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Shielding Development for Nuclear Thermal Propulsion

机译:核热推进的屏蔽发展

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Radiation shielding analysis and development for nuclear thermal propulsion (NTP) is currently in progress and preliminary results have enabled consideration for critical interfaces in the reactor and propulsion stage systems. Early analyses have highlighted a number of engineering constraints, challenges, and possible mitigating solutions. Performance constraints include permissible crew dose rates (shared with expected cosmic ray dose), radiation heating flux into cryogenic propellant, and material radiation damage in critical components. Design strategies in staging can serve to reduce radiation scatter and enhance the effectiveness of inherent shielding within the spacecraft while minimizing the required mass of shielding in the reactor system. Within the reactor system, shield design is further constrained by the need for active cooling with minimal radiation streaming through flow channels. Material selection and thermal design must maximize the reliability of the shield to survive the extreme environment through a long duration mission with multiple engine restarts. A discussion of these challenges and relevant design strategies are provided for the mitigation of radiation in nuclear thermal propulsion.
机译:目前正在进行核热推进(NTP)的辐射屏蔽分析和开发,初步结果已使考虑反应堆和推进级系统中的关键界面成为可能。早期分析突出了许多工程约束,挑战和可能的缓解方案。性能限制包括允许的机组人员剂量率(与预期的宇宙射线剂量共享),进入低温推进剂的辐射热通量以及关键部件中的物质辐射损害。分阶段的设计策略可用于减少辐射散射并增强航天器内固有屏蔽的有效性,同时将反应堆系统中所需的屏蔽质量最小化。在反应器系统内,屏蔽罩设计受到主动冷却的需求的限制,同时需要最少的辐射流经流动通道。材料选择和热设计必须通过长时间执行任务并多次重启发动机,最大限度地提高防护罩的可靠性,以在极端环境中生存。提供了有关这些挑战和相关设计策略的讨论,以减轻核热推进中的辐射。

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