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Energy performance: A comparison of four different multi-residential building designs and forms in the equatorial region

机译:能源绩效:赤道地区四种不同的多住宅建筑设计和形式的比较

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Building sector has been identified as a major energy consumer with nearly half of the world's energy used is associated with providing environmental conditioning in buildings. Approximately, two third of this is for heating, cooling and mechanical ventilation. Therefore, there is a need for optimizing the building design which collaborates with surrounding environment in enhances the energy conservation programme. Energy consumption evaluation and audits for buildings is the most important step that can contribute to energy conservation. As preliminary studies to this research, four low-rise residential college buildings with specific layout were selected in finding the relationship between green/passive building strategies and energy performance. The study initial approach was to critically analyse the design of the selected buildings through scaled drawings and site visits. Comparison of the two were carefully made to obtain current and post renovation conditions and surroundings as most of the drawings were drawn 30 to 40 years back. The elements of bioclimatic design were implemented as matrixes or criteria, particularly on natural ventilation and day lighting. Then, the energy performance was crucially audited to find out Building Energy Performance (BEP) acknowledged as energy use per unit floor area, and Energy Efficiency Index (EEI) to elaborate the kWh/m2/year of each residential college for five years duration. As initial findings, the implementations of appropriate green building strategies is able to provide positive impacts to the overall energy performance of the residential colleges.
机译:建筑业已被确定为主要的能源消费国,全球使用的能源中有近一半与建筑环境调节有关。大约其中三分之二用于加热,冷却和机械通风。因此,需要优化与周围环境协作以增强节能方案的建筑设计。建筑物的能耗评估和审计是有助于节能的最重要步骤。作为这项研究的初步研究,选择了四栋具有特定布局的低层住宅学院建筑,以寻找绿色/被动建筑策略与能源绩效之间的关系。研究的初始方法是通过按比例绘制图纸和实地考察来严格分析所选建筑物的设计。仔细比较了两者,以获取当前和后期的装修条件和环境,因为大多数图纸是30至40年前绘制的。生物气候设计的要素被实施为矩阵或标准,尤其是在自然通风和日光照明方面。然后,对能源性能进行了严格的审核,以找出公认的单位建筑面积能源使用量(BEP)和能效指数(EEI)来详细说明每年的kWh / m 2 每所寄宿学院为期五年。作为初步发现,适当的绿色建筑策略的实施能够对住宅学院的整体能源绩效产生积极影响。

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