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Identifying and weighting indicators of building energy efficiency assessment in Ghana

机译:加纳建设能源效率评估的识别和加权指标

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Ghana a sub-Saharan country has seen relative improvements in some aspects of the economy howbeit the energy supply deficit within the region is a burgeoning problem. In most emerging markets, the building sector is among the sectors increasing most rapidly; and has seen the uptake of building energy efficiency assessment worldwide. In this study a weighting system is developed to form the basis of building energy efficiency assessment tool for Ghana. In achieving this a Delphi-Analytic Hierarchy Process (AHP) framework is presented to analyse building energy indicators. The framework consists of three main steps. Firstly, the identification of various indicators. Secondly the Delphi method is applied and an indicator list of 21 is determined. In the third step, an analytical hierarchy process model has been conducted and the expert Delphi method has been used to obtain weighted list of these identified indicators from professionals and highly informed local experts from government, academic and industry. Results from the AHP revealed that "building design" and "energy efficiency of building facilities" are of top priority to the Ghanaian built environment. It is argued that the development of the weighting system brings about a new appreciation of climate influence on the built environment and its corresponding effect on building energy efficiency measurement. The customized weighting system does not eliminate the socio-economic environment of the region in question but provides the recognition of variables necessary for effective measurement of building energy efficiency.
机译:加纳撒哈拉州撒哈拉国家在经济的某些方面看到了相对改进,该地区内部能源供应赤字是一个蓬勃发展的问题。在大多数新兴市场,建筑业是迅速增长的部门之一;并已看到全球建设能源效率评估的吸收。在本研究中,开发了一种加权系统,以构成加纳建设能效评估工具的基础。在实现这一点时,提出了Delphi-Analytic层次过程(AHP)框架以分析建筑能量指标。该框架由三个主要步骤组成。首先,鉴定各种指标。其次,应用了Delphi方法,并确定21的指示符列表。在第三步中,已经进行了分析层次过程模型,专家Delphi方法已被用于从政府,学术和行业的专业人员获得这些已确定的指标的加权列表,并高度了解政府,学术和工业的专家。 AHP的结果显示,“建筑设施”和“建筑设施的能源效率”是加纳建筑环境的首要任务。有人认为,加权系统的发展为气候影响对建筑环境的新欣赏及其对建筑能效测量的影响。定制的加权系统不会消除所讨论的区域的社会经济环境,但提供了有效测量建筑能效的变量的识别。

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