首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >COMPARISONS AND EVALUATION OF TURBO-GENERATOR AND HEAT-ENGINE DRIVEN SPACE BASED LASER POWER SYSTEM ARCHITECTURES
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COMPARISONS AND EVALUATION OF TURBO-GENERATOR AND HEAT-ENGINE DRIVEN SPACE BASED LASER POWER SYSTEM ARCHITECTURES

机译:基于涡轮发电机和热力驱动空间的激光电力系统体系结构的比较与评估

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Several variations of a notional space based electrical laser power system architecture were evaluated with a general thermal systems analysis. The analysis and evaluations of technology options and feasibility were based on a baseline laser power system concept that incorporated an advanced solar array/battery power combination. Two closed-loop, dynamic cycle system concepts are of interest here, both using H_2-O_2 to fuel the combustor with the heat engine concept using a PEM fuel cell to regenerate fuel constituents. The first dynamic system is a turbo-generator based concept, and the second is a Brayton cycle based heat engine concept driven by an H_2-O_2 combustor. Each one of these power generation mechanisms has its own advantages and disadvantages. This first-order thermal analysis aims to compare these various options on a common footing such as system mass, in order to arrive at the most suitable configuration from the various options considered. Several technological enhancements were incorporated in the analysis for the H_2-O_2 system concepts with special emphasis and advocacy of the use of extremely efficient cryogenic super conducting generators and cryogenic power conditioning equipment as these components can be cooled with the cryogenic effluents before they are combusted. These systems would supply power to a 23.5% efficient electric laser (50% electric to optical power diode pump, and a 47% optical to optical high power laser) with >8 MW,_(rf) of output laser power in most cases. This is an extremely high power level, so we predict the systems to be somewhat massive and on the order of 40 metric tons (MT, 1000 kg) or more with high sensitivity to recharge time. For a one-day recharge time, the H_2-O_2 concept recycling all effluents is twice as massive as the baseline solar system. As the recharge time is extended from one day to more than five, the concept that reclaims the effluents begins to appear more attractive for the turbogenerator-based evaluations. For similar output power, the heat engine based evaluation appears to be more attractive at higher cycle temperatures.
机译:通过常规热系统分析评估了基于概念空间的电激光功率系统架构的几种变体。对技术选择和可行性的分析和评估基于基准激光功率系统概念,该概念结合了先进的太阳能电池阵列/电池电源组合。这里有两个闭环动态循环系统概念,它们都使用H_2-O_2为燃烧室提供燃料,而热引擎概念使用PEM燃料电池来再生燃料成分。第一个动力系统是基于涡轮发电机的概念,第二个动力系统是由H_2-O_2燃烧器驱动的基于布雷顿循环的热机概念。这些发电机制中的每一种都有其自身的优点和缺点。此一阶热分析的目的是在一个共同的基础上(例如系统质量)比较这些各种选项,以便从所考虑的各种选项中得出最合适的配置。在对H_2-O_2系统概念的分析中并入了多项技术改进,特别强调并提倡使用超高效的低温超导发电机和低温功率调节设备,因为这些组件可以在燃烧前用低温流出物冷却。在大多数情况下,这些系统将为功率大于8 MW,_(rf)的23.5%效率的电激光器(50%的电光功率二极管泵和47%的光电光功率激光器)供电。这是一个非常高的功率水平,因此我们预计系统会比较庞大,并且对充电时间具有高度敏感性,约为40公吨(MT,1000千克)或更高。对于一天的补给时间,回收所有废水的H_2-O_2概念的容量是基准太阳能系统的两倍。随着补给时间从一天延长到五天以上,对于基于涡轮发电机的评估,回收废水的概念开始显得更具吸引力。对于相似的输出功率,在较高的循环温度下,基于热机的评估似乎更具吸引力。

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