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Isothermal storage of solar energy in building construction

机译:建筑施工中太阳能的等温储存

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The role of advanced isothermal heat storage systems in buildings is discussed. A storage system encapsulated with phase change materials in which energy is absorbed in the hot period and released in the cold period is analyzed. The thermal behaviour of isothermal heat storage composites is examined using numerical techniques.rnTwo methods of heat transfer with latent heat storage are described in the first part. Based on the initial results, the "effective heat capacity" method was selected and implemented into ESP-r. Numerical studies on the effect of isothermal storage of solar energy in specific building material components are discussed in the second part. Numerical simulations were conducted for two cases of multi-zone, highly glazed and naturally ventilated passive solar buildings. PCM-impregnated gypsum plasterboard was used as an internal room lining in the first case study and transparent insulation material combined with PCM was applied for the external south-oriented wall in the second case study. The behaviour of a TIM-PCM wall and its influence on the internal surface temperature are estimated. Air, surface and resultant temperatures are compared with a "no-PCM" case for both case studies and the diurnal and the seasonal latent heat storage effect is analyzed.
机译:讨论了先进的等温蓄热系统在建筑物中的作用。分析了用相变材料封装的存储系统,其中在热期吸收能量,而在冷期释放能量。利用数值技术研究了等温储热复合材料的热行为。第一部分介绍了两种具有潜热储热的传热方法。根据初步结果,选择了“有效热容量”方法,并将其实施到ESP-r中。在第二部分中,讨论了对太阳能在特定建筑材料组件中进行等温存储的数值研究。对两个案例的多区域,高玻璃和自然通风的被动式太阳能建筑物进行了数值模拟。在第一个案例研究中,将PCM浸渍石膏板用作内部房间衬里,在第二个案例研究中,将透明绝缘材料与PCM结合用于外部朝南的墙。估计TIM-PCM壁的行为及其对内表面温度的影响。在两个案例研究中,将空气,表面温度和合成温度与“ no-PCM”案例进行比较,并分析了昼夜和季节性潜热存储效应。

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