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Thermal envelope retrofit: an assessment framework

机译:热封套改造:评估框架

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Generally, energy consumption in buildings has increased in the last 10 years by almost 95%, and with existing stock that is expected to have a long life; sustainable improvements to buildings should extend to existing buildings as well as new builds; retrofit should be embraced by developing an integrated decision to assess existing buildings' conditions and to recommend an optimal set of sustainable retrofitting strategies. Energy consumption in office buildings is one of the highest compared to other building types; with an annual consumption that ranges between 100 and 1000kWh/m~2 depending on geographic location, use, type of office equipment, type of envelope, use of HVAC systems and type of lighting. Several factors could reduce the energy consumption in offices; such as passive design, energy conservation plans, water management systems, controlled lighting systems, use of renewable energy, limited use of active air conditioning system and building envelope improvements. This paper aims at developing an assessment and retrofit strategy for improving the energy performance of offices with focus on the building's envelope which with careful design could reduce energy consumption and carbon footprint by up to 15%. The paper starts by exploring the features of the building envelope, and how they impact energy consumption, in addition to suitable retrofit systems. Both envelope elements and retrofit systems formulate a framework; which is then applied to an office building in Alexandria, Egypt as a case-study.
机译:通常,在过去的10年中,建筑物的能源消耗增加了将近95%,并且现有存量的使用寿命有望延长。建筑物的可持续改进应扩展到现有建筑物和新建建筑物;应当通过制定综合决策来评估改造的现状,以评估现有建筑物的状况并建议一套最佳的可持续改造策略。与其他建筑类型相比,办公大楼的能耗是最高的之一;根据地理位置,用途,办公设备的类型,信封的类型,HVAC系统的使用和照明的类型,年消耗量在100至1000kWh / m〜2之间。有几个因素可以减少办公室的能源消耗;例如被动设计,节能计划,水管理系统,受控照明系统,可再生能源的使用,主动空调系统的有限使用和建筑物围护结构的改进。本文旨在制定评估和改造策略,以改善办公室的能源绩效,重点放在建筑物的围护结构上,通过精心设计可以将能耗和碳足迹减少多达15%。本文首先探讨了建筑围护结构的特征,以及它们如何影响能源消耗以及合适的改造系统。信封元素和改造系统都制定了框架;然后将其应用到埃及亚历山大港的一栋办公楼中作为案例研究。

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