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Cooling System with PCM Storage for an Office Building: Experimental Investigation Aided by a Model of the Office Thermal Dynamics

机译:带PCM存储的冷却系统进行办公楼:由办公室热动态的模型提供实验研究

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摘要

The application of energy storage filled with phase-change material (PCM) is recently increasingly considered in active cooling systems. Such a design offers a higher density of thermal energy accumulation when compared with water storage. However, the optimum use of PCM storage is possible when its dynamic characteristics during the loading and unloading process are well recognized. Due to the complexity of the interaction between all elements of the heating/cooling system, a theoretical estimation of the profits is hard to perform in a reliable way. This is a significant problem at the design stage of the installation. In order to solve this problem, a laboratory experiment supported by a simulation was performed. The main aim of the experiment was to understand how the storage filled with the PCM in real-like conditions works. A test stand was made to investigate the effect of this solution on a reduced scale of 1:10. The PCM tested was RT15, a commercially available material that melts in the temperature range of 10–17 °C. The main parts of the stand are a chiller, an electric heater and thermal energy storage. The first two elements allowed a simulation of the thermal properties of the heat receiver, and their operation depended on the results from the numerical calculations. A lumped parameter model was used in mathematical description of the office building and its cooling system. The heat capacity of the system components as well as heat losses to the ambient environment were taken into account. The obtained results allowed the optimization of the control procedure and proved the validity of the applied investigation methods. This study confirmed the possibility of testing thermal energy storage with phase change material in real-like conditions.
机译:最近在主动冷却系统中越来越多地考虑填充有相变材料(PCM)的能量储存。与储水相比,这种设计提供了更高的热能积聚密度。然而,当在装载和卸载过程中的动态特性很好地识别时,PCM存储的最佳使用是可能的。由于加热/冷却系统的所有元件之间的相互作用的复杂性,利润的理论估计很难以可靠的方式执行。这是安装设计阶段的重要问题。为了解决这个问题,进行了模拟支持的实验室实验。实验的主要目的是了解如何在实际条件下填充PCM的存储方式。进行了测试支架,以调查该解决方案对1:10的减少等级的影响。测试的PCM是RT15,可在10-17℃的温度范围内熔化的市售材料。支架的主要部分是冷却器,电动加热器和热能存储。前两个元件允许模拟热接收器的热特性,并且它们的操作依赖于数值计算的结果。集总参数模型用于办公楼及其冷却系统的数学描述。考虑了系统组件的热容量以及对周围环境的热损失。获得的结果允许优化控制程序,并证明了应用调查方法的有效性。本研究证实了在实际条件下使用相变材料进行热能储能的可能性。

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