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Empirically derived formulas to predict indoor maximum, average, and minimum temperatures in roofpond buildings using minimum climatic information .

机译:根据经验得出的公式,可使用最少的气候信息来预测屋顶蓬建筑的室内最高,平均和最低温度。

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摘要

This thesis introduces an empirically developed formula to predict the comfort conditions and thermal performance of a Skytherm(TM) Southwest Roofpond placed over a light-weight un-insulated structure built at the School of Architecture at the University of Nevada, Las Vegas.;The predictive formula introduced in this study may be used in different parts of the world (particularly developing nations where insulation and air-conditioning are rarely used) to predict the performance of a Skytherm(TM) Southwest Roofpond using minimal climate data.;The data collected in the experimental setup at the Natural Energies Advanced Technologies Laboratory included outside and inside temperatures of various surfaces of two different test cells built on the site (i.e. a Skytherm(TM) Southwest Roofpond test cell and a control room). For the purposes of this thesis, only outdoor climatic data and indoor air and ceiling temperatures were used to analyze the performance of the system. The period covered by this study was October of 2004 through September of 2006 and March of 2009 through October of 2009.;The predictive formula developed in this study may be used along with similarly developed formulas to identify and suggest the most appropriate locations for the installation of the roofpond system.
机译:本论文介绍了一个根据经验开发的公式,用于预测Skytherm(TM)西南Roofpond放置在拉斯维加斯内华达大学建筑学院建造的轻型非绝缘结构上的舒适条件和热性能。这项研究中引入的预测公式可能会在世界各地(尤其是很少使用保温和空调的发展中国家)中使用最少的气候数据来预测Skytherm(TM)西南Roofpond的性能。 Natural Energies Advanced Technologies Laboratory的实验装置中的温度包括现场安装的两个不同测试单元(即Skytherm(TM)Southwest Roofpond测试单元和控制室)各个表面的外部和内部温度。出于本文的目的,仅使用室外气候数据以及室内空气和天花板温度来分析系统的性能。该研究涵盖的时间是2004年10月至2006年9月以及2009年3月至2009年10月。该研究中开发的预测公式可与类似开发的公式一起使用,以识别并建议最适合安装的位置天棚系统的

著录项

  • 作者

    Kako, Ibrahim Kivarkis.;

  • 作者单位

    University of Nevada, Las Vegas.;

  • 授予单位 University of Nevada, Las Vegas.;
  • 学科 Sustainability.;Architecture.
  • 学位 M.Arch.
  • 年度 2009
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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