论文标题

从石化管道到电源无线传感器的浪费热量恢复的热电生成系统

A thermoelectric generation system using waste heat recovery from petrochemical pipeline to power wireless sensor

论文作者

Li, Bo, Guo, Xiao-Liang, Li, Yu-Tao

论文摘要

无线监控传感器逐渐替换有线设备,以用于石化行业生产中的数据支持。具有连续能源的无线监控传感器是必要的,仍然面临着巨大的挑战。热电发电机可以通过在任何环境中的集合石化管道中的热流体中连续产生热能来为无线监测传感器供电。在TEG高温条件下,无法获得较大的温度差会导致低能效率,从而限制了该方案的应用。这项工作描述了一个热电学系统,其在高温下用于无线监控传感器电源的优化散热器。该系统易于安装和使用,并且基于没有功耗和微振动的高性能被动散热器。我们建立了一个实用的原型系统,以在分析系统的功率损失以实现高功率和高效率之后,以证明性能和理论验证。实验结果表明,这项工作中提出的系统可以产生足够的功率来为无线监控传感器供电60秒。最小输出功率为100°C-190°C的热电学(TEG)温度的热侧为24.7“ MW”。在考虑的输入电压范围内的最大功率转换效率可以达到理想值。

Wireless monitoring sensor gradually replaces wired equipment for data support in petrochemical industry production. And wireless monitoring sensor with continuous energy supply is necessary and still faces great challenges. Thermoelectric generator makes it possible to power wireless monitoring sensor by continuously generating thermal energy from hot fluids in a collection petrochemical pipeline in any environment. The inability to obtain a larger temperature difference under TEG's high-temperature condition results in low energy efficiency, limiting the scheme's application. This work describes a thermoelectric generation system with an optimized heat sink for wireless monitoring sensor power supply at high temperature. The system is simple to install and use and is based on a high-performance passive heat sink with no power consumption and micro-vibration. We establish a practical prototype system to demonstrate performance and theoretical verification after analyzing the system's power loss to achieve high power and high efficiency. The experimental results show that the system proposed in this work can generate enough power to power the wireless monitoring sensor for 60 seconds. The minimum output power is 24.7"mW" at the hot-side of thermoelectric generation (TEG) temperature of 100 °C- 190 °C. The maximum power conversion efficiency in the considered input voltage range can reach an ideal value.

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