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Assessing the impacts of hydrologic and land use alterations on water temperature in the Farmington River basin in Connecticut

机译:评估水文和土地利用改变对康涅狄格州农田河流域水温的影响

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Aquatic ecosystems can be significantly altered by the construction of dams and modification of riparian buffers, and the effects are often reflected in spatial and temporal changes to water temperature. To investigate the implications for water temperature of spatially and temporally varying riparian buffers and dam-induced hydrologic alterations, we have implemented a modeling system (DHSVM-RBM) within the framework of the state-space paradigm that couples a spatially distributed land surface hydrologic model, DHSVM, with the distributed stream temperature model, RBM. The basic modeling system has been applied previously to several similar-sized watersheds. However, we have made enhancements to DHSVM-RBM that simulate spatial heterogeneity and temporal variation (i.e., seasonal changes in canopy cover) in riparian vegetation, and we included additional features in DHSVM-RBM that provide the capability for simulating the impacts of reservoirs that may develop thermal stratification. We have tested the modeling system in the Farmington River basin in the Connecticut River system, which includes varying types of watershed development (e.g., deforestation and reservoirs) that can alter the streams' hydrologic regime and thermal energy budget. We evaluated streamflow and stream temperature simulations against all available observations distributed along the Farmington River basin. Results based on metrics recommended for model evaluation compare well to those obtained in similar studies. We demonstrate the way in which the model system can provide decision support for watershed planning by simulating a limited number of scenarios associated with hydrologic and land use alterations.
机译:水生生态系统可以通过建造水坝和河流缓冲液的改性来显着改变,并且效果通常反映在水温的空间和时间变化中。为了研究用于在空间和时间变化的河流缓冲液和大坝诱导的水文改变的对水温的影响,我们在状态范式范围的框架内实现了一种建模系统(DHSVM-RBM),该模型范式耦合到空间分布的陆地水表水文模型,DHSVM,具有分布式流温度模型,RBM。基本建模系统以前应用于几种类似大小的流域。但是,我们已经提高了DHSVM-RBM,用于在河岸植被中模拟空间异质性和时间变化(即季节性变化),并且我们在DHSVM-RBM中包含了额外的特征,为模拟水库的影响提供了能力可能会产生热分层。我们在康涅狄格州河流系统中测试了Farmington River盆地的建模系统,包括不同类型的流域开发(例如,砍伐森林和储层),可以改变流的水文制度和热能预算。我们评估了沿着农民顿流域分布的所有可用观测的流流程和流温度模拟。基于标准评估的度量的结果与类似研究中获得的效果相比。我们通过模拟与水文和土地利用改变相关的有限数量的情况来展示模型系统可以为流域规划提供决策支持的方式。

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