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Ideal thermal physical properties of building wall in an active room

机译:活动室中建筑墙体的理想热物理特性

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摘要

Optimizing the thermal physical properties of building envelope can decrease the energy consumption in active rooms. In this paper, a method of determining the ideal thermal mass characteristics of an active room wall has been developed, which can derive the optimal thermal physical properties of building walls by minimizing additional energy consumption. For demonstrating purpose, some illustrating examples are presented. The results show that: (a) the ideal specific heat distribution with temperature of the thermal mass for an active room approaches the S function, which has the characteristic similar to that of phase change materials; (b) the thermal conductivity of internal wall has little effect on the optimized heat (cooling) load and the characteristic temperature when it is higher than 0.5 W m~(-1) K~(-1) for the simulated room in Beijing. The additional heating and cooling energy consumption approaches zero when the excessive enthalpy of internal thermal mass is higher than 30 MJm~(-3) and 300 MJm~(-3) for Beijing in winter and summer, respectively, and the corresponding characteristic temperatures are 18℃ and 26.3℃ and (c) for practical use, the excessive enthalpy should be added in the internal thermal mass targeting both winter and summer performance in order to decrease the additional energy consumption.
机译:优化建筑围护结构的热物理性能可以减少活动房间的能耗。在本文中,已经开发出一种确定活动房间墙壁的理想热质量特性的方法,该方法可以通过最小化额外的能耗来获得建筑物墙壁的最佳热物理特性。为了演示的目的,给出了一些说明性的例子。结果表明:(a)理想温度下,活动房间的理想比热分布接近S函数,具有类似于相变材料的特性; (b)对于北京模拟房间,当内壁的导热率高于0.5 W m〜(-1)K〜(-1)时,内壁的导热性对优化的热(制冷)负荷和特征温度几乎没有影响。当冬季和夏季内部热量的过量焓分别高于30 MJm〜(-3)和300 MJm〜(-3)时,额外的供热和制冷能耗接近零。在18℃和26.3℃以及(c)实际使用中,应针对冬季和夏季性能在内部热质中添加过多的焓,以减少额外的能耗。

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