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Analysis of the passive design and solar collection techniques of the houses in the 2009 U.S. Department of Energy's Solar Decathlon competition .

机译:2009年美国能源部太阳能十项全能竞赛的房屋被动设计和太阳能收集技术分析。

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摘要

The U.S. Department of Energy's Solar Decathlon is a competition in which twenty university teams compete to design and build the best completely solar powered house. The biennial competition culminates with the teams reconstructing their houses on the National Mall in Washington, DC for a week of tours and contests. In order for houses to be successful they must take advantage of passive solar design techniques while maximizing the solar energy collected through photovoltaic and thermal collectors.;Internal temperature, internal humidity, overall energy balance, site insolation, site temperature and site humidity data were measured for all twenty houses in 15 minute intervals for the eight days of the competition period. Photovoltaic conversion and thermal energy collection were predicted through simple equations which utilized site insolation and temperature data along with collector parameters and orientation. The construction documents for all twenty houses were analyzed for passive solar design techniques. Passive solar data was quantified through use of several rules of thumb. The passive solar design techniques analyzed were direct--gain, indirect--gain, thermal mass, daylighting, insulation, window placement, and shading.;Measured internal temperature and energy usage data were compared with the quantified passive solar rule of thumb values and plotted. Trendlines were fit to the resulting plots using simple linear regression. These trendlines were used to discuss patterns that emerged correlating each passive solar design technique to house performance. These correlations were also used to discuss the validity of the rules of thumb as a design tool.;The results for adherence to the passive solar rules of thumb and solar energy collection were combined to provide rankings of the best designed solar houses. The top three designs based on these criteria were Team Ontario/BC, Team Alberta, and University of Minnesota. These rankings were compared to combined placement in the comfort zone competition and the energy balance competition. Only one of the three predicted best houses was also in the top three for actual competition performance: Team Ontario/BC.;Strong relationships emerged between insulating values and internal temperature control. Strong relationships were also found between thermal storage volume and predicted total thermal collection. The plotted comparisons contradicted many of the limits associated with the passive solar rules of thumb. The rules of thumb are best used as quick calculations and estimations and a more refined computer model should be used for more accurate results.
机译:美国能源部的太阳能十项全能竞赛是一项竞赛,二十支大学团队竞争设计和建造最好的完全太阳能供电的房屋。两年一度的比赛达到高潮,团队在华盛顿特区国家广场重建房屋,进行为期一周的巡回演出和比赛。为了使房屋成功,他们必须利用被动式太阳能设计技术,同时最大化通过光伏和集热器收集的太阳能。内部温度,内部湿度,整体能量平衡,场所日照,场所温度和场所湿度数据已被测量在比赛期间的八天之内,每15分钟间隔为所有二十栋房屋提供服务。光伏转换和热能收集是通过简单的方程式预测的,该方程式利用场地日照和温度数据以及收集器的参数和方向。分析了所有二十栋房屋的施工文件,以了解被动式太阳能设计技术。通过使用多个经验法则对被动太阳数据进行了量化。分析的被动式太阳能设计技术包括直接-间接,间接-增益,热质量,采光,隔热,窗户布置和阴影;将测得的内部温度和能源使用数据与量化的被动式太阳经验法则值进行比较,密谋。使用简单的线性回归将趋势线拟合到所得图。这些趋势线用于讨论将每种无源太阳能设计技术与房屋性能相关联而出现的模式。这些相关性还被用来讨论经验法则作为设计工具的有效性。遵守被动式太阳经验法则和太阳能收集的结果相结合,以提供最佳设计的太阳能房屋的排名。基于这些标准的前三名设计是安大略/ BC团队,艾伯塔团队和明尼苏达大学。将这些排名与舒适区比赛和能量平衡比赛的综合排名进行了比较。在三项预测的最佳房屋中,只有一项在实际比赛表现中排名前三:安大略省/不列颠哥伦比亚省队;隔热值与内部温度控制之间出现了牢固的关系。还发现蓄热量与预测的总蓄热量之间存在密切关系。绘制的比较结果与与被动式太阳经验法则相关的许多限制相矛盾。经验法则最好用作快速计算和估计,而更精确的计算机模型应用于更准确的结果。

著录项

  • 作者

    Lentz, Timothy Robert.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Mechanical.;Sustainability.;Architecture.;Energy.
  • 学位 M.S.
  • 年度 2010
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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