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NASA's Cryogenic Fluid Management Technology Project

机译:NASA的低温流体管理技术项目

摘要

The Cryogenic Fluid Management (CFM) Project's primary objective is to develop storage, transfer, and handling technologies for cryogens that will support the enabling of high performance cryogenic propulsion systems, lunar surface systems and economical ground operations. Such technologies can significantly reduce propellant launch mass and required on-orbit margins, reduce or even eliminate propellant tank fluid boil-off losses for long term missions, and simplify vehicle operations. This paper will present the status of the specific technologies that the CFM Project is developing. The two main areas of concentration are analysis models development and CFM hardware development. The project develops analysis tools and models based on thermodynamics, hydrodynamics, and existing flight/test data. These tools assist in the development of pressure/thermal control devices (such as the Thermodynamic Vent System (TVS), and Multi-layer insulation); with the ultimate goal being to develop a mature set of tools and models that can characterize the performance of the pressure/thermal control devices incorporated in the design of an entire CFM system with minimal cryogen loss. The project does hardware development and testing to verify our understanding of the physical principles involved, and to validate the performance of CFM components, subsystems and systems. This database provides information to anchor our analytical models. This paper describes some of the current activities of the NASA's Cryogenic Fluid Management Project.
机译:低温流体管理(CFM)项目的主要目标是开发制冷剂的存储,转移和处理技术,这些技术将支持启用高性能低温推进系统,月球表面系统和经济的地面操作。此类技术可以显着减少推进剂的发射质量和所需的在轨裕度,减少甚至消除推进剂罐流体的长期蒸发损失,并简化飞行器操作。本文将介绍CFM项目正在开发的特定技术的状态。研究的两个主要领域是分析模型开发和CFM硬件开发。该项目根据热力学,流体力学和现有的飞行/测试数据开发分析工具和模型。这些工具有助于开发压力/温度控制设备(例如热力通风系统(TVS)和多层隔热);最终目标是开发一套成熟的工具和模型,以表征在整个CFM系统设计中结合的压力/热控制设备的性能,同时将制冷剂损失降至最低。该项目进行硬件开发和测试,以验证我们对所涉及物理原理的理解,并验证CFM组件,子系统和系统的性能。该数据库提供信息以锚定我们的分析模型。本文介绍了NASA低温流体管理项目的一些当前活动。

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