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Modelling of thermoelectric generator with heat pipe assist for range extender application

机译:带热管辅助器的热电发电机建模,用于增程器应用

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摘要

Recent trends towards electrification of vehicles favour the adoption of waste energy recovery into electricity. Battery-only Electric Vehicles (BEV) need a very large energy storage system so the use of a Range Extender (RE) may allow a significant downsizing of these bulky components. The Internal Combustion Engines (ICE) have two major discarded energy fluxes, engine cooling and exhaust gas. In Extended Range Electric Vehicles (EREV) and hybrids the potential for heat conversion into electricity is particularly convenient. The direct conversion of thermal energy into electricity, using Thermoelectric Generators (TEG) is very attractive in terms of complexity. However, current commercial TEG modules based on Seebeck effect are temperature limited, so they are unable to be in direct contact with the exhaust gases. A way to downgrade the temperature levels without reducing its potential is to interpose Heat Pipes (HP) between the exhaust gas and the modules. This control of maximum temperature at the modules is achieved by regulating the pressure of phase change of the HP fluid. Such design is convenient for engines with large thermal load variations, such as the RE being developed by the team, with a low (15kW) and a high (40kW) power mode of operation. This system will be able to operate efficiently in both modes. The present work presents the thermal modelling of such a system in order to assess the suitability of this approach. This work is complemented with the experimental work being carried out by the team in this subject, already with some published results. The model was validated with experimental data with a good correlation. Therefore, it was possible to demonstrate the potential of this system for wasted heat recovery.
机译:车辆电气化的最新趋势支持将废旧能源回收利用为电力。纯电池电动汽车(BEV)需要非常大的能量存储系统,因此使用增程器(RE)可以显着缩小这些笨重的零部件的尺寸。内燃机(ICE)具有两种主要的废弃能量通量,即发动机冷却和废气。在增程电动汽车(EREV)和混合动力汽车中,将热量转化为电能的潜力特别方便。使用热电发电机(TEG)将热能直接转换为电能在复杂性方面非常有吸引力。但是,当前基于塞贝克效应的商用TEG模块受温度限制,因此它们无法与废气直接接触。降低温度水平而不降低其潜能的一种方法是在废气和模块之间插入热管(HP)。通过调节高压流体的相变压力可以实现对模块最高温度的控制。这种设计适用于热负荷变化较大的发动机,例如团队开发的RE,具有低(15kW)和高(40kW)功率运行模式。该系统将能够在两种模式下高效运行。本工作介绍了这种系统的热模型,以评估这种方法的适用性。这项工作已经由团队在此主题上进行的实验工作进行了补充,已经有了一些公开的结果。用具有良好相关性的实验数据验证了该模型。因此,有可能证明该系统在废热回收方面的潜力。

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