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The Influence of Ambient Temperature on Green Roof R-values.

机译:环境温度对屋顶绿化R值的影响。

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摘要

Green roofs can be an effective and appealing way to increase the energy efficiency of buildings by providing active insulation. As plants in the green roof transpire, there is a reduction in heat flux that is conducted through the green roof. The R-value, or thermal resistance, of a green roof is an effective measurement of thermal performance because it can be easily included in building energy calculations applicable to many different buildings and situations. The purpose of this study was to determine if an increase in ambient temperature would cause an increase in the R-value of green roofs. Test trays containing green roof materials were tested in a low speed wind tunnel equipped to determine the R-value of the trays. Three different plant species were tested in this study, ryegrass (Lolium perenne), sedum (Sedum hispanicum), and vinca (Vinca minor ). For each test in this study the relative humidity was maintained at 45% and the soil was saturated with water. The trays were tested at four different ambient temperatures, ranging from room temperature to 120ºF. The resulting R-values for sedum ranged from 1.37 to 3.28 ft2hºF/BTU, for ryegrass the R-values ranged from 2.15 to 3.62 ft2hºF/BTU, and for vinca the R-values ranged from 3.15 to 5.19 ft2hºF/BTU. The average R-value for all the tests in this study was 3.20 ft2hºF/BTU. The results showed an increase in R-value with increasing temperature. Applying an ANOVA analysis to the data, the relationship between temperature and R-value for all three plant species was found to be statistically significant.
机译:绿化屋顶可以通过提供主动保温来提高建筑物的能源效率,是一种有效且有吸引力的方法。随着绿色屋顶中植物的蒸腾,通过绿色屋顶传导的热通量会减少。绿化屋顶的R值或热阻是衡量热性能的有效方法,因为它可以轻松地包含在适用于许多不同建筑物和情况的建筑能耗计算中。这项研究的目的是确定环境温度的升高是否会导致绿色屋顶的R值升高。在装有低速风洞的低速风洞中测试包含绿色屋顶材料的测试托盘,以确定托盘的R值。在该研究中测试了三种不同的植物物种:黑麦草(黑麦草),景天(西班牙景天)和长春花(小长春花)。对于这项研究中的每个测试,相对湿度均保持在45%,土壤用水饱和。在从室温到120ºF的四个不同环境温度下对托盘进行了测试。景天的R值范围为1.37至3.28 ft2hF / BTU,黑麦草的R值范围为2.15至3.62 ft2hF / BTU,长春花的R值范围为3.15至5.19 ft2hF / BTU。本研究中所有测试的平均R值为3.20 ft2·h·F / BTU。结果表明,R值随温度升高而增加。将ANOVA分析应用于数据,发现所有三种植物的温度与R值之间的关系在统计上均具有显着性。

著录项

  • 作者

    Cox, Bryce Kevin.;

  • 作者单位

    Portland State University.;

  • 授予单位 Portland State University.;
  • 学科 Alternative Energy.;Energy.;Sustainability.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2010
  • 页码 63 p.
  • 总页数 63
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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