García Ruíz, Manuel Julio2018-06-132010http://hdl.handle.net/10784/12353Particle methods have been gaining momentum in the Computational Fluid Dynamics world, for their computational simplicity and inherent parallelism -- This has lead the field to jump to new hardware technologies that exploit the parallelism in a whole new way -- This project is an interactive parallel implementation of the Lattice Boltzmann Method that runs on a hyper parallel architecture as a modern GPU and uses CUDA technology for its implementation -- First the mathematical concepts of the method are introduced, then the implementation is done using the SIMD paradigm, to later on attack the visualization and interactivity simple wayspaCUDA (Programa para computador)Método Lattice BoltzmannUnidad de Procesamiento Gráfico (GPU)Interactive parallel fluid solver using the Lattice-Boltzmann method and CUDAinfo:eu-repo/semantics/bachelorThesisinfo:eu-repo/semantics/openAccessPROCESAMIENTO PARALELO (COMPUTADORES ELECTRÓNICOS)PROGRAMACIÓN PARALELA (COMPUTADORES ELECTRÓNICOS)MECÁNICA DE FLUIDOSDINÁMICA DE FLUIDOSECUACIONES DE NAVIER-STOKESFluid dynamicsParallel processing (electronic computers)Parallel programming (computer science)Finite DifferencesNavier-stokes equationsAcceso abierto2018-06-13Gutiérrez Mazo, Jorge Mario