船用余热回收用热电发电机冷却系统研究

Liping Wang, A. Romagnoli
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引用次数: 3

摘要

利用热电发生器(TEG)系统探索废热提取在船舶应用中的潜力已经引起了人们的极大兴趣,因为废气量大,许多潜在的位置具有持续的高温和无限冷却海水的可用性。为了提高TEG系统在效率方面的整体输出性能,除了开发更大ZT值的热电材料和电界面系统的最优控制策略外,还需要考虑适当的系统级工程和集成。本文对热电模块液位计冷却系统进行了初步的实验研究和数值模拟优化。采用热电模拟方法对传统管式水冷板装置的开路电压进行了预测,结果与不同热排气温度下的实测实验数据吻合较好。然后对模型进行进一步的模拟,通过检查不同电负载下热电模块器件的详细热性能和电流-电压特性来优化冷却板设计。这些研究表明,一个有效的局部冷却系统是高效实施TEG的重要因素。这种模块级的观察有助于了解TEG系统如何集成,并指出TEG功率转换系统的潜在改进。所采用的仿真工具具有良好的精度,能够在今后的工作中快速表征TEG系统级性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cooling system investigation of thermoelectric generator used for marine waste heat recovery
There has been great interest on exploring the potential of waste heat extraction using thermoelectric generator (TEG) system on marine application, due to great amount of exhaust gas volume, many potential locations with consistent high temperature and availability of infinite cooling sea water. To improve the overall output performance of TEG system in terms of efficiency, proper system level engineering and integration have been considered crucial besides development of thermoelectric materials with larger ZT (figure of merit) value and optimal control strategy of electrical interface system. In this work, preliminary experimental investigation and numerical modelling optimization on the cooling system for a thermoelectric module level device are conducted. The predicted open-circuit voltages by thermoelectric simulation for device with conventional tubed water cooling plate are in good agreement with the measured experimental data for various hot exhaust temperatures. The model is then revised for further simulation to optimize the cooling plate design by examining detailed thermal performance and electrical current-voltage characteristics for the thermoelectric module device with varying electrical load. These investigations demonstrate that a local effective cooling system is important for high efficiency TEG implementation. This modulelevel observation serves to perceive how TEG system integrates as well as indicate potential improvement for TEG power conversion system. With good accuracy, the employed simulation tool is capable of rapidly characterizing TEG system level performance in future work.
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