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Use of metallic Phase Change Materials (mPCM) for heat storage in Electric- and Hybrid Vehicles

机译:使用金属相变材料(MPCM)进行电气和混合动力车辆的蓄热材料

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To overcome the disadvantage of electric heaters for heating the interior in electric- and hybrid vehicles, consuming electric energy out of the traction battery, a thermal energy storage (TES) filled with metallic Phase Change Material (mPCM) is proposed in this study. Out of the defined requirements to energy storage systems resulting from the application in electric vehicles, which are a thermal output of maximum 3,5 kW and a storage capacity of 1,9 kWh, a concept for implementation of the TES into the system of an electric vehicle is shown. The adjustment of the storages thermal output is implemented by adjustment of two fans, the one perfusing the storage, the other one soaking in cold air for mixing with the hot airstream out of the storage. For experimental investigation and proof of concept, a downsized functional demonstrator was built up and filled with the Phase Change Material AlSi12. The specific heat capacity of the material measured by Difference Scanning Calorimetry (DSC) is 1006 J/kgK in solid state and 1073 J/kgK in liquid state. The melting enthalpy is 511 kJ/kg. The measurement of the storage systems thermal output shows the high potential of mPCM enabling high heat transfer rates, due to their high thermal conductivities. A maximum thermal output of 1,3 kW (design point 1 kW) could be measured.
机译:为了克服电加热器的缺点,用于加热电气和混合动力车辆中的内部,消耗牵引电池的电能,在该研究中提出了填充有金属相变材料(MPCM)的热能存储(TES)。在电动车辆中的应用中产生的能量存储系统中的定义要求,这是最大3.5千瓦的热输出和1,9千瓦时的存储容量,一个用于实现TES的系统的概念示出了电动车辆。存储器热输出的调节通过调节两个风扇,灌注存储器的一个,另一个浸入冷空气中浸泡,以便与储存的热气流混合。对于实验调查和概念证明,建立了一个缩小的功能演示和填充了相变材料Alsi12。通过差异扫描量热法测量的材料的比热容量为1006J / kgk,固态为1006J / kgk,1073 j / kgk在液态。熔点焓为511 kJ / kg。由于其高导热率,存储系统热输出的测量显示了MPCM实现高热传递速率的高电位。可以测量1,3 kW(设计点1 kW)的最大热输出。

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