【24h】

'O/F Shift' in Hybrid Rockets

机译:混合火箭的“ O / F Shift”

获取原文

摘要

For most hybrid rocket systems, oxidizer to fuel ratio (O/F) changes over time due to 1) natural growth of the fuel port diameter and 2) oxidizer flow rate variations, if throttling is employed. This phenomenon, which is referred to as "O/F shift", leads to a reduction in motor performance. Note that liquid or solid rocket motors are not subject to temporal O/F variations, which is wrongfully considered as one of the most critical disadvantages of hybrid rockets. In this paper, the effect of "O/F shift" is quantified for hybrid rocket motors. Analytical formulas for the temporal O/F variation and the overall c~* efficiency drop associated with the variation has been derived for single circular port motors. It has been shown that for a typical motor, c~* efficiency drop due to O/F variation is well below 0.2%, a value which is too small to be measured in an actual motor test It is also shown that for a wagon wheel type multiport configuration (with triangular ports), efficiency drop is significantly worse than the single circular port case. Even for the multiport systems, the shift does not have a controlling effect on the overall efficiency of the motor. A number of strategies have been outlined to control the adverse effects of O/F variation in a hybrid rocket. For a single circular port design with limited throttling, no mitigation is required. For systems with deep throttling requirements, aft oxidizer injection seems like a viable strategy to retain a high level of overall efficiency.
机译:对于大多数混合动力火箭系统,由于1)燃料端口直径的自然增长和2)氧化剂流量变化(如果采用节流),氧化剂与燃料的比例(O / F)随时间变化。这种现象称为“ O / F偏移”,导致电机性能下降。请注意,液体或固体火箭发动机不受时间O / F变化的影响,这被错误地视为混合火箭的最关键缺点之一。在本文中,量化了混合动力火箭发动机的“ O / F换档”效果。对于单圆形端口电动机,已经推导出了时间O / F变化以及与变化相关的总c *效率下降的解析公式。已经表明,对于典型的电动机,由于O / F变化导致的c〜*效率下降远低于0.2%,该值太小,无法在实际电动机测试中进行测量。如果使用多端口配置(带有三角形端口),效率下降明显比单圆形端口情况差。即使对于多端口系统,换档也不会对电动机的整体效率产生控制作用。已经概述了许多策略来控制混合火箭中O / F变化的不利影响。对于节流受限的单个圆形端口设计,不需要缓解措施。对于节流要求高的系统,尾部氧化剂注入似乎是保持高水平整体效率的可行策略。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号