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Geospatial analysis of water and nutrient transport in two northern Colorado mixed-landuse watersheds.

机译:科罗拉多州北部两个混合土地流域的水和养分运移的地理空间分析。

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摘要

This study examines the effect of different sources, transport pathways, and hydrologic regimes on phosphorus concentrations along a pristine-urban-agricultural gradient. A total of 48 sampling locations were monitored to characterize total phosphorus concentrations in the Cache la Poudre River Watershed in Northern Colorado. The comprehensive design of sampling locations aimed to capture the influence of anthropogenic activities and geospatial heterogeneity. Samples were collected at seven points in time with distinct climatic and hydrologic characteristics from April 2010 to February 2011. A geographic information system (GIS) was used to measure the overland, irrigation ditch, and stream/river distances from the sources to sampling locations. Analysis of variance, non-linear regression, and multiple linear regression models were used in combination to explore the co-variation of phosphorus concentrations with capacities of upstream WWTPs and CAFOs, along with other geospatial factors. It was evident, under all hydrologic conditions, that phosphorus concentrations downstream from WWTPs were significantly higher than the concentrations upstream of the facilities. Transport from WWTPs governed phosphorus concentrations in surface water during dry and low flow conditions, whereas contribution of CAFOs was significant during rainfall events. The total flow distance (a function of overland, irrigation ditch, and stream/river distances) from CAFOs to the sample locations was strongly associated with phosphorus concentrations during precipitation events. The results of this study provide the foundation for creating a decision support system for water quality analysis, monitoring, and management in the Poudre River basin and other similar mixed-land use watersheds.;After examining the Poudre River watershed, a thorough investigation of Boxelder Creek basin was executed. The objectives were to gain an understanding of the geospatial heterogeneity and hydrologic complexity of the watershed using available data, aerial photography, and ground truthing and to develop a model that could accurately simulate the hydrology and nutrient routing in the watershed. Modeling the system using a simplified method for irrigation produced simulated results that were inconsistent with observed flow measurements. These results seem to indicate that irrigation ditches play a vital role in the hydrologic cycle of the basin. Previous studies indicate that watersheds in the study region can be accurately modeled; and although stream flow was not adequately simulated, the model did perform better when estimating total phosphorus concentrations. Therefore, future studies attempting to model basins containing irrigation ditches, like Boxelder Creek basin, should incorporate methods for representing the channels and their various interactions with the natural system. Routing irrigation canals through the watershed, along with irrigation and manure application methods described in this study, should improve the feasibility of modeling the heterogeneity of mixed landuse watersheds.
机译:这项研究检查了不同来源,运输途径和水文制度对沿原始-城市-农业梯度的磷浓度的影响。监测了总共48个采样点,以表征北科罗拉多州的Cache la Poudre河流域中的总磷浓度。采样位置的综合设计旨在捕获人为活动和地理空间异质性的影响。从2010年4月至2011年2月,在七个时间点采集了具有明显气候和水文特征的样品。使用地理信息系统(GIS)测量了从源头到采样地点的陆地,灌溉沟渠和河流/河流的距离。结合使用方差分析,非线性回归和多元线性回归模型来研究磷浓度与上游污水处理厂和CAFO的容量以及其他地理空间因素的协变。显然,在所有水文条件下,污水处理厂下游的磷浓度都明显高于设施上游的磷浓度。在干燥和低流量条件下,污水处理厂的运输控制了地表水中的磷浓度,而在降雨事件中,CAFO的贡献非常明显。从CAFO到样品位置的总流动距离(是陆上,灌溉沟渠和河流/河流距离的函数)与降水事件期间的磷浓度密切相关。该研究结果为在Poudre河流域和其他类似的混合土地利用流域建立水质分析,监测和管理决策支持系统提供了基础。在检查Poudre河流域之后,对Boxelder进行了彻底调查小溪盆地被处决。目的是利用现有数据,航拍和地面实况了解流域的地理空间异质性和水文复杂性,并开发一个可以准确模拟流域水文和养分路径的模型。使用简化的灌溉方法对系统进行建模会产生与观察到的流量测量结果不一致的模拟结果。这些结果似乎表明,灌溉沟渠在流域的水文循环中起着至关重要的作用。先前的研究表明,可以对研究区域中的流域进行精确建模。尽管没有对流量进行充分的模拟,但在估算总磷浓度时,该模型的性能确实更好。因此,未来的研究试图对包含灌溉沟渠的盆地进行建模,例如Boxelder Creek盆地,应纳入代表河道及其与自然系统的各种相互作用的方法。通过该流域布置灌溉渠,以及本研究中所述的灌溉和粪肥施用方法,应提高对混合土地利用流域非均质性进行建模的可行性。

著录项

  • 作者

    Cowley, Cortney A.;

  • 作者单位

    Colorado State University.;

  • 授予单位 Colorado State University.;
  • 学科 Hydrology.;Engineering Environmental.;Water Resource Management.;Engineering Geological.
  • 学位 M.S.
  • 年度 2011
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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