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view +time/Rungekutta4.m @ 1012:1e437c9e5132 feature/advectionRV
Create residual viscosity package +rv and generalize the ResidualViscosity class
- Generalize residual viscosity, by passing user-defined flux and calculating the time derivative outside of the update.
- Create separate RungekuttaRV specifically using interior RV updates
- Separate the artifical dissipation operator from the scheme AdvectionRV1D so that the same scheme can be reused for creating the diff op used by the ResidualViscosity class
author | Vidar Stiernström <vidar.stiernstrom@it.uu.se> |
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date | Wed, 05 Dec 2018 13:44:10 +0100 |
parents | c6fcee3fcf1b |
children |
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classdef Rungekutta4 < time.Timestepper properties D S F k t v m n end methods function obj = Rungekutta4(D, S, k, t0, v0) obj.D = D; obj.k = k; obj.t = t0; obj.v = v0; obj.m = length(v0); obj.n = 0; if S == 0 obj.S = zeros(obj.m,1); else obj.S = S; end if S == 0 obj.F = @(v,t)(obj.D*v); else obj.F = @(v,t)(obj.D*v + obj.S); end end function [v,t] = getV(obj) v = obj.v; t = obj.t; end function obj = step(obj) obj.v = time.rk.rungekutta_4(obj.v, obj.t, obj.k, obj.F); obj.t = obj.t + obj.k; obj.n = obj.n + 1; end end methods (Static) function k = getTimeStep(lambda) k = rk4.get_rk4_time_step(lambda); end end end