泰国清迈雨水管理的雨水花园设计:通过设计的研究

C. Wanitchayapaisit, P. Suppakittpaisarn, N. Charoenlertthanakit, V. Surinseng, E. Yaipimol, D. Rinchumphu
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引用次数: 2

摘要

传统的雨水管理可能会造成长期的环境问题。幸运的是,水敏感型城市设计(WSUD)可以更可持续地管理雨水。然而,缺乏WSUD元素的设计实例,例如泰国地理和文化背景下的雨花园。本研究调查了适合清迈城市地区的雨花园设计模式,并在清迈城市环境中开发了雨花园设计过程的示例和原型。本研究采用了设计研究方法(RDM),在缩小研究与应用之间的差距方面具有很大的潜力。研究人员在清迈大学农学院选择了这个地点。他们用当地的兰纳植物设计了2个雨水花园的示意图。然后,他们通过自然资源和保护服务(NRCS)曲线数方法将雨水容量与现有站点进行比较。设计结果由利益相关者和设计专家进行评估,以弥合国际标准和当地环境之间的差距。我们发现1)场地的西侧最适合发展试点项目。2)两种设计原理图的表现都优于原始站点。3)利益相关者和设计专家看到了场地的潜力,但对其实际性能、维护、规模和安全性存在担忧。本文提供了一个雨水花园设计过程的实例,可以作为未来雨水花园设计和水敏感型城市设计的基准。
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Rain garden design for stormwater management in Chiang Mai, Thailand: A Research-through-Design Study
Conventional stormwater management may cause long term environmental issues. Fortunately, Water Sensitive Urban Design (WSUD) can manage stormwater more sustainably. However, the design examples of WSUD elements, such as rain gardens within the geographical and cultural context of Thailand are lacking. This study investigated the patterns of rain garden design suitable for urban areas in Chiang Mai and developed examples of rain garden design processes and prototypes in an urban context for Chiang Mai.  This research used the Research by design Method (RDM), which has great potential in bridging the gap between research and application. The researchers selected the site at the Faculty of Agriculture, Chiang Mai University. They designed 2 schematics of rain gardens with local Lanna plants. Then, they compared stormwater capacity with the existing site via the Natural Resources and Conservation Service (NRCS) Curve Number Method. The design results were evaluated by stakeholders and design experts to bridge the gaps between international standards and local contexts.   We found that 1) the west side of the site was most appropriate to develop the pilot project. 2) Both design schematics performed better than the original site. 3) Stakeholders and design experts see the potential of the site, but had concerns regarding its actual performance, maintenance, scale, and safety. This paper offers and provides an example of the rain garden design process which can be used as a baseline for future designs of rain garden and water sensitive urban designs.
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