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GIS-based approach to identify climatic zoning: A hierarchical clustering on principal component analysis

机译:基于GIS的气候区划方法:基于主成分分析的层次聚类

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In tropical environments, the design of bioclimatic houses adapted to their environment represents a crucial issue when considering thermal comfort and limiting energy consumption. A preliminary aspect of such design endeavors is the acquisition of accurate knowledge regarding the climatic conditions in each region of the studied territory. The objective of this paper is to propose a climatic zoning for Madagascar from a database of 47 meteorological stations by performing hierarchical clustering on principal components (HCPC). The results are then combined with spatial interpolation using geographic information system (GIS) tools, enabling us to define three climate zones corresponding to dry, humid and highland areas. These results make it possible to define standard meteorological files to evaluate the thermal performance of traditional Malagasy houses. Regardless of the type of house and the areas considered, the percentage of thermal comfort according to the Givoni bioclimatic chart varies from average values of 20% without ventilation to 70% with an air velocity of 1 m/s. In summary, Madagascar's traditional habitat typologies have adapted over time to the constraints of their environment.
机译:在热带环境中,考虑到热舒适性并限制能耗时,适应其环境的生物气候房屋的设计是一个至关重要的问题。这种设计努力的初步方面是获得有关所研究地区每个区域气候条件的准确知识。本文的目的是通过对主成分(HCPC)进行层次聚类,从47个气象站的数据库中为马达加斯加提出气候分区。然后使用地理信息系统(GIS)工具将结果与空间插值相结合,使我们能够定义三个与干旱,潮湿和高原地区相对应的气候带。这些结果使定义标准的气象文件以评估传统的马达加斯加房屋的热性能成为可能。不管房屋的类型和所考虑的区域如何,根据Givoni生物气候图,热舒适性的百分比从无通风的平均值20%到空气流速1 m / s的平均值70%不等。总之,马达加斯加的传统栖息地类型随着时间的推移已经适应了其环境的限制。

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