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A study of building envelope and thermal mass requirements for achieving thermal autonomy in an office building

机译:有关实现办公大楼热自主的建筑物围护结构和热质量要求的研究

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It is common knowledge that buildings should be constructed with good envelopes and sufficient masses. However, U.S. building codes make no provision for a building's thermal mass. This may result from that the conventional heat balance design-which assumes constant indoor air temperature, any heat imbalance resulting from corresponding envelope heat loss or gain and internal heat gain is accounted for by HVAC equipment-aims for HVAC selection, not for determining required building thermal qualities. We propose the concept of building thermal autonomy and a two-step process assumption-based design method. Thermal autonomy is a building's capability of keeping its indoor temperature sans HVAC equipment within a prescribed temperature range. The first step of the process assumption-based design method aims for the determination of building thermal qualities for a thermally autonomous building. Our finding shows that optimum slab thickness for a building's ceilings and floors is 25-cm and recommends 10-cm thick concrete slabs for its envelope walls. More interesting is the finding that climate-specific factor of diurnal temperature amplitude should be taken into consideration in the envelope design: a maximum WWR (Window-to-Wall Ratio) is given as a function of diurnal temperature amplitude.
机译:众所周知,建筑物应该有良好的围护结构和足够的质量。但是,美国建筑法规没有规定建筑物的热质量。这可能是由于传统的热平衡设计(假设室内空气温度恒定),由相应的包壳热损失或增益以及内部热增益引起的任何热失衡都是由HVAC设备解决的,这些是HVAC选择的目的,而不是确定所需的建筑物热质量。我们提出了建筑热自主的概念和基于两步过程假设的设计方法。热自主是指建筑物的室内温度(不包括HVAC设备)保持在规定温度范围内的能力。基于过程假设的设计方法的第一步旨在确定热独立建筑物的建筑物热质量。我们的发现表明,建筑物的天花板和地板的最佳平板厚度为25厘米,并建议其围护墙的混凝土平板厚度为10厘米。更有趣的发现是,在封套设计中应考虑气候特定的昼夜温度幅度因子:给出最大WWR(窗墙比)作为昼夜温度幅度的函数。

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