【24h】

Phase 1 Space Fission Propulsion System Testing and Development Progress

机译:一期空间裂变推进系统测试与开发进展

获取原文
获取原文并翻译 | 示例

摘要

Successful development of space fission systems requires an extensive program of affordable and realistic testing. In addition to tests related to design/development of the fission system, realistic testing of the actual flight unit must also be performed. If the system is designed to operate within established radiation damage and fuel burn up limits while simultaneously being designed to allow close simulation of heat from fission using resistance heaters, high confidence in fission system performance and lifetime can be attained through a series of non-nuclear tests. The Safe Affordable Fission Engine (SAFE) test series, whose ultimate goal is the demonstration of a 300 kW flight configuration system, has demonstrated that realistic testing can be performed using non-nuclear methods. This test series, carried out in collaboration with other NASA centers, other government agencies, industry, and universities, successfully completed a testing program with a 30 kWt core, Stirling engine, and ion engine configuration. Additionally, a 100 kWt core is in fabrication and appropriate test facilities are being reconfigured. This paper describes the current SAFE non-nuclear tests, which includes test article descriptions, test results and conclusions, and future test plans.
机译:空间裂变系统的成功开发需要可负担得起的现实测试的广泛计划。除了与裂变系统的设计/开发有关的测试外,还必须对实际飞行单元进行实际测试。如果系统设计为在既定的辐射损伤和燃料燃烧极限内运行,同时又设计为允许使用电阻加热器对裂变产生的热量进行精确模拟,则可以通过一系列无核来获得对裂变系统性能和寿命的高度信心测试。安全可承受裂变发动机(SAFE)测试系列的最终目标是演示300 kW飞行配置系统,该系列表明可以使用非核方法进行实际测试。该测试系列是与其他NASA中心,其他政府机构,行业和大学合作进行的,成功完成了一个30 k​​Wt磁芯,斯特林发动机和离子发动机配置的测试程序。此外,正在制造一个100 kWt的磁芯,并且正在重新配置适当的测试设备。本文介绍了当前的SAFE非核测试,包括测试文章说明,测试结果和结论以及未来的测试计划。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号