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Parametric design strategies of an updated alkali metal thermoelectric converter-thermoelectric generator system operating at optimum states

机译:在最佳状态下运行的更新碱金属热电转换器-热电发电机系统的参数设计策略

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摘要

The aim of this study is to deeply search and understand the performance of the coupling system composed of an alkali metal thermoelectric converter and a thermoelectric generator. The main methods are to update the model of the coupling system, which includes the main irreversible losses existing in subsystems and coupling system, and obtain the analytical expressions of the power outputs and efficiencies of two subsystems and coupling system. The main novelties are to discuss the influences of the thickness of the beta"-alumina solid electrolyte on the whole performance of the system and solve the matching problem between two subsystems. The main contents of this study include that the influences of the thickness of the electrolyte membrane, current density of the alkali metal thermoelectric converter, and electric current of the thermoelectric generator on the power output density and efficiency are discussed and the maximum power output density and efficiency of the system are calculated and compared with those of the single alkali metal thermoelectric converter and the existing coupling models. The results obtained reveal the advantages of the present model. The whole performance of the coupling system can be optimized and the parametric selection criteria of several key parameters of the coupling system operating at optimum states can be provided, When the thickness of the electrolyte membrane is optimally selected, the maximum efficiency of the present model attain 34.6% and increase about 10.4%, compared with those of the existing best coupling system. The waste heat released by the alkali metal thermoelectric converter can be efficiently utilized by the thermoelectric generator.
机译:这项研究的目的是深入搜索并了解由碱金属热电转换器和热电发电机组成的耦合系统的性能。主要方法是更新耦合系统的模型,该模型包括子系统和耦合系统中存在的主要不可逆损失,并获得两个子系统和耦合系统的功率输出和效率的解析表达式。主要的新颖之处在于讨论β“-氧化铝固体电解质的厚度对系统整体性能的影响,并解决两个子系统之间的匹配问题。本研究的主要内容包括对厚度的影响。讨论了电解质膜,碱金属热电转换器的电流密度以及热电发电机的电流对功率输出密度和效率的影响,并计算了系统的最大功率输出密度和效率,并将其与单碱金属的功率密度和效率进行了比较。金属热电转换器和现有的耦合模型,所获得的结果揭示了该模型的优点,可以优化耦合系统的整体性能,并提供在最佳状态下运行的耦合系统的几个关键参数的参数选择标准,当最佳选择电解质膜的厚度时,与现有的最佳耦合系统相比,本模型的最大效率达到了34.6%,并提高了约10.4%。由碱金属热电转换器释放的废热可以被热电发生器有效地利用。

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