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Study on the coupling heating system of floor radiation and sunspace based on energy storage technology

机译:基于储能技术的地板辐射与太阳空间耦合供热系统研究

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With the gradual increase of building energy consumption in recent years, the application of phase change energy storage materials in buildings has become the focus of researches. Phase change material (PCM) embedded in the envelope can increase the building inertia to keep the temperature stable. It can also store energy and release energy when needed. In this paper, the system of PCM radiant floor combined with PCM wall attached with sunspace was established. The thermal characteristics and the energy consumption of the building are studied through analyzing the data from the experimental investigation including the temperature and the heat flux. Two different buildings were built between the PCM room and the conventional room with the same dimension and building. The main test conditions are divided into passive and active control stages by comparing the air temperatures, envelope temperatures, phase transition temperatures, heat fluxes and power consumptions between the two rooms. It is concluded that the average room temperature of the experimental room is 7.15 degrees C higher than that of the conventional room in the passive energy storage stage. While the average energy-saving rate of PCM room was 54.27% compared with the conventional room in the active control stage. (C) 2017 Elsevier B.V. All rights reserved.
机译:近年来,随着建筑能耗的逐步增加,相变储能材料在建筑中的应用已成为研究的重点。嵌入信封中的相变材料(PCM)可以增加建筑物的惯性,以保持温度稳定。它还可以存储能量并在需要时释放能量。本文建立了PCM辐射地板与附有太阳空间的PCM墙相结合的系统。通过分析来自实验研究的数据(包括温度和热通量)来研究建筑物的热特性和能耗。在PCM室和常规室之间建造了两个具有相同尺寸和建筑物的不同建筑物。通过比较两个房间之间的空气温度,包络温度,相变温度,热通量和功耗,将主要测试条件分为被动和主动控制阶段。结论是,在被动储能阶段,实验房间的平均室温比常规房间的平均室温高7.15摄氏度。在主动控制阶段,PCM室的平均节能率为54.27%。 (C)2017 Elsevier B.V.保留所有权利。

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