Effect of slope angle on energy performance of ground-integrated buildings on slope terrain

Effect of slope angle on energy performance of ground-integrated buildings on slope terrain
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DOI:
10.2495/sdp-v12-n2-283-293
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发表时间:
2017-02
影响因子:
--
通讯作者:
M. D. Castro;M. Gadi
M. D. Castro;M. Gadi
中科院分区:
--
文献类型:
--
作者:
M. D. Castro;M. Gadi

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整个欧洲的城市发展和地形因素的显著增加导致在山坡地区建造的住宅建筑数量明显增加。一些关于地面一体化建筑的研究已经证明,建筑物可以从地面热势中受益,以减少或消除采暖和制冷需求。然而,只有少数发表的文章解决了斜坡地形上地面集成建筑的潜力。本文的目的是利用EnergyPlus作为能量建模软件,通过参数化研究,探索温带气候下斜坡地形的地面热势。本文着眼于两个主要问题:首先,建筑物是如何受到地形倾斜的影响的;其次,哪种类型的斜坡建筑设计更有效率,特别是在分层、修正截面和梯级或阶梯山设计的情况下。
The noticeable rise in urban development and topography factors across Europe has resulted in a visible increase in the number of residential buildings being constructed in hillside areas. Several studies about ground-integrated architecture have proved that buildings can benefit from ground thermal potential, in order to reduce or eliminate the heating and cooling needs. However, only a small number of published articles tackle the potential of ground-integrated buildings on sloped terrains. The purpose of this paper is to explore the ground thermal potential of sloped terrains in temperate climates, through parametric studies using EnergyPlus as the energy modelling software. This paper looks at two main questions: firstly, how buildings are affected by terrain inclination and, secondly, which types of slope building designs are more thermally efficient, particularly the case of spilt level, amended section and cascade or step-hill designs.