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>> IN THE NAME OF GOD <<
Optimization of Steel Section based on Moment and Section Ductility
This program is written by Salar Delavar Ghashghaei - Date of Publication: February/21/2018
E-mail: salar.d.ghashghaei@gmail.com
Optimization based on Moment: In this program, you can find optimum length for each layer based on moment.
Initial conditions such as maximum iterations figure (1) , strain-stress relation figure (2) and minimum and maximum layer length figure (3) are very important for feasible solution.
Figure (1) Input data for optimization analysis
Figure (2) Strain-Stress relation
Figure (3) Section height, minimum and maximum length of each layer
Figure (4) Optimization analysis
Figure (5) Optimization analysis
Figure (6) Output optimization based on moment analysis
Optimization based on Ductility: In this program, you can find optimum length for each layer based on ductility.
Initial conditions such as maximum iterations figure (1) , strain-stress relation figure (2) and minimum and maximum layer length figure (3) are very important for feasible solution.
Figure (7) Input data for optimization based on ductility analysis
Figure (8) Strain-Stress relation
Figure (9) Section height, minimum and maximum length of each layer
Figure (10) Optimization based on ductility analysis
Figure (11) Optimization based on ductility analysis
Figure (12) Output optimization based on ductility analysis

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Optimization of steel section based on moment and section ductility

  • 1. >> IN THE NAME OF GOD << Optimization of Steel Section based on Moment and Section Ductility This program is written by Salar Delavar Ghashghaei - Date of Publication: February/21/2018 E-mail: salar.d.ghashghaei@gmail.com Optimization based on Moment: In this program, you can find optimum length for each layer based on moment. Initial conditions such as maximum iterations figure (1) , strain-stress relation figure (2) and minimum and maximum layer length figure (3) are very important for feasible solution. Figure (1) Input data for optimization analysis
  • 3. Figure (3) Section height, minimum and maximum length of each layer
  • 6. Figure (6) Output optimization based on moment analysis
  • 7. Optimization based on Ductility: In this program, you can find optimum length for each layer based on ductility. Initial conditions such as maximum iterations figure (1) , strain-stress relation figure (2) and minimum and maximum layer length figure (3) are very important for feasible solution. Figure (7) Input data for optimization based on ductility analysis
  • 9. Figure (9) Section height, minimum and maximum length of each layer
  • 10. Figure (10) Optimization based on ductility analysis
  • 11. Figure (11) Optimization based on ductility analysis
  • 12. Figure (12) Output optimization based on ductility analysis