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Depression storage capacities of different ideal pavements as quantified by a terrestrial laser scanning-based method

机译:通过地面激光扫描方法量化的不同理想路面的凹陷存储量

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Rainfall partition on paved urban surfaces is governed to a great extent by depression storage. This is especially the case for small rainfall events, which are often ignored in urban hydrology. If storage, infiltration and evaporation (important for urban heat island mitigation), rather than storm water runoff, are of interest, high-resolution simulations with exact values for depression storage capacities are required. Terrestrial laser scanners deliver fast, high-resolution surveys of pavement surface morphology. The depression storage capacity can be quantified from 3D points by generating digital elevation models and applying cut-and-fill algorithms in a geographic information system. The method was validated using a test model. It was possible to quantify depressions with a depth of at least 1.4 x 10(-3) m and a surface of at least 15 x 10(-6) m(2) with an uncertainty below 30%. Applying this method, the depression storage capacities for 11 ideal, typical pavement designs were found to vary from 0.07 to 1.4 mm. Realistic urban pavements must also be surveyed, as cracks and puddles from their use history can have a major impact on the depression storage capacities and thus on infiltration, evaporation and, finally, the annual run-off.
机译:铺装的城市表面上的降雨分配在很大程度上受凹陷存储的支配。对于小降雨事件尤其如此,在城市水文学中通常忽略不计。如果感兴趣的是存储,入渗和蒸发(对于缓解城市热岛效应很重要),而不是雨水径流,则需要高分辨率模拟,并需要精确的凹陷存储容量值。地面激光扫描仪可提供快速,高分辨率的路面表面形态调查。通过生成数字高程模型并在地理信息系统中应用填挖算法,可以从3D点量化凹陷的存储量。使用测试模型验证了该方法。可以量化深度至少为1.4 x 10(-3)m且表面至少为15 x 10(-6)m(2)的凹陷,不确定度低于30%。应用这种方法,发现11种理想的典型路面设计的凹陷存储量在0.07至1.4 mm之间变化。还必须对现实的城市人行道进行调查,因为使用历史中的裂缝和水坑可能会对凹陷的蓄水量产生重大影响,进而对渗透,蒸发和最终的年度径流产生重大影响。

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