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Hybrid Electric Aircraft Battery Heat Acquisition System

机译:混合电机电池热采集系统

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摘要

The electric drive train or electric energy & power storage, conversion and distribution (ESC&D) system of a hybrid electric aircraft, even at high efficiency, will reject significant heat at relatively low temperature. Thus effective thermal management of the ESC&D system is critical to realizing the potential benefits of a hybrid electric aircraft as the thermal management system (TMS) can add excessive weight (heat exchangers and pumps) and impose excessive parasitic power consumption (pumps and fans) and drag (engine fan stream air and ram air) on the aircraft. A 5MW parallel hybrid configuration [1] supplies a representative set of requirements for the development of TMS technology. The ESC&D system is comprised of a 1780 kWhr battery system, 2 x 2.2 MW motor drives, 2 x 2.1 MW motors and the associated power panels and feeders. A study has been completed to develop the lowest weight, highest performance (least amount of thermal resistance) approach for acquiring cell level battery heat such that it can be cooled by an aircraft TMS supplied coolant. The baseline battery heat acquisition (HA) system, based on SOA automotive electric vehicle packaging is approximately the same weight as the battery cells themselves, thus doubles the weight of the battery package. Alternative approaches currently under study, have the promise of reducing this weight by >60%.
机译:混合动力机的电动传动系或电能和蓄电,转换和分配(ESC&D)系统,即使高效率也会在相对低的温度下抑制显着的热量。因此,ESC&D系统的有效热管理对于实现混合动力电动机的潜在益处至关重要,因为热管理系统(TMS)可以增加重量(热交换器和泵)并强加过量的寄生功耗(泵和风扇)和在飞机上拖动(发动机风扇流空气和RAM空气)。 5MW并行混合配置[1]为TMS技术的开发提供代表性的一组要求。 ESC&D系统由1780 KWHR电池系统组成,2 x 2.2 MW电机驱动器,2 x 2.1 MW电机和相关的电源板和馈线。已经完成了一种研究以开发用于获取电池电平电池热量的最低重量,最高性能(最小的热阻量)方法,使得它可以通过供应的冷却剂的飞机TMS冷却。基于SOA汽车电动车包装的基线电池热采集(HA)系统与电池单元本身大致相同,因此电池封装的重量加倍。目前正在研究的替代方法,承诺将该体重降低> 60%。

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