|
| RgSccPoligono (Material *) |
|
| RgSccPoligono (Material *, int numSubdivIJ, int numSubdivJK, const Poligono2d &) |
|
const Rejilla2d & | getMesh (void) const |
|
const VectorCells & | getCells (void) const |
| Returns the contenedor de celdas.
|
|
RegionSecc * | getCopy (void) const |
| Returns a copy of the region.
|
|
double | getMaxY (void) const |
|
double | getMaxZ (void) const |
|
double | getMinY (void) const |
|
double | getMinZ (void) const |
|
Poligono2d | getPoligono (void) const |
|
void | Print (std::ostream &s, int flag=0) const |
|
| RgQuadCell (Material *) |
|
| RgQuadCell (Material *, int numSubdivIJ, int numSubdivJK) |
|
| RgQuadCell (const RgQuadCell &otro) |
| Copy constructor.
|
|
RgQuadCell & | operator= (const RgQuadCell &otro) |
| Assignment operator.
|
|
void | setDiscretization (int numSubdivIJ, int numSubdivJK) |
| Sets the number of divisions on each direction.
|
|
void | setNDivIJ (const int &n) |
|
int | getNDivIJ (void) const |
|
void | setNDivJK (const int &n) |
|
int | getNDivJK (void) const |
|
const int & | nDivCirc (void) const |
|
int & | nDivCirc (void) |
|
const int & | nDivRad (void) const |
|
int & | nDivRad (void) |
|
int | getNumCells (void) const |
| Returns the número de celdas.
|
|
void | getDiscretization (int &numSubdivIJ, int &numSubdivJK) const |
| Returns the number of divisions on each direction.
|
|
Vector | getCdgRejilla (void) const |
| Returns the centro de gravedad de la rejilla.
|
|
Vector | getVertCoords (const size_t &, const size_t &) const |
| Returns the coordenadas of the punto i,j.
|
|
Matrix | getCellVertCoords (const size_t &, const size_t &) const |
| Returns the coordinates of the vertices of the (i,j) cell.
|
|
| RegionSecc (Material *) |
|
RgSccPoligono | Interseccion (const Semiplano2d &sp) const |
|
const Vector & | Cdg (void) const |
| Returns the coordenadas of the centro de gravedad.
|
|
double | Longitud (void) const |
| Returns the region contour lenght.
|
|
double | Area (void) const |
| Returns the region area.
|
|
double | Iy (void) const |
| Returns the moment of inertia with respect to the axis paralelo al y por el centroid.
|
|
double | Iz (void) const |
| Returns the moment of inertia with respect to the axis paralelo al z por el centroid.
|
|
double | Pyz (void) const |
| Returns the producto de inercia respecto a los ejes paralelos por el centroid.
|
|
double | Ix (void) const |
| Returns the moment of inertia polar with respect to centroid en ejes locales.
|
|
double | Theta_p (void) const |
| Returns the ángulo que define un principal axis of inertia.
|
|
const Vector & | DirEjeI_a (void) const |
| Return the direction of a principal axis of inertia (we don't know yet if it's the major one or the minor one).
|
|
const Vector & | DirEjeI_b (void) const |
| Return the direction of the other (with respect to DirEjeI_a) principal axis of inertia (we don't know yet if it's the major one or the minor one).
|
|
double | getI1 (void) const |
| Returns the principal major axis of inertia.
|
|
double | getI2 (void) const |
| Returns the principal minor axis of inertia.
|
|
double | getI (const unsigned short int &i, const unsigned short int &j) const |
| Return the i,j component of the tensor of inertia computed with respect to centroid.
|
|
double | getI (const unsigned short int i, const unsigned short int j, const Pos2d &o) const |
| Return the i,j component of the tensor of inertia computed with respecto to the point "o".
|
|
double | getI (const Pos2d &O, const Vector &e) const |
| Returns the moment of inertia with respect to the axis that passes through O with the direction of e.
|
|
double | getIO (const Pos2d &o) |
| Returns the momento polar de inercia with respect to the point o.
|
|
Matrix & | getI (void) const |
| Returns the tensor of inertia computed with respect to the object centroid.
|
|
Matrix & | getI (const Pos2d &o) const |
| Returns the tensor of inertia respector al punto o.
|
|
| DiscretBase (Material *mat) |
|
void | setMaterialPtr (Material *mat) |
|
Material * | getMaterialPtr (void) const |
|
Poligonal patch for cross-section discretization.