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      Climate Change Effects on Fish Passability across a Rock Weir in a Mediterranean River

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      Water
      MDPI AG

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          Abstract

          Climate change represents a major challenge for the management of native fish communities in Mediterranean rivers, as reductions in discharge may lead to a decrease in passability through small barriers such as weirs, both in temporary and perennial rivers. Through hydraulic modelling, we investigated how discharges from a large hydropower plant in the Tagus River are expected to affect the passability of native freshwater fish species through a rock weir (Pego, Portugal), equipped with a nature-like fish ramp. We considered not only mean daily discharge values retrieved from nearby gauging stations (1991–2005) for our flow datasets, but also predicted discharge values based on climatic projections (RCP) until the end of the century (2071–2100) for the Tagus River. Results showed that a minimum flow of 3 m3 s−1 may be required to ensure the passability of all species through the ramp and that passability was significantly lower in the RCP scenarios than in the historical scenario. This study suggests that climate change may reduce the passability of native fish species in weirs, meaning that the construction of small barriers in rivers should consider the decreases in discharge predicted from global change scenarios for the suitable management of fish populations.

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          The Inter-Sectoral Impact Model Intercomparison Project (ISI-MIP): project framework.

          The Inter-Sectoral Impact Model Intercomparison Project offers a framework to compare climate impact projections in different sectors and at different scales. Consistent climate and socio-economic input data provide the basis for a cross-sectoral integration of impact projections. The project is designed to enable quantitative synthesis of climate change impacts at different levels of global warming. This report briefly outlines the objectives and framework of the first, fast-tracked phase of Inter-Sectoral Impact Model Intercomparison Project, based on global impact models, and provides an overview of the participating models, input data, and scenario set-up.
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            Global river discharge and water temperature under climate change

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              Anthropogenic stresses on the world’s big rivers

              Jim Best (2018)
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                Author and article information

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                Journal
                WATEGH
                Water
                Water
                MDPI AG
                2073-4441
                October 2021
                October 05 2021
                : 13
                : 19
                : 2758
                Article
                10.3390/w13192758
                367b8c57-aa90-41ef-855a-29feb950a3a0
                © 2021

                https://creativecommons.org/licenses/by/4.0/

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