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In-Stream Temperature Modeling to Evaluate Potential Management Practices along the Speed River, Southern Ontario

机译:流中温度建模,以评估沿着安大略省南部速度河流的潜在管理实践

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The temperature of the Speed River near the City of Guelph in Southern Ontario is affected by an upstream reservoir, urban runoff, reduced baseflows, in-stream impoundments and development of riparian areas. Mitigating stream temperature increases in this system is desirable because of the direct effects of increased temperature on aquatic organisms but also because of the relationship between stream temperature and dissolved oxygen solubility. Dissolved oxygen levels downstream of the City’s wastewater treatment plant are of particular concern despite high levels of treatment at the plant. Identification of other, less costly, means to sustain acceptable dissolved oxygen levels in the Speed River, in conjunction with nutrient control, would be of interest. The Stream Network Temperature Model (SNTEMP) was linked to a hydrologic watershed model (GAWSER) and applied to the study area to obtain preliminary predictions of the effects of various management practices on the thermal regime of the Speed River. A network of stream temperature loggers was used to calibrate the stream temperature model and identify specific locations on which to focus management efforts. Management practices evaluated were increased riparian vegetation, increased flows from an upstream reservoir, removal of existing in-stream impoundments and decreased stream width. Improvement of the performance of the model is desired along with application of a stream temperature model with a finer temporal resolution.
机译:安大略省南部圭尔夫市附近的速度河流的温度受上游水库,城市径流,减少北面的溪流,流域蓄水和河岸地区的发展。由于在水生生物上增加了温度,因此可以提高这种系统中的气液温度增加是理想的,而且是因为流温度与溶解氧溶解度之间的关系。尽管植物治疗较高,但该城市废水处理厂下游的溶解氧水平特别关注。鉴定其他,较低的昂贵,意味着在速度河流中维持可接受的溶解氧水平,与营养控制相结合将是有意义的。流网络温度模型(SNTEMP)与水文流域模型(GAWSER)连接,并应用于研究区域,以获得各种管理实践对速度河流热制度的影响的初步预测。流温度记录器网络用于校准流温度模型,并识别要对焦管理努力的特定位置。评估的管理措施增加了河岸植被,从上游储层增加流量,除去现有的流蓄水中的流量并降低流宽度。期望改进模型的性能以及使用更精细的时间分辨率的流温度模型。

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