Title of article :
Self-adaptive time integration of flux-conservative equations with sources
Author/Authors :
Omelchenko، نويسنده , , Y.A. and Karimabadi، نويسنده , , H.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
16
From page :
179
To page :
194
Abstract :
We present a novel, flux-conserving, asynchronous method for the explicit time integration of multi-scale, flux-conservative partial differential equations with source terms. Unlike the conventional explicit and implicit integration schemes, it is based on a discrete-event simulation paradigm, which describes time advance in terms of increments to physical quantities and causality rules rather than time stepping. This method exerts self-adaptive control over local update rates of solution by predicting and correcting changes to simulation variables in accordance with local physical scales. The discrete-event simulation paradigm is independent of the underlying spatial mesh and thus can be incorporated into block-structured and unstructured mesh refinement techniques. The effectiveness and robustness of the new method is demonstrated on a number of one-dimensional, uniform mesh models based on diffusion–convection–reaction equations. The event-driven integration reduces numerical approximation errors due to large local time derivatives, prevents explosive numerical instabilities in locally super-Courant calculations and automatically reduces the CPU overhead associated with stiff terms and inactive regions in computation space.
Keywords :
multi-scale , Discrete-Event Simulation , PDE , Conservation laws , adaptive , asynchronous , Flux-conservative
Journal title :
Journal of Computational Physics
Serial Year :
2006
Journal title :
Journal of Computational Physics
Record number :
1479154
Link To Document :
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