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Review of methods for climatic zoning for building energy efficiency programs

机译:审查建筑节能计划的气候区划方法

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Climatic zoning is an essential element of most building energy efficiency programs, however there is no widely accepted scientific technique for its delineation. This paper reports an investigation on this issue, which comprised the review of climatic zoning methodologies for building energy efficiency programs adopted by 54 countries. The paper identified that the nature and magnitude of climatic variations are not the main elements in the definition of the number of climatic zones in a country. The number of climatic zones seems to be mainly driven by the expected simplicity of the final climatic zoning, respecting in most cases a maximum of 8 zones independent of the country size and climatic variations. A total of 19 different variables, techniques and parameters used in climatic zoning were identified, the most frequent being temperature, degree days, altitude, administrative divisions and relative humidity. However, around 80% of the countries analysed in this study used only up to three variables/techniques/parameters to define their climatic zoning. This simplicity comes at the cost of ignoring several aspects of climate and building 'energy performance. From the techniques identified in this review, only the combination of building performance simulation and cluster analysis seems to provide robust tools to tackle the complex relations between climate and building energy performance. Combined, these tools may provide the means to explore scenarios and support evidence -based decision making in energy policy. The lack of consensus in several aspects of climate zoning indicates the need for further research in this area. (C) 2016 Elsevier Ltd. All rights reserved.
机译:气候分区是大多数建筑节能计划的重要组成部分,但是,其划定方法并没有被广泛接受的科学技术。本文报告了对此问题的调查,其中包括对54个国家所采用的建筑节能方案的气候区划方法的回顾。该文件指出,气候变化的性质和严重程度并不是一国气候区数量定义中的主要因素。气候带的数量似乎主要是由最终气候带的预期简单性驱动的,在大多数情况下,与国家规模和气候变化无关,最多可考虑8个带。总共确定了用于气候分区的19种不同变量,技术和参数,其中最常见的是温度,度日,海拔,行政区划和相对湿度。但是,在本研究中分析的大约80%的国家仅使用多达三个变量/技术/参数来定义其气候区划。这种简单性的代价是忽略了气候的几个方面,并没有建立'能源表现。从本文中确定的技术来看,只有将建筑性能模拟与聚类分析相结合才能提供解决气候与建筑能源性能之间复杂关系的强大工具。这些工具结合在一起,可以提供探索情景的方法,并支持能源政策中基于证据的决策。在气候分区的几个方面缺乏共识,这表明需要在这一领域进行进一步的研究。 (C)2016 Elsevier Ltd.保留所有权利。

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