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THERMAL PERFORMANCE OF DOUBLE-SHELL SYSTEMS IN HOT-HUMID AND HOT-DRY CLIMATES.

机译:热湿和热干气候中双壳系统的热性能。

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摘要

The double-shell system is a passive cooling concept that addresses the problem of excessive solar radiation heat gain in the hot-humid and the hot-arid regions of the world. The outer secondary shell provides shading for both the glazed and the opaque parts of the roof and the walls.;Full scale modules of the double-shell systems have been constructed and tested. The test results correlate well with the mathematical model, and the efficiency factors in many cases approached 1.0. This indicates that the solar radiation part of the external heat load can totally be eliminated by the outer secondary shell, which results in a substantial saving on air conditioning load. The tests have been conducted in College Station, Texas, which is characterized by a hot-humid climate. The results, however, are applicable to both the hot-humid and the hot-arid climates all over the world, since the tests are related to the secondary shells only.;The findings of this research should be of interest to a wide range of users. With this in mind, most of the theoretical development of the mathematical model has been placed in the Appendices. Designers interested in a quick estimate of the performance of various double-shell systems will find the summary tables particularly convenient.;The mathematical model in this dissertation establishes an efficiency factor for rating the performance of the double-shell system as compared with other means of reducing solar radiation impact on buildings. The output of the mathematical model is given in a form of condensed tables that incorporate all the variables that affect the efficiency of the system.
机译:双壳系统是一种被动冷却概念,解决了世界上湿热地区和热干旱地区太阳辐射热量获取过多的问题。外部二级外壳为屋顶和墙壁的玻璃部分和不透明部分都提供了阴影。;双外壳系统的大型模块已构建并经过测试。测试结果与数学模型很好地相关,并且在许多情况下效率因子接近1.0。这表明外部热负荷的太阳辐射部分可以完全被外部次级外壳消除,从而大大节省了空调负荷。测试在得克萨斯州的大学城进行,这里的气候为湿热气候。但是,该结果适用于全世界的湿热气候和干热气候,因为这些测试仅与次级壳有关。该研究的结果应引起广泛的关注。用户。考虑到这一点,数学模型的大多数理论发展都已放在附录中。对快速评估各种双壳系统性能感兴趣的设计人员会发现汇总表特别方便。本论文中的数学模型建立了与其他方法相比对双壳系统性能进行评估的效率因子。减少太阳辐射对建筑物的影响。数学模型的输出以精简表的形式给出,该表包含了影响系统效率的所有变量。

著录项

  • 作者

    SHAABAN, AWNI KAMEL.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Architecture.
  • 学位 D.E.D.
  • 年度 1981
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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