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Thermal behaviour of a green roof containing insulation cork board. An experimental characterization using a bioclimatic chamber

机译:包含绝缘软木板的绿色屋顶的热行为。使用生物气候室进行实验表征

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摘要

Green roof technology is increasingly being used to improve the energy and environmental performance of buildings. However, the description of the thermal behaviour of green roofs is very complex since it depends on several variables and relies on intricate phenomena.In this work the authors characterize a green roof system that replaces the conventional drainage and water storage polyethylene membranes with insulation cork boards (ICB). To enable the experimental characterization of this system, a double walk-in bioclimatic chamber was designed and built to recreate indoor and outdoor environmental conditions. Winter and summer environments with steady and unsteady conditions in both dry and wet states were simulated. Thermocouples and heat flux sensors were used to collect data over time from the different layers of the green roof prototypes.Measurements were first performed on a concrete slab insulated with ICB to assess the contribution of the latter to the thermal performance of the system. The effect on the heat transfer was further evaluated for systems of increasing complexity, containing first a substrate layer and then vegetation. It was noted that the substrate and vegetation layers improved the thermal insulation, and reduced heat fluxes and the thermal amplitude within the system. The vegetation layer was found to be of key importance to the overall performance of the green roof. It was also found that ICB and the substrate layers lose part of their insulation capacity when the system was wetted, although it was fully restored in the ICB layer within a few hours.
机译:越来越多地使用屋顶绿化技术来改善建筑物的能源和环境性能。然而,对绿色屋顶的热行为的描述非常复杂,因为它取决于多个变量并依赖于复杂的现象。在这项工作中,作者描述了一个绿色屋顶系统的特征,该系统用隔热软木板代替了常规的排水和蓄水聚乙烯膜(ICB)。为了能够对该系统进行实验表征,设计并建造了一个双步入式生物气候箱,以再现室内和室外环境条件。模拟了在干燥和潮湿状态下具有稳定和不稳定条件的冬季和夏季环境。使用热电偶和热通量传感器随时间收集来自屋顶绿化原型不同层的数据。首先在用ICB绝缘的混凝土板上进行测量,以评估后者对系统热性能的影响。对于复杂性不断提高的系统,要进一步评估其对热传递的影响,该系统首先包含基底层,然后包含植被。注意到衬底和植被层改善了热绝缘,并减小了系统内的热通量和热振幅。植被层对于绿色屋顶的整体性能至关重要。还发现,当系统被润湿时,ICB和基板层会失去部分绝缘能力,尽管在数小时内ICB层中的绝缘层会完全恢复。

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  • 来源
    《Building and Environment》 |2019年第8期|106179.1-106179.11|共11页
  • 作者单位

    ITeCons Inst Res & Technol Dev Construct Energy E, Rua Pedro Hispano, P-3030289 Coimbra, Portugal|Univ Coimbra, Sustainable Energy Syst MIT Portugal Program, Coimbra, Portugal;

    ITeCons Inst Res & Technol Dev Construct Energy E, Rua Pedro Hispano, P-3030289 Coimbra, Portugal|Univ Coimbra, FCTUC, ADAI LAETA, Dept Civil Engn, Polo 2,Rua Luis Reis Santos, P-3030788 Coimbra, Portugal;

    ITeCons Inst Res & Technol Dev Construct Energy E, Rua Pedro Hispano, P-3030289 Coimbra, Portugal|Univ Coimbra, FCTUC, ADAI LAETA, Dept Civil Engn, Polo 2,Rua Luis Reis Santos, P-3030788 Coimbra, Portugal;

    NEOTURF Espacos Verdes, Rua Amoreiras 155, P-4460227 Senhora Da Hora, Portugal;

    ITeCons Inst Res & Technol Dev Construct Energy E, Rua Pedro Hispano, P-3030289 Coimbra, Portugal|Univ Coimbra, Dept Chem, Chem Ctr, Rua Larga, P-3004535 Coimbra, Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Green roof; Insulation cork board; Thermal behaviour; Bioclimatic chamber; Winter and summer simulations;

    机译:绿色屋顶;隔热软木板;热行为;生物气候室;冬季和夏季模拟;
  • 入库时间 2022-08-18 04:22:15

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