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首页> 外文期刊>Journal of Energy Storage >Experimental investigation of a multi-kWh cold storage device based on phase change materials
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Experimental investigation of a multi-kWh cold storage device based on phase change materials

机译:基于相变材料的多千瓦时冷藏装置的实验研究

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摘要

An innovative technology to store cold energy for civil applications and based on Phase Change Materials (PCM) is presented and experimentally validated. The storage tank is coupled to a hydronic chiller in a Heating, Ventilation and Air Conditioning (HVAC) system with the aim of optimizing its performance shaving the cold energy peaks required by the users. The system is composed of a tank containing a heterogeneous mixture of an organic PCM and water. The two liquids are immiscible and water is stratified in the lower part of the tank, PCM in the upper part. A coaxial water-water heat exchanger is immersed in the PCM volume. Water stream from HVAC system (primary circuit) and the water contained in the storage tank (secondary circuit) are fed to the heat exchanger. Then, the secondary circuit water is sent back to the top of the tank through nozzles and the water drops descend by gravity into the volume of PCM. By this way, the PCM is solidified uniformly and quickly, and cold energy is stored in the form of latent heat. In this paper, a prototype able to store up to 25 kWh of energy through PCM solidification is presented. A detailed testing campaign is carried out and an optimized strategy for the cold energy storage system operation is proposed. The experimental results demonstrates that the tank is fully charged in 2.5 h and discharged in 1.6 h.
机译:提出了一种创新的技术,用于储存民用应用的冷能,并基于相变材料(PCM),并实验验证。储罐在加热,通风和空调(HVAC)系统中耦合到液体冷却器,目的是优化其性能剃刮板所需的冷能峰。该系统由包含有机PCM和水的异质混合物的罐组成。两个液体不混溶,水在罐的下部分层,上部的PCM。同轴水热交换器浸入PCM体积中。从HVAC系统(主电路)和包含在储罐(次级电路)中的水的水流供给热交换器。然后,次级电路水通过喷嘴送回罐的顶部,水滴通过重力下降到PCM的体积中。通过这种方式,PCM均匀且快速地固化,并且冷能以潜热的形式储存。本文介绍了能够通过PCM凝固存储高达25千瓦时的原型。提出了一种详细的测试活动,提出了一种优化的冷能量存储系统操作策略。实验结果表明,罐体在2.5小时内充满电,并在1.6小时内排出。

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