By Philippe Gourbesville, Jean Cunge, Guy Caignaert
The booklet is a suite of prolonged papers that have been chosen for presentation in the course of the SIMHYDRO 2012 convention held in Sophia Antipolis in September 2012. The papers current the state-of-the-art numerical simulation in domain names corresponding to (1) New developments in modelling for marine, river & city hydraulics; (2) Stakeholders & practitioners of simulation; (3) 3D CFD & purposes. All papers were peer reviewed and by way of medical committee contributors with file approximately caliber, content material and originality. the objective viewers for this e-book comprises scientists, engineers and practitioners keen on the sector of numerical modelling within the water area: flood administration, traditional assets upkeep, hydraulic machineries, and innovation in numerical equipment, 3D advancements and purposes.
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Extra info for Advances in Hydroinformatics: SIMHYDRO 2012 – New Frontiers of Simulation
Must be based on the reference model with the correct validity date) with those used operationally in-board in the local hydraulic control. Among other advantages, this means that non-regression tests can be rationalised. With this in mind, all common elements of CNR simulation tools are available via a single platform, SYSSIH—‘SYStème de SImulation Hydraulique’ (hydraulic simulation system in English). This platform centralises all elements of the various CNR simulation tools (computing core, hydraulic model network, simulation scenarios, hydraulic control models and module linkage sequencer) and provides a single source for all of CNR’s operational hydraulic simulation tools: real-time tools for hydraulic control, flood propagation tools, short-term forecasting simulation tools for remote control, SICOBA training tools, etc.
Fr P. fr P. Gourbesville et al. 1007/978-981-4451-42-0_4, Ó Springer Science+Business Media Singapore 2014 35 36 L. Grimaldi et al. 1 Introduction CNR, France’s leading producer of exclusively renewable energy, controls a variety of production facilities: hydroelectric power plants, wind farms and solar power plants. Among these, the Rhône river concession is the main asset, with a generating capacity of around 3,000 MW, supplied by the 18 hydroelectric plants along the river. Hydraulic modelling is omnipresent in CNR’s Rhône operations.
For such a purpose, the complementary use of different nature of scenarios is an interesting approach. Use of Standard 2D Numerical Modeling Tools 33 References 1. ASN (2010). Protection des installations nucléaires de base contre les inondations externes. Projet de guide de l’ASN n 13, p. 44. 2. Ciliberti, S. , & Villanueva, A. (2008). 2D analysis for local flooding assessment in a new square of Barcelona during storm events (p. 9). 11th International Conference on Urban Drainage, Edinburg, Scotland, UK.