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Life cycle embodied energy analysis of residential buildings: A review of literature to investigate embodied energy parameters

机译:住宅建筑生命周期内含能量分析:研究内含能量参数的文献综述

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Approximately half of the annual global energy supply is consumed in constructing, operating, and maintaining buildings. Because most of this energy comes from fossil fuels, it also contributes greatly to annual carbon emissions. When constructing a building, embodied energy is consumed through construction materials, building products, and construction processes along with any transportation, administration, and management involved. Operating energy is used in space conditioning, heating, lighting, and powering building appliances. In order to effectively reduce the carbon footprint of buildings, a comprehensive reduction in both embodied and operating energy is needed. Studies so far have focused on reducing either embodied or operating energy in isolation without realizing the trade-off that exists between them. Also, building energy research has concentrated more on operating energy than embodied energy, and as a result, the operating energy of buildings is gradually decreasing. Due to a variety of issues, however, few efforts have been undertaken to comprehensively minimize embodied energy.
机译:每年全球能源供应的大约一半用于建筑,运营和维护建筑物。由于这种能源大部分来自化石燃料,因此也极大地促进了年度碳排放。建造建筑物时,会通过建筑材料,建筑产品和施工过程以及所涉及的任何运输,管理和管理来消耗内在能量。工作能量用于空间调节,供暖,照明和为建筑设备供电。为了有效地减少建筑物的碳足迹,需要全面降低实际能耗和运行能耗。迄今为止,研究集中在孤立地减少体现的能量或工作能量,而没有意识到它们之间存在的取舍。此外,建筑能源研究更多地集中在运行能源上,而不是在体现能源上,因此,建筑物的运行能源正在逐渐减少。然而,由于各种问题,很少采取努力来全面地减小所体现的能量。

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