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首页> 外文期刊>Hydrological Processes >Tile drainage causes flashy streamflow response in Ohio watersheds
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Tile drainage causes flashy streamflow response in Ohio watersheds

机译:瓷砖排水导致俄亥俄州流域的华而不实的流流反应

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Artificial subsurface (tile) drainage is used to increase trafficability and crop yield in much of the Midwest due to soils with naturally poor drainage. Tile drainage has been researched extensively at the field scale, but knowledge gaps remain on how tile drainage influences the streamflow response at the watershed scale. The purpose of this study is to analyse the effect of tile drainage on the streamflow response for 59 Ohio watersheds with varying percentages of tile drainage and explore patterns between the Western Lake Erie Bloom Severity Index to streamflow response in heavily tile-drained watersheds. Daily streamflow was downloaded from 2010 to 2019 and used to calculated mean annual peak daily runoff, mean annual runoff ratio, the percent of observations in which daily runoff exceeded mean annual runoff (T-Qmean), baseflow versus stormflow percentages, and the streamflow recession constant. Heavily-drained watersheds (40% of watershed area) consistently reported flashier streamflow behaviour compared to watersheds with low percentages of tile drainage (15% of watershed area) as indicated by significantly lower baseflow percentages, T-Qmean, and streamflow recession constants. The mean baseflow percent for watersheds with high percentages of tile drainage was 20.9% compared to 40.3% for watersheds with low percentages of tile drainage. These results are in contrast to similar research regionally indicating greater baseflow proportions and less flashy hydrographs (higher T-Qmean) for heavily-drained watersheds. Stormflow runoff metrics in heavily-drained watersheds were significantly positively correlated to western Lake Erie algal bloom severity. Given the recent trend in more frequent large rain events and warmer temperatures in the Midwest, increased harmful algal bloom severity will continue to be an ecological and economic problem for the region if management efforts are not addressed at the source. Management practices that reduce the streamflow response time to storm events, such as buffer strips, wetland restoration, or drainage water management, are likely to improve the aquatic health conditions of downstream communities by limiting the transport of nutrients following storm events.
机译:由于具有自然差的排水的土壤,人为地下(瓷砖)排水用于增加中西部大部分中西部的交通性和作物产量。瓦片排水已经广泛地研究了现场规模,但知识差距仍然存在如何在平坦尺度下影响流流响应。本研究的目的是分析瓷砖排水对59俄亥俄州流域的流出响应的影响,各种瓷砖排水百分比和西湖伊利绽放严重指数之间的探索模式,以便在重型瓦片排水流域中流出响应。每日Streamflow从2010年到2019年下载,习惯于计算平均年高峰每日径流,平均径流比率,日常径流超过平均年径流(T-Qmean),Baseflow与Stormflow百分比,以及Stream流衰退的百分比持续的。与具有低百分比的瓷砖百分比,T-qmean和Stream流程表示,宽度排出的流域(& 40%的流域区域)始终如一地报告了闪光灯流动行为(& 15%的流域区域)。经济衰退常量。流域的平均基流百分比为瓷砖排水量高20.9%,而具有低百分比瓦片排水的流域的40.3%。这些结果与具有较大的基础比例和较少的浮出水性流域(更高的T-qmean)的类似研究形成对比。暴排水流域的风暴流出度量与西湖伊利藻类绽放严重程度显着呈正相关。鉴于最近在中西部的更频繁的大雨事件和温暖温度的趋势,如果管理努力未解决该地区,该地区的有害藻类盛开严重程度的增加将继续成为生态和经济问题。通过限制风暴事件后营养的运输,减少风暴事件的管理实践,例如缓冲区,湿地修复或排水管理,例如通过限制营养物质的运输来改善下游社区的水生健康状况。

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