Design methodology of large-scale thermoelectric generation: A hierarchical modeling approach in SPICE

Min Chen, Junling Gao, Zhengdong Kang, Jianzhong Zhang, Q. Du, R. Suzuki
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引用次数: 16

Abstract

A thermoelectric generation system (TEGS) consists of not only thermoelectric modules (TEMs), but also the external load circuitry and the fluidic heat sources. In this paper, a system-level model is proposed in the SPICE-compatible environment to seamlessly integrate the complete fluid-thermal-electric-circuit multiphysics behaviors. Firstly, a quasi one-dimension numerical model for the thermal fluids and their non-uniform temperature distribution as the boundary condition for TEMs is implemented in SPICE using electrothermal analogy. Secondly, the electric field calculation of the previously proposed device-level SPICE model is upgraded to reflect the resistive behaviors of thermoelements, so that the electric connections among spatially distributed TEMs and the load circuitry can be freely combined in the simulation. Thirdly, a hierarchical and TEM-object oriented strategy is developed to make the system modeling and design scalable, flexible, and programmable. To validate the proposed system model, a TEGS including 8 TEMs is constructed. Through comparisons between simulation results and experimental data, it is clear that the cooptimization of the entire TEGS is enabled by the proposed model.
大规模热电发电的设计方法:SPICE中的分层建模方法
热电发电系统(TEGS)不仅由热电模块(tem)组成,还包括外部负载电路和流体热源。本文在spice兼容环境下,提出了一个系统级模型来无缝集成完整的流-热-电-电路多物理场行为。首先,在SPICE中采用电热类比的方法建立了热流体及其非均匀温度分布的准一维数值模型,并将其作为tem的边界条件。其次,对先前提出的器件级SPICE模型的电场计算进行了升级,以反映热电元件的电阻行为,从而使空间分布的tem与负载电路之间的电连接可以在仿真中自由结合。第三,提出了一种分层的、面向tem对象的策略,使系统建模和设计具有可扩展性、灵活性和可编程性。为了验证所提出的系统模型,构建了包含8个TEMs的TEGS。通过仿真结果与实验数据的比较,可以清楚地看到,所提出的模型可以实现整个TEGS的协同优化。
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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