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ZERO ENERGY HOUSES AND EMBODIED ENERGY: REGULATORY AND DESIGN CONSIDERATIONS

机译:零能量房屋和体现能源:监管和设计考虑因素

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Building energy performance regulations and standards around the world are evolving aiming to reduce the energy use in buildings. As we move towards zero energy buildings, the embodied energy of construction materials and energy systems becomes more important, as it represents a high percentage of the overall life cycle energy use of a building. However, this issue is still ignored by many regulations and certification methods, as happens with the European Energy Performance of Buildings Directive (EPBD), which focuses on the energy used in operation. This paper analyses a typical house designed to comply with Irish building regulations, calculating its energy use for heating and how water with the Irish national calculation tool, which uses a methodology in line with the EPBD.A range of measures to reduce the energy performance in use of this typical house are proposed, calculating the reduced energy demand and moving towards a zero energy demand building. A life-cycle approach is added to the analysis, taking into account the differential embodied energy of the implemented measures in relation to the typical house base-case, annualizing the differential embodied energy and re-calculating the overall energy use The paper discusses how a simplified approach for accounting embodied energy of materials could be useful in a goal to achieve the lowest life-cycle energy use in buildings, and concludes with a note on how accounting for embodied energy is a key element when moving towards zero energy buildings.
机译:世界各地的能源绩效法规和标准正在不断发展,旨在减少建筑物中的能源使用。当我们走向零能量建筑时,建筑材料和能源系统的实施能力变得更加重要,因为它代表了建筑物的整体生命周期能源的高比例。然而,许多法规和认证方法仍然忽略了这个问题,因为欧洲建筑指令(EPBD)的欧洲能源表现发生,这侧重于运作中使用的能量。本文分析了一个典型的房屋,旨在遵守爱尔兰建筑规定,计算其用于加热和利用爱尔兰国家计算工具的能源用途,该工具用方法与EPBD。一系列措施来降低能源性能提出了这种典型的房屋,计算了降低的能源需求和朝向零能量需求建设。在分析中添加了生命周期方法,考虑到所实施的措施与典型房屋基本情况相关的差动体现能量,年化差动体现能量并重新计算整体能量使用本文讨论了如何考虑到零能量建筑物的核算时,有助于实现建筑物中的最低生命周期能源使用的目标,以实现最低的生命周期能源使用,具体实施方式的措施的简化方法可用于实现建筑物中的最低生命周期能源。

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