Development of Solar Energy Systems Based on High Performance Bulk and Film Thermoelectric Modules

S. Mamykin, I. Mamontova, B. Dzundza, F. Gao, R. Shneck, Z. Dashevsky
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引用次数: 1

Abstract

Abstract: Due to the increase in energy demand and depletion of natural resources, the development of energy harvesting technologies becomes very important. Thermoelectric devices, based on the direct conversion of heat into electrical energy, are being the essential part of cost-effective, environmental-friendly, and fuel-saving energy sources for power generation, temperature sensors, and thermal management. High reliability and long operation time of thermoelectric energy systems lead to their extensive use in space industry and gas pipe systems. Development and wide application of solar thermoelectric converters (generators) is mainly limited by relatively low thermoelectric conversion efficiency. In this work, we suggest for the first time to use direct conversion of solar energy by systems based on high-performance multistage thermoelectric modules operating in the temperature range of 300 - 900 K for creation of autonomic systems with electric power up to 500 W and electric efficiency up to 15 %. Furthermore, we developed film thermoelectric modules on thin flexible substrates with the figure of merit Z corresponding to that of bulk modules. Such film thermoelectric converters with output voltage of several volts and electric power of several microwatts can be used at micro-solar energy systems.
基于高性能体膜热电模块的太阳能系统研究
摘要:由于能源需求的增加和自然资源的枯竭,能源收集技术的发展变得非常重要。热电装置基于将热能直接转化为电能的原理,正在成为发电、温度传感器和热管理中具有成本效益、环境友好和节省燃料的能源的重要组成部分。热电能源系统的高可靠性和长运行时间使其在航天工业和燃气管道系统中得到了广泛的应用。太阳能热电变换器(发电机)的发展和广泛应用主要受到热电转换效率较低的制约。在这项工作中,我们首次建议在300 - 900 K的温度范围内使用基于高性能多级热电模块的系统直接转换太阳能,以创建功率高达500 W,电效率高达15%的自主系统。此外,我们在薄柔性基板上开发了薄膜热电模块,其优点值Z与块体模块的优点值Z相对应。这种薄膜热电转换器输出电压可达几伏,功率可达几微瓦,可用于微型太阳能系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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