📄 cold_lv.m
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function xprime=cold_lv(t,X) % sample usage: [t,x]=ode15s('cold_lv',[0 5000],0.5*ones(1,222));%% cold_lv - Subroutine for simulation with LV-configuration.% It calls the model colamod, and % includes control of condenser and reboiler level % using two P-controllers with the LV-configuration. %% Inputs are reflux (LT) and boilup (VB). Disturbances% are feedrate and feed composition. These are set by directly% altering 'cold_lv.m'. Outputs are liquid composition and% liquid hold up for stages 1 through NT, given in x. % Number of stages in the columnNT=111;% Inputs and disturbancesLT=11.8615732; % RefluxVB=12.476099; % BoilupF=1.0 + 0.00; % FeedratezF=0.65; % Feed compositionqF=1.0; % Feed liquid fraction% P-Controllers for control of reboiler and condenser hold up.KcB=10; KcD=10; % controller gainsMDs=60; MBs=20; % Nominal holdups Ds=0.614525139; Bs=1-Ds; % Nominal flowsMB=X(NT+1); MD=X(2*NT); % Actual reboiler and condenser holdupD=Ds+(MD-MDs)*KcD; % Distillate flowB=Bs+(MB-MBs)*KcB; % Bottoms flow % Store all inputs and disturbancesU(1)=LT; U(2)=VB; U(3)=D; U(4)=B; U(5)=F; U(6)=zF; U(7)=qF;xprime=coldmod(t,X,U);
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