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书名 | 太阳能水流窗(英文版) |
分类 | 科学技术-建筑-建筑理论与文化 |
作者 | 李春莹 |
出版社 | 冶金工业出版社 |
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简介 | 内容推荐 为实现建筑领域“碳达峰”和“碳中和”宏伟目标,建筑围护结构的优化设计和可再生额能源就地利用至关重要。该书介绍了建筑窗体节能的国内外研究最新进展,提出一种集采光、遮阳隔热和太阳能热利用功能于一体的水流窗,并论述其实验测试、综合节能模拟结果等。本书详细介绍了水流窗的具体结构、实验测试系统构成及香港地区气候条件下的测试结果。在此基础上,建立水流窗的数值模型及程序,并通过实验数据成功验证,其后用于水流窗热工性能优化设计和全年节能效果分析。此外,本书结合ESP-r建筑能耗仿真模拟平台和Radiance光环境模拟软件对水流窗的建筑综合节能潜力进行预测。结果表明,水流窗在具有较高的冷负荷密度和热水需求的建筑中具有广泛的应用潜力,有助于建筑领域的“碳中和”目标实现。 作者简介 李春莹,博士,深圳大学建筑与城市规划学院、本原设计研究中心副教授。近年来,围绕绿色健康建筑、光伏建筑一体化开展研究,主持并参与完成多项高性能建筑围护结构、室内环境品质优化等研究项目,在国内外专业期刊发表中英文学术论文50余篇。 目录 Chapter 1 Background 1.1 Climate change and building energy consumpfion 1.2 Active solar designs 1.3 Passive solar design Chapter 2 Solar Radiation and Windows 2.1 Solar radiation 2.2 Single-glazed windows 2.2.1 Clear glazing 2.2.2 Tinted glazing 2.2.3 Reflective glazing 2.2.4 Low-e glazing 2.2.5 PV glazing 2.2.6 Smart glass 2.3 Double-glazed windows 2.3.1 Air-sealed double-glazed windows 2.3.2 Gas-filled double-glazed windows 2.3.3 Evacuated double-glazed windows 2.3.4 PCM filled windows 2.3.5 Air-flow windows 2.4 Numerical research of advanced glazing design 2.5 Daylight utilization Chapter 3 Water-flow Window 3.1 Water-flow window configuration 3.2 A scale-down experiment 3.2.1 Experimental setup 3.2.2 The monitoring facilities 3.2.3 System performance analysis 3.3 A full-size experiment 3.3.1 Experimental setup 3.3.2 The monitoring facilities 3.3.3 System performance analysis Chapter 4 Numerical Modeling 4.1 Models development 4.1.1 Water-flow window 4.1.2 Air-gap window 4.2 Program validation 4.2.1 Validation with solar box experiment 4.2.2 Validation with full-size experiment 4.3 Year-round performance 4.4 Influencing factors analysis 4.4.1 Glazing properties 4.4.2 Heat exchanger dimension 4.4.3 Width-to-length ratio of the glazing area 4.4.4 Glazing direction and inclination Chapter 5 Comprehensive Energy Performance 5.1 Simulation software 5.1.1 ESP-r 5.1.2 Radiance 5.1.3 Software integration 5.2 Validation of integrated simulation 5.2.1 Modeling water-flow window 5.2.2 Validation of visual environment simulation 5.3 Performance of water-flow window in a sport complex 5.3.1 Sport complex model 5.3.2 Simulation method and settings 5.3.3 Year-round performance analysis 5.3.4 Performance during typical summer week 5.3.5 Year-round AC system load 5.3.6 Effect of daylighting control 5.3.7 Overall effects on building energy consumption References |
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