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Space Shuttle Solid Rocket Motor Slag Expulsion Mechanisms

机译:航天飞机固体火箭发动机排渣机理

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A 13 psi pressure perturbation occurred at approximately 68 seconds on the right Redesigned Solid Rocket Motor (RSRM) during the STS-54 Space Shuttle mission. While pressure perturbations are a normal characteristic of RSRM operation, the magnitude of the STS-54 perturbation and the resulting thrust imbalance between the left and right motors was outside of flight experience. A joint Marshall Space Flight Center (MSFC) and Thiokol Corporation (RSRM manufacturer) team soon narrowed the probable cause to a temporary nozzle restriction due to slag expulsion. In support of the team, Rockwell Aerospace performed fluid finite element simulations and vehicle flight dynamic correlations to investigate possible slag expulsion mechanisms responsible for pressure perturbations. Results of the simulations and analyses provided evidence that the combination of flight induced accelerations acting on accumulated slag and nozzle vectoring were the most probable cause of RSRM slag expulsion.
机译:在STS-54航天飞机执行任务期间,右侧重新设计的固体火箭发动机(RSRM)大约在68秒时发生了13 psi的压力扰动。尽管压力扰动是RSRM操作的正常特征,但STS-54扰动的大小以及由此产生的左右电机之间的推力不平衡是飞行经验之外的。马歇尔太空飞行中心(MSFC)和Thiokol公司(RSRM制造商)的联合团队很快将可能的原因归因于由于排渣而造成的临时喷嘴限制。在该团队的支持下,罗克韦尔航空航天公司进行了流体有限元模拟和车辆飞行动力学相关性,以研究可能造成压力扰动的排渣机制。模拟和分析的结果提供了证据,表明飞行诱导的加速度作用于累积的炉渣和喷嘴矢量化的结合是RSRM炉渣排出的最可能原因。

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