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Indicators for Evaluation of Energetic Performance of Net Zero Energy Buildings

机译:净零能耗建筑能源性能评估指标

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According to experts, the average temperature of the planet has increased at an unprecedented and alarmingly high rate over the last fifty (50) years. Carbon emissions have been found to be a major catalyst for climate change and the energy sector one of the highest emitters globally. Thus any significant reduction in energy related emissions would have a significant impact on global carbon emissions and consequently global warming. UN-Habitat estimates that approximately 56% of energy produced in most African nations is consumed in buildings. There is a need for energy efficiency and possibly conservation in buildings since they represent the single largest consumer of energy on the continent. Net Zero Energy Buildings (NZEBs), a possible solution for reducing the energy footprint of buildings, represents the evolution of buildings in the near future. The Zero energy concept has a major impact on the design and construction of future buildings. This paper focuses on the review and development of existing Load Match Indicators for zero energy buildings. Four indicators are provided and discussed (i.e. self-consumption, self-production, loss of load probability, and coverage rate indicators). For the purpose of this paper, Predis-MHI (a platform of G2ELab) was used as a case study. Data was collected from the platform’s living lab and was used in the calculation and evaluation of these indicators. The results indicate the relevance of each indicator in evaluating the energetic performance of a building and also highlight the practical difficulties faced in evaluating the platform.
机译:根据专家的说法,在过去的五十(50)年中,行星的平均温度以前所未有的惊人速度上升。碳排放已被发现是气候变化的主要催化剂,而能源部门是全球排放量最大的排放国之一。因此,与能源有关的排放量的任何大幅度减少都会对全球碳排放量以及随之而来的全球变暖产生重大影响。人居署估计,大多数非洲国家生产的能源中约有56%消耗在建筑物中。由于建筑物代表了非洲大陆上最大的能源消耗国,因此需要提高建筑物的能源效率并可能节约能源。净零能耗建筑物(NZEB)是减少建筑物能耗的一种可能解决方案,它代表了建筑物在不久的将来的发展。零能耗概念对未来建筑的设计和建造产生重大影响。本文着重于对零能耗建筑的现有负荷匹配指标的审查和开发。提供并讨论了四个指标(即自我消费,自我生产,负载损失概率和覆盖率指标)。出于本文的目的,使用Predis-MHI(G2ELab的平台)作为案例研究。数据是从平台的活动实验室收集的,用于计算和评估这些指标。结果表明,每个指标在评估建筑物的能量性能方面的相关性,也突出了在评估平台时面临的实际困难。

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