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Analyzing the Impact of Outside Temperature on Energy Consumption and Production Patterns in High-Performance Research Buildings in Arizona

机译:分析外部温度对亚利桑那州高性能研究建筑能耗和生产方式的影响

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摘要

The intimate relationship between energy consumption and climate change demands attention. More energy will be needed to run cooling systems if the annual global temperature continues to rise. The urban heat island would also increase the demand for cooling. As global energy demand continues to grow, the utility sector would face a continuous increase in energy demand. Studies in several countries have shown mostly nonlinear relationships between outside ambient temperature and electricity consumption, whereas other studies have suggested the absence of such relationships among high-performance buildings. However, these studies were based on aggregate data from entire cities and/or countries (indirect relationships) and were not based on real-time data (direct relationships). This study uses continuous real-time data from four high-performance research buildings and presents the results from a set of correlations and regression analyses between several variables, i.e., outside temperature, heat index, electricity consumption, and the production of solar energy. The authors found no relationship between electricity use and outdoor temperature, and between electricity use and heat index. Conversely, the efficiency of the production of solar energy was affected negatively by higher outdoor temperatures.
机译:能源消耗与气候变化之间的密切关系需要引起重视。如果全球年度温度持续上升,则运行冷却系统将需要更多的能源。城市热岛也将增加对制冷的需求。随着全球能源需求的持续增长,公用事业部门将面临能源需求的持续增长。几个国家的研究表明,外界环境温度与电力消耗之间的关系大多呈非线性关系,而其他研究则表明,高性能建筑之间不存在这种关系。但是,这些研究是基于整个城市和/或国家/地区的汇总数据(间接关系),而不是基于实时数据(直接关系)。这项研究使用了来自四个高性能研究大楼的连续实时数据,并给出了多个变量之间的一组相关性和回归分析的结果,这些变量包括外部温度,热指数,电力消耗和太阳能产量。作者发现用电量和室外温度之间以及用电量和热量指数之间没有关系。相反,较高的室外温度对太阳能的生产效率产生负面影响。

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  • 来源
    《Journal of Architectural Engineering》 |2017年第3期|c4017002.1-c4017002.12|共12页
  • 作者单位

    School of Sustainable Engineering and the Built Environment, Arizona State Univ., Tempe, AZ 85281;

    School of Sustainable Engineering and the Built Environment, Arizona State Univ., Tempe, AZ 85281;

    School of Sustainable Engineering and the Built Environment, Arizona State Univ., Tempe, AZ 85281;

    School of Sustainable Engineering and the Built Environment, Arizona State Univ., Tempe, AZ 85281;

    School of Sustainable Engineering and the Built Environment, Arizona State Univ., Tempe, AZ 85281;

    School of Sustainable Engineering and the Built Environment, Arizona State Univ., Tempe, AZ 85281,United States/Federal University of Piaui (UFPI), Teresina 64049-550, Piaui', Brazil;

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