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首页> 外文期刊>The Science of the Total Environment >A spatial planning-support system for generating decentralised urban stormwater management schemes
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A spatial planning-support system for generating decentralised urban stormwater management schemes

机译:用于产生分散的城市雨水管理计划的空间规划 - 支持系统

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摘要

Current Water Sensitive Urban Design (WSUD) models are either purely technical or overly simplified, lacking consideration of urban planning and stakeholder preferences to adequately support stakeholders. We developed the Urban Biophysical Environments and Technologies Simulator (UrbanBEATS), which integrates stormwater management with urban planning to support the design and implementation of WSUD. This study specifically describes and tests UrbanBEATS' WSUD Planning Module, which combines spatial analysis, infrastructure design, preference elicitation and Monte Carlo methods to generate feasible stormwater management and harvesting infrastructure options in greenfield and existing urban environments. By applying UrbanBEATS to a real-world greenfield development case study in Melbourne, Australia (with data sourced from the project's water management plans and design consultants), we explore the variety of options generated by the model and analyse them collectively to demonstrate that UrbanBEATS can design similar WSUD systems (e.g. select suitable technology types, their sizes and locations) to actual infrastructure choices.
机译:目前的水敏感城市设计(WSUD)型号纯粹是技术或过度简化的,缺乏对城市规划和利益相关者的偏好来充分支持利益攸关方。我们开发了城市生物物理环境和技术模拟器(Urbanbeats),其与城市规划集成了雨水管理,以支持WSUD的设计和实施。本研究专门描述和测试UriseBeats的WSUD计划模块,该模块结合了空间分析,基础设施设计,偏好精英和Monte Carlo方法,以在格林菲尔德和现有的城市环境中产生可行的雨水管理和收获基础设施选项。通过将Urbanbeats应用于澳大利亚墨尔本的真实绿地开发案例研究(通过从项目的水管理计划和设计顾问提供的数据),我们探讨了模型产生的各种选择,并共同分析了它们,以证明城市碧眼的展示可以设计类似的WSUD系统(例如选择合适的技术类型,大小和位置)到实际的基础架构选择。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第jul15期|138282.1-138282.16|共16页
  • 作者单位

    Swiss Federal Institute of Aquatic Science & Technology (Eawag) UEberlandstrasse 133 8600 Duebendorf Switzerland Institute of Environmental Engineering ETH Zuerich 8093 Zuerich Switzerland Monash Infrastructure Research Institute Civil Engineering Department Monash University Clayton VIC 3800 Australia;

    Swiss Federal Institute of Aquatic Science & Technology (Eawag) UEberlandstrasse 133 8600 Duebendorf Switzerland School of Civil and Environmental Engineering University of New South Wales Sydney NSW 2052 Australia;

    Monash Infrastructure Research Institute Civil Engineering Department Monash University Clayton VIC 3800 Australia Environmental and Public Health Microbiology (EPHM) Laboratory Monash University Clayton VIC 380 Australia;

    School of Civil and Environmental Engineering University of New South Wales Sydney NSW 2052 Australia;

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

    Integrated urban water modelling; Water sensitive urban design (WSUD); Low impact development (LID); Stakeholder preferences; Options generation; Exploratory modelling;

    机译:综合城市水造型;水敏感的城市设计(WSUD);低影响开发(盖子);利益相关者偏好;选项生成;探索性建模;

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