...
首页> 外文期刊>Journal of Environmental Management >Comparison Of Two Stream Temperature Models And Evaluation Of Potential Management Alternatives For The Speed River,southern Ontario
【24h】

Comparison Of Two Stream Temperature Models And Evaluation Of Potential Management Alternatives For The Speed River,southern Ontario

机译:安大略省南部Speed River的两种水流温度模型的比较和潜在管理方案的评估

获取原文
获取原文并翻译 | 示例
           

摘要

Concerns over increased water temperature of the Speed River as it flows through the City of Guelph in Southern Ontario and an observed relationship between summer stream temperatures and low dissolved oxygen levels in the river prompted an investigation into potential stream temperature management practices.Two mechanistic stream temperature models,SNTEMP and CE-QUAL-W2,were applied to the Speed River in order to gauge the effectiveness of various stream temperature management options.Calibrated versions of both models performed well (0.2℃<mean absolute error of SNTEMP<1.8 ℃; 0.5℃<mean absolute error of CE-QUAL-W2<1.4 ℃).However,CE-QUAL-W2 performed more consistently spatially and temporally.Air temperature and relative humidity were found to be the most sensitive parameters in both models.Management alternatives considered in this study included modifying discharge from upstream dams,removal of in-stream impoundments,allowing the growth of adequate riparian vegetation to provide shade,and reducing stream width during low-flow periods.Of the various management practices investigated,model results suggest that the removal of in-stream impoundments would be the most effective management alternative to reduce summer stream temperatures.Management alternatives involving removal of in-stream impoundments were projected to reduce minimum stream temperatures by up to 2.2 ℃,while those not involving the removal of in-stream impoundments were projected to reduce minimum temperatures by less than 0.5 ℃.
机译:对于高速河流经安大略省南部圭尔夫市时水温升高的担忧,以及夏季河水温度与河水中低溶解氧水平之间的观察关系,促使人们对潜在的河水温度管理方法进行了调查。为了评估各种河流温度管理方案的有效性,将SNTEMP和CE-QUAL-W2模型应用于Speed River。两个模型的校准版本均表现良好(0.2℃<SNTEMP的平均绝对误差<1.8℃; 0.5。 ℃<CE-QUAL-W2的平均绝对误差<1.4℃)。但是,CE-QUAL-W2在空间和时间上的表现更为一致。在两个模型中,空气温度和相对湿度是最敏感的参数。这项研究包括修改上游大坝的排水,清除河道蓄水,允许生长足够的河岸植被以提供遮荫。在研究的各种管理实践中,模型结果表明,去除河内蓄水量将是降低夏季河水温度的最有效的管理选择。预计河水蓄水库可使最低水流温度降低2.2℃,而不涉及去除河内蓄水库的水流环境将使最低水温降低不到0.5℃。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号