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Energy efficiency of a dynamic glazing system

机译:动态玻璃系统的能源效率

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摘要

The reduction of air-conditioning energy consumptions is one of the main indicators to act on when improving the energy efficiency in buildings.rnIn the case of advanced technological buildings, a meaningful contribution to the thermal loads and the energy consumptions reduction could depend on the correct configuration and management of the envelope systems. In recent years, the architectural trend toward highly transparent all-glass buildings presents a unique challenge and opportunity to advance the market for emerging, smart, dynamic window and dimmable daylighting control technologies (Lee et al., 2004).rnA prototype dynamic glazing system was developed and tested at ITC-CNR; it is aimed at actively responding to the external environmental loads. Both an experimental campaign and analyses by theoretical models were carried out, aimed at evaluating the possible configurations depending on different weather conditions in several possible places. Therefore, the analytical models of the building-plant system were defined by using a dynamic energy simulation software (EnergyPlus).rnThe variables that determine the system performance, also influenced by the boundary conditions, were analysed, such as U- and g-value; they concern both the morphology of the envelope system, such as dimensions, shading and glazing type, gap airflow thickness, in-gap airflow rate, and management, in terms of control algorithm parameters tuning fan and shading systems, as a function of the weather conditions.rnThe configuration able to provide the best performances was finally identified by also assessing such performances, integrating the dynamic system in several building types and under different weather conditions.rnThe dynamic envelope system prototype has become a commercial product with some applications in facade systems, curtain walls and windows.rnThe paper describes the methodological approach to prototype development and the main results obtained, including simulations of possible applications on real buildings.
机译:空调能耗的减少是提高建筑物能效时要采取的主要指标之一。对于先进技术的建筑物,对热负荷和能耗的减少做出有意义的贡献可能取决于正确的方法。信封系统的配置和管理。近年来,高度透明的全玻璃建筑的建筑趋势提出了独特的挑战和机遇,以推动新兴,智能,动态窗户和可调光采光控制技术的市场发展(Lee et al。,2004)。是在ITC-CNR上开发和测试的;它旨在积极应对外部环境负荷。进行了实验活动和理论模型分析,旨在根据几个可能地方的不同天气条件评估可能的配置。因此,使用动态能量模拟软件(EnergyPlus)定义了建筑系统的分析模型。rn分析了确定系统性能的变量,这些变量还受边界条件的影响,例如U值和g值;他们关注包络系统的形态,例如尺寸,阴影和玻璃类型,间隙气流厚度,间隙内气流速率和管理,这取决于控制算法参数,根据天气情况调节风扇和遮光系统最后,通过评估性能,最终确定了能够提供最佳性能的配置,并将动态系统集成到了多种建筑类型中并在不同的天气条件下进行了测试。动态围护系统原型已经成为一种商业产品,在立面系统中具有某些应用,本文描述了原型开发的方法学方法和获得的主要结果,包括对实际建筑中可能应用的模拟。

著录项

  • 来源
    《Solar Energy》 |2010年第4期|p.526-537|共12页
  • 作者

    R. Lollini; L. Danza; I. Meroni;

  • 作者单位

    Institute for Renewable Energy, EURAC Research, Viale Druso 1, I-39100 Bolzano, Italy;

    ITC-CNR, Construction Technologies Institute - Italian National Research Council, Via Lombardia, 49 - 20098 San Giuliano Milanese (MI), Italy;

    ITC-CNR, Construction Technologies Institute - Italian National Research Council, Via Lombardia, 49 - 20098 San Giuliano Milanese (MI), Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dynamic envelope; energy efficiency; ventilated window;

    机译:动态包络能源效率;通风窗;

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