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A novel thermoelectric harvester based on high-performance phase change material for space application

机译:一种基于高性能相变材料的新型热电采集器,用于空间应用

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摘要

In this study, a thermoelectric energy harvesting device applied with extremely large temperature variation (from + 100 degrees C to -50 degrees C) for space application is presented using phase change material (PCM) for thermal control and storage. Aiming at developing a high-performance PCM to fill into the heat storage unit (HSU) of the device, the thermal conductivity, leakage and thermal reliability of paraffin-based composites with different loadings of expanded graphite (EG) were investigated. Results showed the form-stable paraffin/EG composite has enhanced thermal conductivity and maintainable latent heat storage capacity after repeated thermal cycling test. Furthermore, the prototype device of thermoelectric harvester was developed, where the proportion of EG in the PCM is key to balance the heat storage capacity and the heat transfer rate. Both simulation and experiment are used to evaluate the performance of the harvester. The experimental evidence verifies that the thermoelectric harvester with paraffin/5 wt% EG composite owns the largest total energy output and the most portion of high-grade electrical energy.
机译:在这项研究中,提出了一种使用相变材料(PCM)进行热控制和存储的热电能量采集设备,该设备具有非常大的温度变化(从+ 100摄氏度到-50摄氏度),适合空间应用。为了开发一种高性能的PCM填充装置的储热单元(HSU),研究了不同膨胀石墨(EG)负载的石蜡基复合材料的导热性,泄漏和热可靠性。结果表明,经过反复的热循环测试,形状稳定的石蜡/ EG复合材料具有增强的导热性和可保持的潜热储存能力。此外,还开发了热电收割机的原型设备,其中PCM中EG的比例是平衡储热能力和传热速率的关键。仿真和实验均用于评估收割机的性能。实验证据证明,具有石蜡/ 5 wt%EG复合材料的热电收割机拥有最大的总能量输出和大部分的高档电能。

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