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The Kilopower Reactor Using Stirling Technology (KRUSTY) Nuclear Ground Test Results and Lessons Learned

机译:使用斯特林技术(KRUSTY)的核电反应堆的核地面测试结果和经验教训

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The Kilopower nuclear ground testing nicknamed KRUSTY (Kilopower Reactor Using Stirling TechnologY) was completed at the Nevada Nuclear Security Site (NNSS) on March 21, 2018. This full scale nuclear demonstration verified the Kilopower reactor neutronics during startup, steady state, and transient operations in a space simulated environment. This was the first space reactor test completed for fission power systems in over 50 years and marked a turning point in NASA's nuclear program. The completed reactor power system design incorporated flight prototypic materials and full-scale components in an effort to study the reactor dynamics at full power and significantly reduce follow on risk of a future flight demonstration. This design provided a unique opportunity for the power system to simulate several nominal and off-nominal mission scenarios that allowed the designers to verify that the reactor dynamics could tolerate many worst case conditions regarding reactor stability and control. The dynamic changes imposed on the reactor validated the ability of the reactor to load follow the power conversion system and passively control the fuel temperature and overall system stability. With successful completion of the KRUSTY experiment, the NASA/DOE team will evaluate the lessons learned throughout the project and apply them towards a flight demonstration of a Kilopower reactor.
机译:绰号KRUSTY的Kilopower核地面测试已于2018年3月21日在内华达州核安全站点(NNSS)上完成。这种全面的核演示验证了Kilopower反应堆中子在启动,稳态和暂态运行期间的状态在太空模拟的环境中。这是50多年来针对裂变动力系统完成的首次空间反应堆测试,标志着NASA核计划的转折点。完整的反应堆动力系统设计结合了飞行原型材料和全尺寸组件,旨在研究全功率反应堆动力学,并显着降低后续飞行演示的风险。这种设计为电力系统提供了一个独特的机会,可以模拟几种标称和标称以外的任务场景,这使设计人员能够验证反应堆动力学可以承受许多关于反应堆稳定性和控制的最坏情况。施加在反应堆上的动态变化证明了反应堆的负荷能力遵循功率转换系统并被动控制燃料温度和整体系统稳定性。成功完成KRUSTY实验后,NASA / DOE团队将评估在整个项目中吸取的教训,并将其应用于Kilopower反应堆的飞行演示。

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