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%*********************************************************************** |
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%*********************************************************************** |
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% function [b2,n2,b1,n1]=basis1d2(zref,zdes) |
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%----------------------------------------------------------------------- |
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% purpose: This subroutine evaluates the value of the basis functions |
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% alive on a 1-D linear element at a point |
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% |
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% restrictions: Applicable only for 1-D linear elements |
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% |
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% inputs: nn is the number of entries in the reference z array |
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% zref(nn) is the 1-D array containing the reference z array |
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% NOTE: zref must increase from zref(1) to zref(nn) |
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% zdes is the z value at which the basis functions are desired |
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% |
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% outputs: n1 is the reference node immediately below zdes |
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% b1 is the value of the n1's basis function at zdes |
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% n2 is the reference node immediately above zdes |
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% b2 is the value of the n2's basis function at zdes |
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% |
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% notes: zdes<zref(1) => n1=NaN,b1=0.0,n2=1,b2=1.0 |
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% zdes>zref(nn) => n1=nn,b1=1.0,n2=NaN,b2=0.0 |
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% |
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% history: Written by Christopher E. Naimie |
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% Dartmouth College |
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% 26 AUGUST 1992 |
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%----------------------------------------------------------------------- |
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function [b2,n2,b1,n1]=basis1d1(zref,zdes) |
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% |
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zdiff=zref-zdes;nn=length(zref); |
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if zdiff(1) >= 0; |
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n1=NaN;b1=0.0;n2=1;b2=1.0; |
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elseif zdiff(length(zdiff)) <= 0; |
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n1=nn;b1=1.0;n2=NaN;b2=0.0; |
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else |
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zpast=find(zdiff<=0); |
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n1=zpast(length(zpast)); |
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n2=n1+1; |
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dz=zref(n2)-zref(n1); |
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b1=(zref(n2)-zdes)/dz; |
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b2=(zdes-zref(n1))/dz; |
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end |
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%*********************************************************************** |
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%*********************************************************************** |
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