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A High Temperature Experimental Characterization Procedure for Oxide-Based Thermoelectric Generator Modules under Transient Conditions

机译:瞬态条件下基于氧化物的热电发电机模块的高温实验表征程序

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The purpose of this study is to analyze the steady-state and transient behavior of the electrical and thermal parameters of thermoelectric generators (TEGs). The focus is on the required wait-time between measurements in order to reduce measurement errors which may appear until the system reaches steady-state. By knowing this waiting time, the total characterization time can also be reduced. The experimental characterization process is performed on a test rig known as TEGeta, which can be used to assess the output characteristics of TEG modules under different load values and temperature conditions. The setup offers the possibility to control the hot side temperature up to 1000 °C with a load variation range value between 0.22–8.13 Ω. A total of ten thermocouples are placed in the setup with the purpose of measuring the temperature in specific points between the heater and the heat sink. Based on the readings, the temperature on the hot and cold side of the modules can be extrapolated. This study provides quantitative data on the minimum waiting time of the temperatures in the surrounding system to reach equilibrium. Laboratory tests are performed on a calcium-manganese oxide module at temperatures between 400 and 800 °C to explore the high temperatures features of the setup.
机译:这项研究的目的是分析热电发电机(TEG)的电和热参数的稳态和瞬态行为。为了减少在系统达到稳态之前可能出现的测量误差,重点是测量之间所需的等待时间。通过知道该等待时间,总的表征时间也可以减少。实验表征过程在称为TEGeta的测试台上进行,可用于评估TEG模块在不同负载值和温度条件下的输出特性。该设置提供了将热侧温度控制在最高负载温度范围为0.22-8.13Ω的1000°C的可能性。装置中总共放置了十个热电偶,目的是测量加热器和散热器之间特定点的温度。根据读数,可以推断模块热侧和冷侧的温度。这项研究提供了有关周围系统中达到平衡的最短等待时间的定量数据。实验室测试是在400至800°C的温度下对钙锰氧化物模块进行的,以探索该装置的高温特性。

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