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   Know more About "C" Course Content...

SYLLABUS FOR STAAD. PRO 2005
General theory
• Structural analysis: Classical and Numerical Methods
• Limitations for Hand computations.
• Need for computer aided analysis and design
• Introduction and application of Staad-Pro for as computer aided analysis and design tool.
• Staad-Pro Static analysis
• Staad-Pro Dynamic Analysis (Pseudo Static, Eigen solutions, Time history & Response Spectrum)
• Structural Idealizations: Elements (linear, surface & Solid) with DOF
• Structural Idealization: - Types (Truss, Plane, Floor & Space)
• Structural Idealization: - Support types (Fixed, Pinned, Partially or fully restrained with or without spring etc)
• Structural Idealization: - Loading types (All static and Dynamic)
Graphical User Interface (GUI)
• Understanding of GUI
• Modeling of Structures using add beams, plates, solids, copying/mirroring, rotating, panning/zooming, using spreadsheets, page control.
• Multiple windows and view management.
• Creating and assigning properties from steel tables, prismatic properties, material constants, supports and loads.
• Performing General elastic analysis.
• Viewing Input with Editor & Output files with Viewer
• Graphical Post-Processor for verifying and validating analysis results

Brief Technical understanding
• Beta Angles, Local vs Global Axis, Member and Element releases, Member offsets, Tension/compression-only Members
• Instabilities, Zero Stiffness Messages and Static Check
• Basic Understanding of design Problems with Tutorials.
• Generating Models using Structure wizard
• Floor, Wind and Moving Load Generation.
• Implications of Master/slave option
Steel Design: - Basic Understanding
Steel Design Parameters
• IS 800: Design Methodology
• Using Different Parameters in Batch Mode
• Controlling Deflection Criteria
• Statically Indeterminate Problems

Concrete Design: - Basic Understanding
• IS: 456 Design Methodology
• Using Different Parameters in Batch Mode
• Design Beam, Column and Element

After above basic understanding the course will involve.

R.C.C. STRUCTURES: -
A) Buildings with moment resisting frame.
B) Buildings with Shear Wall.
C) Water tanks

STEEL STRUCTURES: -
A) Modeling, analysis and design of steel building.
B) Trusses
C) Towers

R.C.C STRUCTURES
A) Buildings with moment resisting frame.
- Modeling of at least 20 plans using below listed commands
- Complete practical implementation using the below listed special commands
- Analysis of the structures for static, dynamic and wind loadings
- Design of the same using the design commands
- At least 3 live RCC buildings for analysis and design.
B) Building with Shear Wall
- Modeling of a G+10 Shear wall building
- Analysis of the structures for static, dynamic and wind loadings
- Design of the same using the design commands

C) Water tanks
- Modeling of square, rectangular and circular water tanks
- Analysis for the water pressure and soil pressure
- Design of the same using RCC design command

STEEL STRUCTURES
a) Modeling, analysis and design of steel building.
b) Trusses
- Modeling of different types of trusses.
- Analysis for dead load and wind load
- One problem on industrial shed
- Design of the same using design commands in steel.

c) Towers
- Modeling of different types of towers.
- Analysis for wind and other loadings
- Design.

Advanced course in Staadpro

 

1)Moving loads :--- This includes moving loads for the beams.

2) Interactive R.C.C design:--- Special feature in Staadpro which gives you interactive design for R.C.C members.

 

3) Interactive STEEL design:--- Special feature in Staadpro which gives you interactive design for STEEL members.

4) Auto Load Combination Command:-- This will include the commands for auto load combination generation which the programme generates internally.

 

5) Special commands related to R.C.C analysis:-- This will include some live examples of some specific problems in analysis.
a) A live problem of columns floated in the upper floors.
b) A live problem of Hanger columns.

6) Parametric Modeling for plates: -- a special feature in STAAD which enables the a better modeling for the plates.

 

 


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