Initialize

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Line 2: Line 2:
 
  {
 
  {
 
  KRATOS_TRY
 
  KRATOS_TRY
const GeometryType::IntegrationPointsArrayType& integration_points = GetGeometry().IntegrationPoints();
+
  const GeometryType::IntegrationPointsArrayType& integration_points = GetGeometry().IntegrationPoints();
 
   //resizing jacobian inverses containers
 
   //resizing jacobian inverses containers
mInvJ0.resize(integration_points.size());
+
  mInvJ0.resize(integration_points.size());
mDetJ0.resize(integration_points.size());
+
  mDetJ0.resize(integration_points.size());
GeometryType::JacobiansType J0;
+
  GeometryType::JacobiansType J0;
 
J0 = GetGeometry().Jacobian(J0);   
 
J0 = GetGeometry().Jacobian(J0);   
 
mTotalDomainInitialSize = 0.00;
 
mTotalDomainInitialSize = 0.00;

Revision as of 15:47, 28 November 2007

void LinearElement::Initialize()
{
KRATOS_TRY
 const GeometryType::IntegrationPointsArrayType& integration_points = GetGeometry().IntegrationPoints();
 //resizing jacobian inverses containers
 mInvJ0.resize(integration_points.size());
 mDetJ0.resize(integration_points.size());
 GeometryType::JacobiansType J0;

J0 = GetGeometry().Jacobian(J0); mTotalDomainInitialSize = 0.00;

if(mConstitutiveLawVector.size() == 0) { mConstitutiveLawVector.resize(integration_points.size()); InitializeMaterial(); }

//calculating the inverse J0 for(unsigned int PointNumber = 0; PointNumber<integration_points.size(); PointNumber++) { //getting informations for integration double IntegrationWeight = integration_points[PointNumber].Weight(); //calculating and storing inverse of the jacobian and the parameters needed

MathUtils<double>::InvertMatrix(J0[PointNumber],mInvJ0[PointNumber],mDetJ0[PointNumber]);


//calculating the total area

mTotalDomainInitialSize += mDetJ0[PointNumber]*IntegrationWeight;

}

KRATOS_CATCH("")

}

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