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- W2182233172 abstract "Rivers and floodplains convey and exchange water and all its constituent matter from Earth's surface to an intra-continental or oceanic sink. The associated processes of flow and flux are the foundation of all ecosystem service provision and human value derived from river environments. Numerical modelling is one of many approaches that may be used to understand these processes. It is an approach that seeks quantitative mechanistic understanding that is critical to enhancing the predictive capacity of river science, and to developing evidence-based management practices. In combination with other approaches, modelling should play a key role in constraining understanding of river responses in an uncertain future. Ongoing improvements in computing power and in the availability and accessibility of fluvial modelling codes have substantially increased the uptake of modelling as a method of investigating fluvial processes and forms. This chapter outlines the physical basis of different types of fluvial model, and illustrates the key considerations needed to select a model code with the necessary numerical complexity, to establish a physical model domain and boundary conditions, to test for sensitivity to domain, boundary and parameter variables, and to evaluate results." @default.
- W2182233172 created "2016-06-24" @default.
- W2182233172 creator A5062325547 @default.
- W2182233172 date "2015-01-01" @default.
- W2182233172 modified "2023-09-26" @default.
- W2182233172 title "Modelling Geomorphic Systems: Fluvial" @default.
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