← 返回
电动汽车驱动 SiC器件 ★ 4.0

空间环境中热电发电机的结构与运行参数优化及性能提升

Structure and operation parameter optimization and performance improvement of thermoelectric generator in outer space

语言:

中文摘要

摘要 热电发电机(TEG)在废热利用和清洁能源发电中发挥着重要作用。然而,目前对TEG结构与其安全温度之间的关系关注不足,且尚未有关于TEG在外层空间应用的研究报道。本研究建立了在外层空间运行的TEG三维热-电-力耦合模型,并对其电学与力学性能进行了分析。首先,对比了三种不同结构和工作温差下的典型TEG工况,阐明了TEG应用于外层空间时所具有的优势(高效率与高功率密度)以及面临的问题(高热应力)。随后,系统分析了TEG的结构参数与运行参数对其电学和力学性能的影响,确定了关键设计变量并揭示了变量间的相互作用关系。特别指出,铜条相较于其他组件更容易超出失效极限这一现象。最后,对结构与运行参数进行了优化,获得了最优方案:a = 2.52 mm,h = 1.06 mm,R_L = 0.010 Ω,T_c = 214.11 K,并推荐该方案。该最优方案实现了最大功率密度175.73 W/kg,其效率仍达到5.17%,在对比案例中位列第三高。本研究结果可为应用于外层空间的TEG设计提供参考依据。

English Abstract

Abstract Thermoelectric generator (TEG) plays an important role in waste heat utilization and clean power generation. However, the relationship between the structure and the safety temperature of TEG is ignored, and no research has been reported about the application of TEG in outer space. In this study, a three-dimension thermal-electrical–mechanical coupling model of TEG operating in outer space is established, and its electrical and mechanical performance is investigated. Firstly, three typical cases of TEG with different structure and operating temperature difference are compared, and the advantages (high efficiency and power density) and problem (high thermal stress) faced of TEG applied in outer space are illustrated. Then, the effects of structure and operation parameters of TEG on electrical and mechanical performance are analyzed. The design variables for TEG are determined and their interaction relationships is provided. In particular, a phenomenon that the copper strips tend to exceed failure limit more than other components is clearly pointed out. Finally, optimization on structure and operation parameters is performed, and the optimal case with a = 2.52 mm, h = 1.06 mm, R L = 0.010 Ω and T c = 214.11 K is obtained and recommended. The optimal case has the maximum power density 175.73 W/kg, and its efficiency still has 5.17% ranking the third highest value among the comparison cases. The results in this research can provide a reference for the design of TEG with applications in outer space.
S

SunView 深度解读

该热电发电机热-电-机械耦合优化研究对阳光电源SiC功率器件热管理具有重要参考价值。文中铜排应力集中问题与我司ST系列储能变流器、SG光伏逆变器的母排设计高度相关。其多参数协同优化方法可应用于电动汽车驱动系统功率模块散热设计,特别是SiC器件在高功率密度工况下的热应力控制。三维耦合建模思路可移植至充电桩功率单元可靠性分析,提升极端温差环境适应性,为iSolarCloud平台预测性维护提供理论支撑。