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Operational considerations and comparisons of the Saturn, Space Shuttle and Ares launch vehicles

机译:土星,航天飞机和战神运载火箭的作战考虑和比较

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The United States (U.S.) space exploration policy has directed the National Aeronautics and Space Administration (NASA) to retire the Space Shuttle and to replace it with a new generation of space transportation systems for crew and cargo travel to the International Space Station, the Moon, Mars, and beyond. As part of the Constellation Program, engineers at NASA's Marshall Space Flight Center in Huntsville, Alabama are working to design and build the Ares I, the first of two large launch vehicles to return humans to the Moon. A deliberate effort is being made to ensure a high level of operability in order to significantly increase safety and availability as well as reduce recurring costs of this new launch vehicle. It is the Ares Project's goal to instill operability as part of the requirements development, design and operations of the vehicle. This paper will identify important factors in launch vehicle design that affect the operability and availability of the system. Similarities and differences in operational constraints will also be compared between the Saturn V, Space Shuttle and current Ares I design. Finally, potential improvements in operations and operability for large launch vehicles will be addressed. From the examples presented, the paper will discuss potential improvements for operability for future launch vehicles.
机译:美国(美国)太空探索政策已指示美国国家航空航天局(NASA)退役航天飞机,并用新一代太空运输系统代替航天飞机,以便乘员和货物前往国际空间站月球,火星及其他。作为“星座计划”的一部分,位于阿拉巴马州汉斯维尔的美国宇航局马歇尔太空飞行中心的工程师正在努力设计和制造“战神一号”,这是两架将人类送回月球的大型运载工具中的第一艘。为了确保高度的可操作性,我们正在做出努力,以显着提高安全性和可用性,并降低这种新型运载火箭的经常性费用。 Ares项目的目标是将可操作性灌输到车辆需求开发,设计和操作中。本文将确定运载火箭设计中影响系统可操作性和可用性的重要因素。土星五号,航天飞机和目前的战神一号设计之间的操作约束条件的异同也将进行比较。最后,将解决大型运载火箭在操作和可操作性方面的潜在改进。从提供的示例中,本文将讨论未来运载火箭可操作性的潜在改进。

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