Mathc initiation/Fichiers h : c59ac
Apparence
Installer ce fichier dans votre répertoire de travail.
x_stokxy.h |
|---|
/* ---------------------------------- */
/* save as x_stokxy.h */
/* ---------------------------------- */
/*
* (curl F).n dS
*
*
/ y1 / v(y)
| |
| | (curl F).n [(f_x)^2+(f_y)^2+1]^1/2 dx dy =
| |
/ y0 / u(y)
*
*
* */
/* ---------------------------------- */
double curlF_Ngrd_S(
double (*P_M)(double x, double y, double z),
double (*P_N)(double x, double y, double z),
double (*P_P)(double x, double y, double z),
double (*P_f)(double x, double y),
pt2d p
)
{
v3d Ngrd;
v3d curl;
pt3d p3d;
p3d.x = p.x;
p3d.y = p.y;
p3d.z = (*P_f)(p.x,p.y);
Ngrd = Ngradian_ijk((*P_f), p);
curl = curl_ijk((*P_M),(*P_N),(*P_P), p3d);
return( ( Ngrd.i*curl.i +
Ngrd.j*curl.j +
Ngrd.k*curl.k ) *
sqrt( pow(fxy_x((*P_f),H,p),2) +
pow(fxy_y((*P_f),H,p),2) +
1)
);
}
/* ---------------------------------- */
/* ---------------------------------- */
/* ---------------------------------- */
double stokes_dx(
double (*P_M)(double x, double y, double z),
double (*P_N)(double x, double y, double z),
double (*P_P)(double x, double y, double z),
double (*P_f)(double x, double y),
double (*Px0)(double y),
double (*Px1)(double y),
int nx,
double y
)
{
pt2d p;
int i = 0;
double m = 0.;
double M = 0.;
for(i = 0; i <= nx; i++)
{
if(i ==0 || i== nx){m = 1.;}
else if(fmod(i,2) == 0 ){m = 2.;}
else {m = 4.;}
p.x = ((*Px0)(y))+
i*(((*Px1)(y))-((*Px0)(y)))
/nx;
p.y = y;
M += m * curlF_Ngrd_S(
(*P_M),(*P_N),(*P_P),
(*P_f),
p);
}
return(((((*Px1)(y))-((*Px0)(y)))*M)
/ (3*nx) );
}
/* ---------------------------------- */
double stokes_dxdy(
double (*P_M)(double x, double y, double z),
double (*P_N)(double x, double y, double z),
double (*P_P)(double x, double y, double z),
double (*P_f)(double x, double y),
double (*Px0)(double y),
double (*Px1)(double y),
int nx,
double y0,
double y1,
int ny
)
{
int i = 0;
double m = 0.;
double M = 0.;
for(i = 0; i <= ny; i++)
{
if(i ==0 || i== ny){m = 1.;}
else if(fmod(i,2) == 0 ){m = 2.;}
else {m = 4.;}
M += m * stokes_dx((*P_M),(*P_N),(*P_P),
(*P_f),
(*Px0),(*Px1),nx,
(y0 + i*(y1-y0)/ny));
}
return( ((y1 -y0)*M) / (3*ny) );
}
/* ---------------------------------- */
/* ---------------------------------- */
/* ---------------------------------- */