水基冷却液缓解新能源汽车的热管理挑战

Sander Clerick, Serge Leivens, Guy Buytaert, Amol Chore
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摘要

热管理被认为是新能源汽车采用的关键推动因素之一。无论是HEV、BEV还是FCEV,高效的电动汽车冷却系统设计对于保证车辆寿命、优化能源效率、实现足够的行驶里程和实现高充电速度至关重要。此外,它对安全至关重要。与内燃机(ICE)汽车相比,电动汽车的冷却系统变得更加复杂,各种部件的集成度越来越高。冷却介质的主要功能不再局限于冷却ICE;它还用于保存和传输热量到基本的动力总成部件,如电池组,同时不会危及电气安全。最近推出的许多电动汽车都成功地采用了与内燃机汽车相同的基于水乙二醇的冷却液。考虑到未来的发展,如超高速充电,冷却系统和冷却液的进步是必要的。最近,从空气冷却到水基冷却流体的明显转变主要是由于水的强大的有益的传热特性。对于燃料电池堆的直接冷却,由于含水液体的电导率上限迫使使用新的添加剂技术,因此需要进行不同的改变。
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Water-based Cooling Fluids to Mitigate the Thermal Management Challenges in New Energy Vehicles
Thermal management is considered one of the key enablers for the adoption of New Energy Vehicles. An efficient design of an electrified vehicle’s cooling system, be it a HEV, BEV or FCEV, is of major importance to guarantee vehicle lifetime, optimize energy efficiency, enable adequate driving range and allowing high charging speed. Moreover, it is of critical importance for safety. Compared to internal combustion engine (ICE) vehicles, cooling systems for electrified vehicles have become more complex with increasing integration of a variety of parts. The cooling medium’s main function is no longer limited to cooling of the ICE; it also used to conserve and transport heat to essential powertrain parts such as the battery pack, all while electrical safety cannot be jeopardized. Many recently launched electrified vehicles successfully employ the same water-glycol based cooling liquids that are found in ICE vehicles. In light of future developments such as ultra-fast charging, advances in cooling systems and the cooling liquid are required. Recently, a clear shift from air cooling towards waterbased cooling fluids is witnessed mainly due to the strong beneficial heat transfer properties of water. For direct cooling of fuel cell stacks different changes are demanded since the upper electrical conductivity limit of the aqueous liquid compels the use of new additive technology.
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