D:/demona/2.0/manual/doc/2-31set/matlab/myF.m File Reference

Go to the source code of this file.

Functions/Subroutines

 y (index)
 y (index+1)

Variables

function y
so corners are zero h = 1/(n-1.0)
 j = 1
for i
 sc = x(index)
 vc = x(index+1)
 sn = x(index+n*unk)
 ss = x(index-n*unk)
 se = x(index+unk)
 sw = x(index-unk)
 vw = x(index+1-unk)
 ve = x(index+1+unk)
 vn = x(index+1+n*unk)
 vs = x(index+1-n*unk)
 dSTFdX = (se-sw)/(2.0*h)
 dSTFdY = (sn-ss)/(2.0*h)
 myU = dSTFdY
 myV = -dSTFdX
 d2VORdX2 = (vw+ve-2.0*vc)/(h^2.d0)
 d2VORdY2 = (vn+vs-2.0*vc)/(h^2.d0)
 dVORdX = (ve-vw)/(2.0*h)
 dVORdY = (vn-vs)/(2.0*h)
 UdVORdX = myU*dVORdX
 VdVORdY = myV*dVORdY
 Tc = x(index)
 Tw = x(index-1)
 Te = x(index+1)
 Tn = x(index+n)
 Ts = x(index-n)

Function Documentation

y ( index+  1  ) 
y ( index   ) 

Variable Documentation

d2VORdX2 = (vw+ve-2.0*vc)/(h^2.d0)

Definition at line 84 of file myF.m.

d2VORdY2 = (vn+vs-2.0*vc)/(h^2.d0)

Definition at line 86 of file myF.m.

dSTFdX = (se-sw)/(2.0*h)

Definition at line 71 of file myF.m.

dSTFdY = (sn-ss)/(2.0*h)

Definition at line 73 of file myF.m.

dVORdX = (ve-vw)/(2.0*h)

Definition at line 88 of file myF.m.

dVORdY = (vn-vs)/(2.0*h)

Definition at line 90 of file myF.m.

h = 1/(n-1.0)

Definition at line 10 of file myF.m.

end i
Initial value:
2:n-1
   index=((j-1)*n+i-1)*unk+1

Definition at line 14 of file myF.m.

for j = 1

Definition at line 13 of file myF.m.

Definition at line 79 of file myF.m.

myV = -dSTFdX

Definition at line 80 of file myF.m.

sc = x(index)

Definition at line 16 of file myF.m.

se = x(index+unk)

Definition at line 38 of file myF.m.

sn = x(index+n*unk)

Definition at line 18 of file myF.m.

ss = x(index-n*unk)

Definition at line 28 of file myF.m.

sw = x(index-unk)

Definition at line 48 of file myF.m.

Tc = x(index)

Definition at line 123 of file myF.m.

Te = x(index+1)

Definition at line 125 of file myF.m.

Tn = x(index+n)

Definition at line 126 of file myF.m.

Ts = x(index-n)

Definition at line 127 of file myF.m.

Tw = x(index-1)

Definition at line 124 of file myF.m.

Definition at line 96 of file myF.m.

vc = x(index+1)

Definition at line 17 of file myF.m.

Definition at line 97 of file myF.m.

ve = x(index+1+unk)

Definition at line 67 of file myF.m.

vn = x(index+1+n*unk)

Definition at line 68 of file myF.m.

vs = x(index+1-n*unk)

Definition at line 69 of file myF.m.

vw = x(index+1-unk)

Definition at line 66 of file myF.m.

end end y
Initial value:
myF(x,n)

global lambda
global re
global unk


y=x

Definition at line 1 of file myF.m.

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