Climate, Climate Change and the Global Diversity of Human Houses

Robert R. Dunn, K. Kirby, Claire Bowern, C. Ember, Russell D. Gray, J. McCarter, Patrick H. Kavanagh, Michelle Trautwein, Lauren M. Nichols, M. Gavin, Carlos A Botero
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Abstract

Globally, human house types are diverse, varying in shape, size, roof type, building materials, arrangement, decoration, and many other features. Here we offer the first rigorous, global evaluation of the factors that influence the construction of traditional (vernacular) houses. We apply macroecological approaches to analyze data describing house features from 1900 to 1950 across 1000 societies. Geographic, social and linguistic descriptors for each society were used to test the extent to which key architectural features may be explained by the biophysical environment, social traits, house features of neighbouring societies, or cultural history. We find strong evidence that some aspects of the climate shape house architecture, including floor height, wall material, and roof shape. Other features, particularly ground plan, appear to also be influenced by social attributes of societies, such as whether a society is nomadic, polygynous, or politically complex. Additional variation in all house features was predicted both by the practices of neighboring societies and by a society's language family. Collectively, the findings from our analyses suggest those conditions under which traditional houses offer solutions to architects seeking to reimagine houses in light of warmer, wetter or more variable climates.
气候、气候变化与全球人类住宅的多样性
在全球范围内,人类居住的房屋类型多种多样,在形状、大小、屋顶类型、建筑材料、布局、装饰和许多其他特征方面各不相同。在此,我们首次对影响传统(乡土)房屋建筑的因素进行了严格的全球性评估。我们采用宏观生态学方法,分析了 1000 个社会中描述 1900 年至 1950 年房屋特征的数据。我们使用每个社会的地理、社会和语言描述符来检验主要建筑特征在多大程度上可以用生物物理环境、社会特征、邻近社会的房屋特征或文化历史来解释。我们发现有力的证据表明,气候的某些方面决定了房屋建筑,包括楼层高度、墙壁材料和屋顶形状。其他特征,尤其是地面平面图,似乎也受到社会属性的影响,如一个社会是游牧社会、一夫多妻制社会还是政治复杂的社会。邻近社会的习俗和一个社会的语系也预示着所有房屋特征的其他变化。总之,我们的分析结果表明,在那些条件下,传统房屋可以为建筑师提供解决方案,帮助他们在更温暖、更潮湿或更多变的气候条件下重新设计房屋。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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