco-friendly in nature. Various countries worldwide is actively pursuing the studies on 90% Hydrogen peroxide because of its simple and versatile control properties. In bipropellant rocket engines Hydrogen Peroxide is used as an oxidizer and kerosene as fuel. 90% Hydrogen peroxide is used as propellant in monopropellant rocket engines. Hence this project work will be very useful in bringing out the materials that are compatible with 90% Hydrogen peroxide and design storage and handling systems for ground level tests and in launch vehicle (rockets) / satellites. In this view a catalyst bed is designed for the decomposition of hydrogen peroxide into hot steam and oxygen in monopropellant engines for increasing energy efficiency. A propellant tank that is compatible with hydrogen peroxide is designed for storage purpose without any contamination.
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