Application of a Fine-Scale Modeling Approach to Assess Broad-Scale Changes in Stream Salmonid Habitat in a Changing Climate
Author:
Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-44389-3_20
Reference99 articles.
1. Acharya A, Piechota TC, Tootle G (2012) Quantitative assessment of climate change impacts on the hydrology of the North Platte River watershed, Wyoming. J Hydrol Eng 17:1071–1083
2. Ahmadi-Nedushan B, St-Hilaire A, Ouarda TBMJ et al (2007) Predicting river water temperature using stochastic models: case study of the Moisie River (Quebec, Canada). Hydrol Process 21:21–34
3. Alder JR, Hostetler SW, Pollard D et al (2011) Evaluation of a present-day climate simulation with a new coupled atmosphere-ocean model GENMOM. Geosci Model Dev 4:69–83
4. Allan JD (2004) Landscapes and riverscapes: the influence of land use on stream ecosystems. Annu Rev Ecol Evol S 35:257–284
5. Arismendi I, Johnson SL, Dunham JB et al (2012) The paradox of cooling streams in a warming world: regional climate trends do not parallel variable local trends in stream temperature in the Pacific continental United States. Geophys Res Lett 39:L10401
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