首页> 外文会议>2nd international conference on energy sustainability 2008 >ZERO ENERGY HOUSES AND EMBODIED ENERGY: REGULATORY AND DESIGN CONSIDERATIONS
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ZERO ENERGY HOUSES AND EMBODIED ENERGY: REGULATORY AND DESIGN CONSIDERATIONS

机译:零能耗房屋和嵌入式能源:法规和设计注意事项

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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.rnThis 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 usernThe 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:世界各地的建筑节能性能法规和标准正在不断发展,旨在减少建筑能耗。随着我们朝着零能耗建筑迈进,建筑材料和能源系统的内在能量变得越来越重要,因为它在建筑物的整个生命周期能耗中所占的比例很高。但是,许多法规和认证方法仍然忽略了这个问题,就像欧洲建筑节能指令(EPBD)一样,该指令侧重于操作中使用的能源。rn本文分析了旨在符合爱尔兰建筑法规的典型房屋。 ,使用爱尔兰国家计算工具计算出其用于取暖的能源消​​耗以及如何使用水,该工具采用了与EPBD相符的方法。提出了一系列降低这种典型房屋使用能源性能的措施,以计算出减少的能源需求并朝着零能源需求的方向发展。分析中增加了生命周期方法,并考虑了与典型房屋基本情况相关的已实施措施的差异体现能量,将差异体现能量年化并重新计算总体能源消耗。估算材料的内含能量的方法对于实现建筑物中生命周期能耗最低的目标可能是有用的,并在结束语中说明了在向零能耗建筑物过渡时如何计算内含能量是关键要素。

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