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Structural integrity and durability for Space Shuttle main engine and future reusable space propulsion systems

机译:航天飞机主机和未来可重复使用的空间推进系统的结构完整性和耐用性

摘要

NASA is conducting a program which will establish a technology base for the orderly evolution of reusable space propulsion systems. As part of that program, NASA initiated a Structural Integrity and Durability effort for advanced high-pressure oxygen-hydrogen rocket engine technology. That effort focuses on the development of: (1) accurate analytical models to describe flow fields; aerothermodynamic loads; structural responses; and fatigue/fracture, from which life prediction codes can be evolved; and (2) advanced instrumentation with capabilities to verify the codes in an SSME-like environment as well as the potential for future use as diagnostic sensors for real-time condition monitoring of critical engine components.
机译:NASA正在执行一项计划,该计划将为可重复使用的空间推进系统的有序发展建立技术基础。作为该计划的一部分,美国宇航局针对先进的高压氧氢火箭发动机技术启动了结构完整性和耐久性研究。该工作着重于以下方面的开发:(1)精确的分析模型来描述流场;空气动力负荷;结构反应;疲劳/断裂,可以据此发展寿命预测代码; (2)先进的仪器,具有在类似SSME的环境中验证代码的能力,以及将来用作诊断传感器以对关键发动机组件进行实时状态监视的潜力。

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