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Local climate change and building energy consumption.

机译:当地的气候变化和建筑能耗。

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摘要

Effects of local changes in climate and urban surface geometry on building energy consumption are examined. Typical hypothetical built environments are developed. Energy consumption by a single building is simulated for changing climate conditions (especially air temperature), and urban surface geometry (particularly for a single isolated building and a building surrounded by several other buildings). A modified algorithm, developed by the U.S. Army Construction Engineering Research Laboratory, is used to simulate energy use inside the buildings of interest.;Results suggest that temperature increases may lead to increases in net energy consumption in hot climates owing to increases in cooling loads. In colder climates, temperature increases could lead to energy savings through decreases in heating loads. Energy savings are expected in a wide variety of seasonally cool climates, depending also on the character of the buildings. Shadowing makes a significant contribution to cooling-load decreases in hot climates. Even in relatively cold regions, urban-induced decreases in the summer cooling loads tend to be significant. Urban environments (through warming and shadowing) tend to decrease annual energy consumption in buildings, except in the hot climates. In hot climates, urbanization accelerates energy consumption.
机译:研究了气候和城市表面几何形状的局部变化对建筑能耗的影响。开发了典型的假设构建环境。针对气候条件(尤其是气温)和城市表面几何形状(尤其是单个隔离建筑物以及被其他多个建筑物包围的建筑物)的变化,模拟了单个建筑物的能耗。由美国陆军建设工程研究实验室开发的一种改良算法用于模拟感兴趣建筑物内的能源使用;结果表明,由于冷却负荷的增加,温度升高可能导致炎热气候下的净能源消耗增加。在较冷的气候中,温度升高可能会通过减少热负荷来节省能源。预计在各种季节凉爽的气候中都可以节省能源,这还取决于建筑物的特性。阴影对炎热气候下的冷却负荷降低做出了重要贡献。即使在相对寒冷的地区,夏季引起的城市降温负荷的减少也很明显。除炎热的气候外,城市环境(通过变暖和遮蔽)往往会减少建筑物中的年能耗。在炎热的气候中,城市化加快了能源消耗。

著录项

  • 作者

    Matsuura, Kenji.;

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Geography.;Energy.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 162 p.
  • 总页数 162
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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