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首页> 外文期刊>Energy Conversion & Management >Thermal performance of a latent thermal energy storage for exploitation of renewables and waste heat: An experimental investigation based on an asymmetric plate heat exchanger
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Thermal performance of a latent thermal energy storage for exploitation of renewables and waste heat: An experimental investigation based on an asymmetric plate heat exchanger

机译:用于可再生能源和废热利用的潜在热能存储器的热性能:基于不对称板式换热器的实验研究

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摘要

In this paper, the experimental characterization of a latent heat storage prototype working in the range of 70-90 degrees C and characterized by an innovative configuration is presented. The storage consists of a Phase Change Material (PCM), namely a commercial paraffin, embedded in an asymmetric plate heat exchanger. The testing campaign was aimed at defining the effect of operating conditions (flow rate of the heat transfer fluid, charge and discharge temperatures), in terms of energy stored, power supplied to the user and storage efficiency. The results showed that the energy density stored is between 116 and 198 kJ kg(-1), whereas power output during discharge varies between 4 and 10 kW. Subsequently, an analysis on part load operation was carried out, which evidenced that properly managing the storage, limiting the discharging to 80% of its maximum storage capacity, allows saving around 50% of time, thus increasing the power density. A thermal network model was proposed to study the contributions of the heat exchanger and phase change material to the overall heat transfer, demonstrating that the phase change material is limiting the heat transfer only when it is in the solid state. Finally, the storage was compared to another prototype developed by the authors employing the same material and a different heat exchanger (a fin-and-tube heat exchanger) according to different structural, energy and dynamic performance indicators. The results highlighted that the present system is especially suitable for applications with a high power demand from the user.
机译:在本文中,介绍了潜热存储原型的实验特性,该原型在70-90摄氏度的范围内工作并具有创新的配置。储存器由相变材料(PCM)(即商用石蜡)组成,嵌入非对称板式热交换器中。测试活动旨在根据存储的能量,提供给用户的功率和存储效率来定义操作条件的影响(传热流体的流速,充放电温度)。结果表明,存储的能量密度在116至198 kJ kg(-1)之间,而放电过程中的输出功率在4至10 kW之间变化。随后,对部分负载运行进行了分析,这表明适当地管理存储,将放电限制为最大存储容量的80%,可以节省大约50%的时间,从而提高了功率密度。提出了一个热网络模型来研究热交换器和相变材料对整体传热的贡献,证明了相变材料仅在固态时才限制传热。最后,根据不同的结构,能量和动态性能指标,将存储与作者使用相同材料和不同热交换器(翅片管式热交换器)开发的另一个原型进行了比较。结果突出表明,本系统特别适合于来自用户的高功率需求的应用。

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