view +time/SBPInTimeSecondOrderForm.m @ 1031:2ef20d00b386 feature/advectionRV

For easier comparison, return both the first order and residual viscosity when evaluating the residual. Add the first order and residual viscosity to the state of the RungekuttaRV time steppers
author Vidar Stiernström <vidar.stiernstrom@it.uu.se>
date Thu, 17 Jan 2019 10:25:06 +0100
parents c92d2f8319c2
children b5e5b195da1e
line wrap: on
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classdef SBPInTimeSecondOrderForm < time.Timestepper
    properties
        A,B,C
        M, f

        n
        t
        k

        firstOrderTimeStepper
    end

    methods
        % Solves u_tt = Au + Bu_t + C
        % A, B can either both be constants or both be function handles,
        % They can also be omitted by setting them equal to the empty matrix.
        function obj = SBPInTimeSecondOrderForm(A, B, C, k, t0, v0, v0t, TYPE, order, blockSize)
            default_arg('TYPE', []);
            default_arg('order', []);
            default_arg('blockSize',[]);

            m = length(v0);

            default_arg('A', sparse(m, m));
            default_arg('B', sparse(m, m));
            default_arg('C', sparse(m, 1));

            I = speye(m);
            O = sparse(m,m);

            obj.M = [
                O, I;
                A, B;
            ];
            obj.f = @(t)[
                sparse(m,1);
                          C;
            ];

            w0 = [v0; v0t];

            obj.k = k;
            obj.t = t0;
            obj.n = 0;

            obj.firstOrderTimeStepper = time.SBPInTime(obj.M, obj.f, obj.k, obj.t, w0, TYPE, order, blockSize);
        end

        function [v,t] = getV(obj)
            w = obj.firstOrderTimeStepper.getV();
            v = w(1:end/2);
            t = obj.t;
        end

        function [vt,t] = getVt(obj)
            w = obj.firstOrderTimeStepper.getV();
            vt = w(end/2+1:end);
            t = obj.t;
        end

        function obj = step(obj)
            obj.firstOrderTimeStepper.step();
            obj.t = obj.firstOrderTimeStepper.t;
            obj.n = obj.firstOrderTimeStepper.n;
        end
    end
end