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Comparison between cork-based and conventional green roof solutions

机译:基于软木和传统绿色屋顶解决方案的比较

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摘要

Green roofs are increasingly being used to improve the energy balance and stormwater management of buildings. This work examines the thermal behaviour, water drainage and vegetation growth of two green roof systems: a conventional system containing extruded polystyrene and polyethylene, and an alternative cork-based system. In the new system, an eco-friendly expanded cork layer is used to provide thermal resistance and water storage capacity in a more sustainable way, as cork is a natural material. This material can also be used as an uncoated finishing layer for architectural purposes.The main goal of this work was to see if the new system is reliable in real environmental conditions and to compare its behaviour to that of the conventional system for a full year. This work presents the results of a fully functioning prototype built in Portugal with a technical substrate 10 cm thick and planted with a variety of vegetation. The reference and proposed systems were installed side by side and monitored under spring, summer, autumn and winter conditions.The thermal insulation and the water drainage and storage capacity provided by the cork-based green roof were found to be similar to those of the reference solution, with the expanded cork layer showing a more marked temperature delay and a more effective management of rainfall events under dry conditions. Additionally, it was found that the growth and health of plants in the cork-based green roof were comparable to those of the reference solution, indicating the good performance of the cork system.
机译:绿色屋顶越来越多地用于改善建筑物的能量平衡和雨水管理。这项工作探讨了两个绿色屋顶系统的热行为,排水和植被生长:含有挤出聚苯乙烯和聚乙烯的常规系统,以及替代软木塞的系统。在新系统中,一种环保的扩展软木层用于以更可持续的方式提供热阻和储水能力,因为软木是一种天然材料。这种材料也可以用作架构目的的未涂层精加工层。这项工作的主要目标是看新系统是否在真实环境条件下可靠,并将其行为与传统系统的行为进行比较整整一年。这项工作介绍了在葡萄牙内置的完全运行原型的结果,其技术基板10厘米厚,种植各种植被。参考和建议的系统并排安装并在春季,夏季,秋季和冬季条件下监控。发现基于软木的绿色屋顶提供的保温和排水和存储容量与参考文献相似溶液,膨胀软木层,显示出更明显的温度延迟,在干燥条件下更有效地进行降雨事件。此外,发现软木塞的绿色屋顶植物的生长和健康与参考溶液的植物的生长和健康状况相当,表明软木塞的良好性能。

著录项

  • 来源
    《Building and Environment》 |2020年第5期|106812.1-106812.18|共18页
  • 作者单位

    Itecons Inst Res & Technol Dev Construct Energy E Rua Pedro Hispano P-3030289 Coimbra Portugal|Univ Coimbra Dept Civil Engn FCTUC ADAI LAETA 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 MIT Portugal Program Sustainable Energy Syst Coimbra Portugal;

    Itecons Inst Res & Technol Dev Construct Energy E Rua Pedro Hispano P-3030289 Coimbra Portugal|Univ Coimbra Dept Civil Engn FCTUC ADAI LAETA 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;

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

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

    Green roof; Insulation cork board; Thermal behaviour; Water drainage and storage; Vegetation response; Winter and summer experimental campaign;

    机译:绿色屋顶;绝缘软木板;热行为;排水和储存;植被反应;冬季和夏季实验活动;
  • 入库时间 2022-08-18 21:37:11

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