首页> 外文学位 >Mitigation of Urban Storm Water Runoff Through Application of Computational Fluid Dynamics =F?rb?ttrad Hantering av Urbant Dagvattenfl?de i Gr?na tak Genom Anv?ndning av Numeriska Ber?kningsverktyg
【24h】

Mitigation of Urban Storm Water Runoff Through Application of Computational Fluid Dynamics =F?rb?ttrad Hantering av Urbant Dagvattenfl?de i Gr?na tak Genom Anv?ndning av Numeriska Ber?kningsverktyg

机译:通过应用计算流体动力学减少城市雨水径流 = 通过使用数值计算工具改进绿色屋顶中城市雨水径流的管理

获取原文
获取原文并翻译 | 示例

摘要

This thesis covers computational methods for improving the ability of green roofs to mitigate storm water runoff in urban environments. Roofs with living vegetation, known as green roofs, have been used for this purpose however quantification of their ability to slow and stop rainfall runoff has not been undertaken to a large degree. In this work two different approaches are taken: i) to improve green roof performance by optimizing their location on a building facade; and ii) to optimize the design of the growth substrate by examining the impact of the porous microstructure on infiltrating flow. The approach for optimization by placement makes use of traditional computational fluid dynamics and applies a full turbulence model to an Eulerian multiphase system consisting of a steady-state wind phase and a set of transient rainfall phases. The rainfall phases are determined by droplet size and the quantity incident upon the building facade is calculated and compared to experimental results. The analysis shows that the accuracy varies widely dependent upon location upon the structure and several sources of error are discussed. The second approach makes use of the lattice Boltzmann technique to aid in the deisgn of the growth substrate. Several representative porous media are generated using monodisperse randomly packed particles and gravity-driven infiltration is tracked from an initialized standing water height above the porous subdomain. Many aspects of the flow and properties of the microstructure are analyzed and conclusions are drawn based upon such factors as interfacial area, saturation rate, capillary pressure, and pore size distribution. Guidelines are drawn to aid in the design of thin homogeneous growth substrates based upon the findings. These ideal cases are compared to simulations performed on XMT scans of real growth substrate material and some conclusions are drawn on the observed differences.
机译:本论文涵盖了提高绿色屋顶在城市环境中减轻雨水径流能力的计算方法。带有活植被的屋顶,称为绿色屋顶,已被用于此目的,但尚未在很大程度上量化其减缓和阻止降雨径流的能力。在这项工作中,采用了两种不同的方法:i) 通过优化它们在建筑物立面上的位置来提高绿色屋顶的性能;ii) 通过检查多孔微观结构对浸润流的影响来优化生长基质的设计。通过放置进行优化的方法利用传统的计算流体动力学,并将完整的湍流模型应用于由稳态风相和一组瞬态降雨相组成的欧拉多相系统。降雨阶段由液滴大小决定,计算入射到建筑物立面上的量并与实验结果进行比较。分析表明,精度因位置而异,具体取决于结构,并讨论了几个误差来源。第二种方法利用晶格玻尔兹曼技术来帮助设计生长基质。使用单分散随机堆积颗粒生成几种具有代表性的多孔介质,并从多孔子域上方的初始化静水高度跟踪重力驱动的渗透。分析了微观结构的流动和性质的许多方面,并根据界面面积、饱和速率、毛细管压力和孔径分布等因素得出结论。根据研究结果得出指南以帮助设计薄的均匀生长基质。将这些理想情况与对真实生长衬底材料的 XMT 扫描进行的模拟进行了比较,并根据观察到的差异得出了一些结论。

著录项

  • 作者

    Pettersson, Kaj.;

  • 作者单位

    Chalmers Tekniska Hogskola (Sweden).;

    Chalmers Tekniska Hogskola (Sweden).;

    Chalmers Tekniska Hogskola (Sweden).;

  • 授予单位 Chalmers Tekniska Hogskola (Sweden).;Chalmers Tekniska Hogskola (Sweden).;Chalmers Tekniska Hogskola (Sweden).;
  • 学科 Roofing.;Design.;Rain.;Stormwater.
  • 学位
  • 年度 2021
  • 页码 134
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Roofing.; Design.; Rain.; Stormwater.;

    机译:屋顶。;设计。;雨。;雨水。;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号