Title of article :
High order finite volume methods on wavelet-adapted grids with local time-stepping on multicore architectures for the simulation of shock-bubble interactions
Author/Authors :
Hejazialhosseini، نويسنده , , Babak and Rossinelli، نويسنده , , Diego and Bergdorf، نويسنده , , Michael and Koumoutsakos، نويسنده , , Petros، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Abstract :
We present a space–time adaptive solver for single- and multi-phase compressible flows that couples average interpolating wavelets with high-order finite volume schemes. The solver introduces the concept of wavelet blocks, handles large jumps in resolution and employs local time-stepping for efficient time integration. We demonstrate that the inherently sequential wavelet-based adaptivity can be implemented efficiently in multicore computer architectures using task-based parallelism and introducing the concept of wavelet blocks. We validate our computational method on a number of benchmark problems and we present simulations of shock-bubble interaction at different Mach numbers, demonstrating the accuracy and computational performance of the method.
Keywords :
Adapted grid , wavelets , Local time-stepping , Multiphase flow , Multicore architectures
Journal title :
Journal of Computational Physics
Journal title :
Journal of Computational Physics