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Spatial and Geographic Patterns of Building Energy Performance: A Cross-City Comparative Analysis of Large-Scale Data

机译:建筑能源绩效的空间和地理模式:大型数据的跨城市比较分析

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In recent years, there has been a growing interest in comparing and benchmarking the energy use of buildings in cities. Existing frameworks such as the U.S. Environmental Protection Agency (EPA) Energy star program and the U.S. Green Building Council Leadership in Energy and Environmental Design (LEED) certification provide coarse measures of energy performance and do not fully capture specific features of the localized building stock that can influence consumption patterns. Overall performance of existing buildings in a particular municipality can be impacted by physical and occupancy characteristics, such as size, mass, age, and implemented technologies, as well as the condition and extent of supporting infrastructure and the morphology of the city. In addition, local land use and building regulations, energy policies, and socio-cultural context can be significant drivers for the adoption of energy efficient technologies and behavior. In this study, we analyze publicly available energy disclosure data from five U.S. cities, collected through local energy disclosure ordinances, in order to understand the spatial patterns of energy consumption in varying urban environments. We use data on actual annual energy consumption and physical and use characteristics for 2,250 office properties for the year 2014. This robust dataset allows us to study differences between the building stock in various municipalities, as well as to model direct building-to-building benchmarking comparisons. The objective of this research is to develop the foundation for a city-scale energy model that explains the impact of the urban built environment on energy consumption between buildings of similar type, and to create a robust, data-driven, and cross-city building energy efficiency benchmarking framework.
机译:近年来,人们越来越有兴趣对城市建筑物的能源使用进行比较和基准测试。现有框架(例如美国环境保护局(EPA)能源之星计划和美国绿色建筑委员会能源与环境设计领导力(LEED)认证)提供了粗略的能源绩效衡量标准,并未完全体现出本地化建筑存量的特定特征。会影响消费模式。特定城市中现有建筑物的整体性能会受到物理和占用特征(例如大小,质量,年龄和已实施的技术)以及支持基础设施的条件和范围以及城市形态的影响。此外,当地的土地使用和建筑法规,能源政策以及社会文化背景也可能成为采用节能技术和行为的重要驱动力。在这项研究中,我们分析了通过当地能源公开条例收集的来自美国五个城市的公开可用能源公开数据,以了解不同城市环境中能源消耗的空间格局。我们使用2014年2,250处写字楼的实际年度能耗,物理和使用特性数据。这一强大的数据集使我们能够研究各个城市的建筑存量之间的差异,并为直接的建筑物对建筑物基准测试建模比较。这项研究的目的是为建立一个城市规模的能源模型奠定基础,该模型解释城市建筑环境对类似类型建筑物之间能源消耗的影响,并创建一个健壮的,数据驱动的,跨城市的建筑物能源效率基准框架。

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