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Development of a confined water sensitive urban design (WSUD) system using engineered soils

机译:使用工程土壤开发密闭水敏感城市设计(WSUD)系统

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Innovative Water Sensitive Urban Design (WSUD) systems are being investigated at three locations to the north and south of Sydney, Australia. These systems contain porous concrete pipes that are designed so that stormwater exfiltrates through the permeable walls of the pipes into the surrounding substrate media material. The porous pipes and media material treat the passing stormwater. The primary aim of the overall project is to develop a model to describe the treatment effectiveness of confined WSUD systems. This paper focuses on the system located at the Weathertex Industrial Site, Heatherbrae. Due to wood processing operations that occur at this site, it is recognised that the surface runoff will carry a heavy organics loading. Granulated Activated Carbon (GAC) is recognised for its ability to reduce the concentration of dissolved organics present in both wastewater and stormwater. GAC was therefore chosen as a filtration medium to be investigated at this site. To maximise the effectiveness of the GAC, extensive laboratory batch studies were undertaken prior to the field system being constructed to determine the optimum GAC/sand ratio. The purpose of the experimental work was to assess the dissolved organic removal potential through sorption of various concentrations of GAC. The aim of this paper is to describe these laboratory experiments and discuss how they related to the field system. Through these experiments it was determined that a sand/GAC ratio of 25:1 was ideal for the media material at the Heatherbrae site.
机译:在澳大利亚悉尼北部和南部的三个地点,正在研究创新的水敏感城市设计(WSUD)系统。这些系统包含设计的多孔混凝土管,以使雨水通过管的可渗透壁渗入周围的基材介质材料中。多孔管和介质材料可处理通过的雨水。整个项目的主要目的是开发一个模型来描述受限WSUD系统的处理效果。本文重点介绍位于Heatherbrae的Weathertex工业基地的系统。由于在该地点进行的木材加工操作,已认识到地表径流将承载大量有机物。粒状活性炭(GAC)具有降低废水和雨水中溶解的有机物浓度的能力,因此得到公认。因此,GAC被选为该地点要研究的过滤介质。为了最大化GAC的有效性,在构建现场系统之前进行了广泛的实验室批处理研究,以确定最佳的GAC /砂比。实验工作的目的是通过吸收各种浓度的GAC来评估溶解的有机去除潜能。本文的目的是描述这些实验室实验,并讨论它们与现场系统之间的关系。通过这些实验,可以确定,对于Heatherbrae现场的介质材料,理想的砂/ GAC比为25:1。

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