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首页> 外文期刊>Transactions of the ASABE >A comprehensive modeling approach for reservoir water quality assessment and management due to point and nonpoint source pollution. (Special Issue: Soil and water assessment tool (SWAT) modeling technology: current status.)
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A comprehensive modeling approach for reservoir water quality assessment and management due to point and nonpoint source pollution. (Special Issue: Soil and water assessment tool (SWAT) modeling technology: current status.)

机译:用于点源和非点源污染的水库水质评估和管理的综合建模方法。 (特刊:水土评估工具(SWAT)建模技术:当前状态。)

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摘要

A comprehensive modeling approach has been developed for use in formulating a watershed management plan to improve the water quality of Cedar Creek reservoir, one of five large water supply reservoirs in north central Texas operated by Tarrant Regional Water District. Eutrophication, or specifically the increase in concentrations of chlorophyll-a (chl'a') over the last 18 years, is a major concern for the water managers. To develop a watershed management plan, the watershed model SWAT was linked with the lake eutrophication model WASP. Several intensive field campaigns and surveys were conducted to collect extensive water quality and land management data for model setup and calibration. In addition to the streamflow, the SWAT model was well calibrated for sediment (including channel erosion) and nutrients. Further, a simple modification to the SWAT in-stream routine allowed simulation of the nutrient load due to channel erosion. The in-stream water quality parameters for SWAT were based on an independent QUAL-2E model calibration. The calibrated SWAT model showed that more than 85% of the total N and total P loading to the lake are from watershed nonpoint sources. Although cropland occupies only 6% of the watershed area, it contributed more than 43% of the sediment, 23% of total N, and 42% of total P loading from the watershed. The channel erosion contributed about 35% of the total sediment load. The watershed model identified subbasins that contribute considerable amounts of sediment and nutrients. Based on these loads, the calibrated WASP model showed that the watershed nonpoint-source nutrient load (total N and total P) should be reduced by at least 35% to see a significant reduction in chl'a' concentrations when compared to the WASP calibration levels.
机译:已经开发出一种综合的建模方法,用于制定流域管理计划,以改善Cedar Creek水库的水质,Cedar Creek水库是德克萨斯州中北部五个由塔兰特地区水区运营的大型供水水库之一。富营养化,特别是过去18年中叶绿素a(chl'a')浓度的增加,是水管理者关注的主要问题。为了制定流域管理计划,将流域模型SWAT与湖泊富营养化模型WASP链接在一起。进行了几次密集的野外活动和调查,以收集广泛的水质和土地管理数据,以进行模型设置和校准。除了水流,SWAT模型还针对沉积物(包括河道侵蚀)和养分进行了很好的校准。此外,对SWAT流内例程的简单修改允许模拟由于渠道侵蚀造成的养分负荷。 SWAT的流水水质参数基于独立的QUAL-2E模型校准。校准的SWAT模型显示,湖泊中N和P的总负载量的85%以上来自流域非点源。尽管农田仅占流域面积的6%,但它贡献了流域中沉积物的43%以上,总氮量的23%和总磷量的42%。河道侵蚀占泥沙总量的35%左右。该分水岭模型确定了造成大量沉积物和养分的子流域。基于这些负载,经过校准的WASP模型表明,与WASP校准相比,流域非点源养分负载(总N和总P)应减少至少35%,以显着降低chl'a'浓度水平。

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