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Spatial Analysis of High-Resolution Radar Rainfall and Citizen-Reported Flash Flood Data in Ultra-Urban New York City

机译:纽约超城市高分辨率雷达降雨和市民报告的山洪数据的空间分析

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New York City (NYC) is an ultra-urban region, with over 50% impervious cover and buried stream channels. Traditional flood studies rely on the presence of stream gages to detect flood stage and discharge, but these methods cannot be used in ultra-urban areas. Here we create a high-resolution radar rainfall dataset for NYC and utilize citizen and expert reports of flooding throughout the city to study flash flooding in NYC. Results indicate that interactions between the urban area and land–sea boundary have an important impact on the spatial variability of both heavy rainfall and flooding, sometimes in contrast to results obtained for other cities. Top days of daily and hourly rainfall exhibit a rainfall maximum over the city center and an extended region of higher rainfall downwind of the city. The mechanism for flooding appears to vary across the city, with high groundwater tables influencing more coastal areas and high rain rates or large rain volumes influencing more inland areas. There is also a strong relationship between sewer type and flood frequency, with fewer floods observed in combined sewer areas. Flooding is driven by maximum one-hour to one-day rainfall, which is often substantially less rain than observed for the city-wide daily maximum.
机译:纽约市(NYC)是一个超城市区域,有超过50%的不透水覆盖物和掩埋的河道。传统的洪水研究依靠水位计的存在来检测洪水的阶段和流量,但是这些方法不能在超城市地区使用。在这里,我们为纽约市创建了高分辨率的雷达降雨数据集,并利用市民和专家对整个城市的洪水的报告来研究纽约市的山洪。结果表明,市区和陆海边界之间的相互作用对暴雨和洪水的空间变异性具有重要影响,有时与其他城市的结果相反。每日和每小时降雨的头几天表现出市中心范围内的最大降雨量,以及市区偏高降雨的扩展区域。整个城市的洪水泛滥机制似乎各不相同,地下水位高影响更多沿海地区,高降雨率或大雨量影响更多内陆地区。下水道的类型与洪水频率之间也存在着很强的关系,在下水道合并地区,洪水泛滥的可能性较小。一小时到一天的最大降雨量驱使洪水泛滥,这通常比全市每日最大降雨量要少得多。

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