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The experimental and educational rain gardens of the Agripolis Campus (north-east Italy): preliminary results on hydrological and plant behavior

机译:Agripolis校园的实验和教育雨园(意大利东北部):水文和植物行为的初步结果

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摘要

In most urbanized areas stormwater runoff, flowing on impervious surfaces, can increase the risk of floods and overload of drainage systems. Landscape designers may contribute to the mitigation of the problem by incorporating appropriate solutions inthe design of green spaces. Rain gardens are green infrastructures that can contribute to more sustainable urban development. Since 2011, an experiment has been carried out at the University of Padova with the aim to assess the use of rain gardens for asustainable management of the stormwater runoff. Two circular rain gardens with herbaceous perennials, differently sized and equipped with TDR soil moisture sensors, were designed and built to intercept equal amounts of runoff draining from a building roof with an area of 215 m2. The experiment consisted of testing the capacity of intercepting runoff caused by storm of different magnitude, in measuring the dynamics of water in the topsoil after the rainfall events and in evaluating the growth and aesthetic quality of the different plant species used. Input and output water volumes were measured and actual ET was estimated using WUCOLS Landscape Coefficient Methods. Results of the preliminary phase showed that both the rain gardens were able to satisfactorily manage the roof runoff, which was taken off the urban drainage system, with a good aesthetic result.
机译:在大多数城市化领域的雨水径流,在不透水的表面流动,可以增加排水系统洪水和过载的风险。景观设计人员可以通过纳入适当的绿色空间的设计来促进问题的缓解。雨园是绿色基础设施,可以为更可持续的城市发展做出贡献。自2011年以来,帕瓦大学进行了一个实验,旨在评估利用雨水花园对雨水径流的荒北。两个圆形雨水花园具有草本多年生植物,不同的大小和配备TDR土壤湿度传感器,以拦截来自建筑屋顶的平等数量的径流,面积为215平方米。该实验包括测试拦截跨越不同幅度的径流的能力,在降雨事件之后测量TOPSOIL中水动力学以及评估所用植物种类的生长和美学质量。测量输入和输出水量,并使用沃克斯景观系数方法估计实际等。初步阶段的结果表明,雨水花园都能够令人满意地管理屋顶径流,从而脱离城市排水系统,具有良好的审美结果。

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