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Hybrid Rocket Underwater Propulsion: A Preliminary Assessment

机译:混合火箭水下推进器:初步评估

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This paper presents an attempt to use the hybrid rocket for marine applications with a 500 N class hybrid motor. A 5-port high density polyethylene (HDPE) fuel grain was used as a test-bed for the preliminary assessment of the underwater boosting device. A rupture disc preset to burst at a given pressure was attached to the nozzle exit to prevent water intrusion where a careful hot-firing sequence was unconditionally required to avoid the wet environment within the chamber. The average thrust level around 450 N was delivered by both a ground test and an underwater test using a water-proof load cell. However, it was found that instantaneous underwater thrusts were prone to vibration, which was due in part to the wake structure downstream of the nozzle exit. Distinctive ignition curves depending on the rupture disc bursting pressure and oxidizer mass flow rate were also investigated. To assess the soft-start capability of the hybrid motor, the minimum power thrust, viewed as the idle test case, was evaluated by modulating the flow controlling valve. It was found that an optimum valve angle, delivering 16.3% of the full throttle test case, sustained the minimum thrust level. This preliminary study suggests that the throttable hybrid propulsion system can be a justifiable candidate for a short-duration, high-speed marine boosting system as an alternative to the solid underwater propulsion system.
机译:本文提出了将混合动力火箭与500 N级混合动力发动机一起用于海洋应用的尝试。使用5端口高密度聚乙烯(HDPE)燃料颗粒作为试验台,对水下助推装置进行初步评估。预先设置为在给定压力下破裂的破裂盘连接到喷嘴出口,以防止水侵入,在无条件的情况下,必须仔细进行热点火过程,以避免室内潮湿的环境。地面测试和水下测试均使用防水式称重传感器提供了450 N左右的平均推力水平。但是,发现瞬时水下推力容易产生振动,这部分归因于喷嘴出口下游的尾流结构。还研究了取决于破裂盘破裂压力和氧化剂质量流量的独特点火曲线。为了评估混合动力电动机的软启动能力,通过调节流量控制阀来评估最小功率推力(被视为怠速测试情况)。结果发现,最佳的气门角度可以承受最小油门推力,可达到全油门测试情况的​​16.3%。这项初步研究表明,可节流的混合动力系统可以作为短期,高速海上动力系统的合理候选者,以替代固体水下推进系统。

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