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Phase 1 Space Fission Propulsion System Design Considerations

机译:第一阶段空间裂变推进系统设计注意事项

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Fission technology can enable rapid, affordable access to any point in the solar system. If fission propulsion systems are to be developed to their full potential; however, near-term customers must be identified and initial fission systems successfully developed, launched, and operated. Studies conducted in fiscal year 2001 (IISTP, 2001) show that fission electric propulsion (FEP) systems operating at 80 kWe or above could enhance or enable numerous robotic outer solar system missions of interest. At these power levels it is possible to develop safe, affordable systems that meet mission performance requirements. In selecting the system design to pursue, seven evaluation criteria were identified: safety, reliability, testability, specific mass, cost, schedule, and programmatic risk. A top-level comparison of three potential concepts was performed: an SP-100 based pumped liquid lithium system, a direct gas cooled system, and a heatpipe cooled system. For power levels up to at least 500 kWt (enabling electric power levels of 125-175 kWe, given 25-35% power conversion efficiency) the heatpipe system has advantages related to several criteria and is competitive with respect to all. Hardware-based research and development has further increased confidence in the heatpipe approach. Successful development and utilization of a "Phase 1" fission electric propulsion system will enable advanced Phase 2 and Phase 3 systems capable of providing rapid, affordable access to any point in the solar system.
机译:裂变技术可以使人们以负担得起的价格快速进入太阳系的任何地方。如果要充分发挥裂变推进系统的作用;但是,必须确定近期客户,并成功开发,启动和运行初始裂变系统。在2001财政年度进行的研究(IISTP,2001)表明,运行在80 kWe或更高功率的裂变电推进(FEP)系统可以增强或实现许多令人关注的机器人外部太阳系任务。在这些功率级别上,有可能开发出满足任务性能要求的安全,负担得起的系统。在选择要遵循的系统设计时,确定了七个评估标准:安全性,可靠性,可测试性,比重,成本,进度和计划风险。进行了三个潜在概念的高层比较:基于SP-100的泵送液态锂系统,直接气体冷却系统和热管冷却系统。对于至少500 kWt的功率水平(在给定25-35%的功率转换效率的情况下,允许125-175 kWe的功率水平),热管系统具有与多项标准相关的优势,并且在所有方面都具有竞争力。基于硬件的研发进一步提高了人们对热管方法的信心。成功开发和利用“第1阶段”裂变电力推进系统将使先进的第2阶段和第3阶段系统能够为太阳能系统的任何点提供快速且经济的接入。

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