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Designing, building, and testing a solar thermoelectric generation, STEG, for energy delivery to remote residential areas in developing regions.

机译:设计,建造和测试太阳能热发电STEG,以将能量输送到发展中地区的偏远居民区。

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摘要

New alternatives and inventive renewable energy techniques which encompass both generation and power management solutions are fundamental for meeting remote residential energy supply and demand today, especially if the grid is quasi-inexistent. Solar thermoelectric generators can be a cost-effective alternative to photovoltaics for a remote residential household power supply. A complete solar thermoelectric energy harvesting system is presented for energy delivery to remote residential areas in developing regions. To this end, the entire system was built, modeled, and then validated with LTspice simulator software via thermal-to-electrical analogy schemes. Valuable data in conjunction with two novel LTspice circuits were obtained, showing the achievability of analyzing transient heat transfer with the Spice simulator. Hence, the proposed study begins with a comprehensive method of extracting thermal parameters that appear in thermoelectric modules. A step-by-step procedure was developed and followed to succinctly extract parameters, such as the Seebeck coefficient, electrical conductivity, thermal resistance, and thermal conductivity needed to model the system. Data extracted from datasheet, material properties, and geometries were successfully utilized to compute the thermal capacities and resistances necessary to perform the analogy. In addition, temperature variations of the intrinsic internal parameters were accounted for in this process for accuracy purposes. The steps that it takes to simulate any thermo-electrical system with the LTspice simulator are thoroughly explained in this work. As a consequence, an improved Spice model for a thermoelectric generator is proposed. Experimental results were compiled in the form of a lookup table and then fed into the Spice simulator using the piecewise linear (PWL) command in order to validate the model. Experimental results show that a temperature differential of 13.43°C was achievable whereas the simulation indicates a temperature gap of 9.86°C, with the higher error being associated with the hot side. Also, since the analytical method of transient heat transfer analysis is cumbersome, an LTspice model of a real-world solar thermoelectric generation system was investigated. All the physical parameters were converted into their electrical equivalences through the thermal-to-electrical analogy. Real site direct normal insolation was fed into the Spice model via PWL in order to capture the true system's thermal behavior. Interestingly, two distinct analogies result from this study: 1) an RC analogy and 2) another analogy similar to an N-type doped semiconductor material's carrier density dependence with temperature. The RC analogy is derived in order to demonstrate how thermoelectric generation systems respond to square wave-like solar radiation. This analogy is utilized to measure temperature variations on the cold side of the Spice model; it shows 80% accuracy. The N-type analogy is intended to help analyze the actual performance of a LTC3105 converter. However a few of the problems to be solved remain at the practical level. Despite the unusual operation of the thermoelectric modules with the solar radiation, the measurements and simulation were in good agreement, thus validating the new thermal modeling strategy.
机译:涵盖发电和电源管理解决方案的新替代品和发明性可再生能源技术,对于满足当今偏远的住宅能源供需至关重要,尤其是在电网准无能为力的情况下。太阳能热电发电机可以作为光伏电池的一种经济有效的替代品,用于偏远的住宅家用电源。提出了一个完整的太阳能热电能量收集系统,用于将能量输送到发展中地区的偏远居民区。为此,对整个系统进行了构建,建模,然后通过热电模拟方案使用LTspice仿真器软件进行了验证。结合两个新颖的LTspice电路获得了宝贵的数据,显示了使用Spice模拟器分析瞬态热传递的可实现性。因此,拟议的研究从提取热电模块中出现的热参数的综合方法开始。开发了一个分步过程,然后逐步提取了建模系统所需的参数,例如塞贝克系数,电导率,热阻和热导率。从数据表,材料特性和几何形状中提取的数据已成功用于计算进行类比所需的热容量和电阻。此外,出于准确性目的,在此过程中考虑了内部内部参数的温度变化。在这项工作中,将对使用LTspice仿真器仿真任何热电系统所需要采取的步骤进行了详细说明。因此,提出了一种改进的用于热电发电机的Spice模型。实验结果以查找表的形式进行编译,然后使用分段线性(PWL)命令输入到Spice模拟器中,以验证模型。实验结果表明,可实现13.43°C的温差,而仿真表明温度差为9.86°C,其中较高的误差与热侧有关。此外,由于瞬态传热分析的分析方法繁琐,因此研究了实际太阳能热发电系统的LTspice模型。通过热电模拟将所有物理参数转换为它们的电当量。通过PWL将真实的现场直接法向日射输入Spice模型中,以捕获真实系统的热行为。有趣的是,这项研究得出了两个截然不同的类比:1)RC类比和2)另一个类比,类似于N型掺杂半导体材料对温度的载流子密度依赖性。得出RC类比是为了证明热电发电系统如何响应方波状的太阳辐射。这个比喻用于测量Spice模型冷端的温度变化。它显示了80%的准确性。 N类比旨在帮助分析LTC3105转换器的实际性能。但是,要解决的一些问题仍处于实用水平。尽管带有太阳辐射的热电模块运行异常,但测量和仿真结果吻合良好,从而验证了新的热建模策略。

著录项

  • 作者

    Moumouni, Yacouba.;

  • 作者单位

    University of Nevada, Las Vegas.;

  • 授予单位 University of Nevada, Las Vegas.;
  • 学科 Electrical engineering.;Mechanical engineering.;Energy.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 209 p.
  • 总页数 209
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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