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Multi-Mission Radioisotope Thermoelectric Generator (MMRTG): Proven Power for Next Generation Radioisotope Power Systems

机译:多功率放射性电视热电发电机(MMRTG):下一代放射性电机系统的证明电力

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The Multi-Mission Radioisotope Thermoelectric Generator (MMRTG) was developed to serve as a power source for a variety of space missions, from planetary surface to deep space interplanetary missions. Its special capability to handle the harsh surface environment of Mars makes it unique among recent RTGs, which could not survive on the surface of Mars. The special design characteristic of an isolated and hermetically sealed thermoelectric converter compartment enables long term performance in a multitude of environments. The heat source compartment is separated from the thermoelectric converter compartment by means of a metallic liner. The heat source generated helium gas is slowly vented to the exterior through a gasket which is designed to maintain a nominal 1 atmosphere pressure inside the heat source compartment. The heart of the MMRTG, its thermoelectric couple, is based on the proven design heritage of the Pioneer and Viking RTGs. The Pioneer RTGs provided power for more than 30 years, long beyond their design life of only three years. The Viking RTGs for the Mars landers had a design life of only 90 days but they were operating when the landers were shut down after four years and they continued to operate for at least another 14 years after that. All crucial design aspects developed over the decades that are key to the rugged, reliable and long life of the Pioneer/Viking family of RTGs have been carried into the MMRTG design. Notable among these is the thermoelectric module cold end hardware thermal management system. This applies a constant spring force on each individual thermoelectric leg while providing a minimal temperature drop from the thermoelectric cold junction to the external radiator, which maximizes thermoelectric and system efficiency. This paper will expand on these design features and present test results which demonstrate the MMRTG's capability to reliably provide power for all types of deep space and planetary surface missions.
机译:多功率放射性同位素热电发电机(MMRTG)被开发成用于各种空间任务的电源,从行星表面到深度空间行星期室任务。它的特殊能力来处理火星的恶劣表面环境使其在最近的RTG中是独一无二的,这在火星的表面上无法生存。隔离和气密密封热电转换器舱的特殊设计特性使得在多种环境中能够长期性能。热源隔室通过金属衬里与热电转换器舱分离。热源产生的氦气通过垫圈缓慢地排出到外部,该垫圈被设计成在热源隔室内保持标称1的气氛压力。 MMRTG的核心,其热电夫妇,是基于先驱和维京栅格的经过验证的设计遗产。先锋RTGS提供了30多年的动力,超出了他们的设计寿命只有三年。 Mars Landers的Viking RTGS只有90天的设计寿命,但当着陆器在四年后关闭时,他们正在运营,并且在此之后至少还要又一个14年来运作。所有关键的设计方面都在几十年中开发的,这是先锋/维京家庭RTG的粗犷,可靠和长寿命的关键,已被带进MMRTG设计。值得注意的是热电模块冷端硬件热管理系统。这在每个单独的热电腿上施加恒定的弹簧力,同时提供从热电冷参数到外部散热器的最小温度下降,从而最大限度地提高了热电和系统效率。本文将扩展这些设计特征和目前的测试结果,展示了MMRTG的能力,可靠地为所有类型的深空和行星表面任务提供电力。

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