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Info: The SAP name has been synonymous with state-of-the-art analytical methods since its introduction over 30 years ago. SAP2000 follows in the same tradition featuring a very sophisticated, intuitive and versatile user interface powered by an unmatched analysis engine and design tools for engineers working on transportation, industrial, public works, sports, and other facilities.
From its 3D object based graphical modeling environment to the wide variety of analysis and design options completely integrated across one powerful user interface, SAP2000 has proven to be the most integrated, productive and practical general purpose structural program on the market today.
This intuitive interface allows you to create structural models rapidly and intuitively without long learning curve delays. Now you can harness the power of SAP2000 for all of your analysis and design tasks, including small day-to-day problems. Complex Models can be generated and meshed with powerful Templates built into the interface.
The Advanced Analytical Techniques allow for Step-by-Step Large Deformation Analysis, Multiple P-Delta, Eigen and Ritz Analyses, Cable Analysis, Tension or Compression Only Analysis, Buckling Analysis, Blast Analysis, Fast Nonlinear Analysis for Dampers, Base Isolators and Support Plasticity, Energy Methods for Drift Control and Segmental Construction Analysis.
Bridge Designers can use SAP2000 Bridge Templates for generating Bridge Models, Automated Bridge Live Load Analysis and Design, Bridge Base Isolation, Bridge Construction Sequence Analysis, Large Deformation Cable Supported Bridge Analysis and Pushover Analysis.
SAP2000 is for everyone! SAP2000 is for every project! From a simple small 2D static frame analysis to a large complex 3D nonlinear dynamic analysis, SAP2000 is the answer to all structural analysis and design needs.
SAP2000 FEATURES SAP2000 is available in three different levels: Basic (B), Plus (P) and Advanced (A). Different add-on modules are also available: Bridge (BR), Offshore/wave (OS), Staged Construction (SC). A letter in parenthesis following a feature identifies the version(s) that are associated with it.
MODELING (A, P, B) • Object Based Graphical Interface • Model Templates with Auto Meshing • Frame, Cable and Tendon Members • Area (Shell) and Solid Objects with Internal Meshing • Editing with Move, Merge, Mirror and Replicate • Accurate Dimensioning with Guidelines and Snapping • Auto Edge Constraints for Mismatched Shell Meshes • Quick Draw Options for Object Creation • Support for Multiple Coordinate Systems • Powerful Grouping and Selection Options • Automatic Generation of Code Lateral Wind and Seismic Loads • Transfer of Loads from Area Objects to Framing Systems
ANALYSIS • Static Analysis with Frame and Shell Objects (A, P, B) • Multiple Solvers for Analysis Optimization (A, P, B) • Joint Constraints including Rigid Bodies and Diaphragms (A, P, B) • P-Delta Analysis (A, P, B) • Joint Constraints including Rigid Bodies and Diaphragms (A, P, B) • Applied Force and Displacement Loading (A, P, B) • Gravity, Pressure and Thermal Loading (A, P, B) • Post Tensioning in Frame, Area and Solid Objects (A, P, B) • Layered Shell Element (A, P, B) • Plane, Asolid and Solid Objects (A, P) • Time History Analysis, including Multiple Base Excitiation (A, P) • Frequency Domain Analysis – Power Spectral Density (A, P) • Moving Loads (A, P, BR) • Frame Hinges for Axial, Flexural, Shear & Torsional Behavior (A) • Nonlinear Static Pushover Analysis (A) • Viscous Dampers (A) • Base Isolators (A) • Gap Object for Structural Pounding (A) • Nonilnear Time History – Wilson FNA, Direct Integration Methods (A)
DISPLAY • 3D Perspective Graphical Displays (A, P, B) • Static Deformed and Mode Shapes (A, P, B) • Display of User Defined and Automated Loads (A, P, B) • Animation of Model (A, P, B) • Force Diagrams and Stress Contours (A, P, B) • Tabular Display of Model Input & Output (A, P, B) • Graphical Section Cut Definitions for Forces and Stresses (A, P, B) • OpenGL Viewer (A, P, B) • Analysis Case Tree Display (A, P, B) • Display of Displacement and Force Time History Records (A, P) • Time History AVI Files (A, P) • Lane Loads, Influence Surface Plots (A, P, BR) • Nonlinear Force-Deformation Plots (A)
DESIGN (A, P, B) • Steel Frame Design for Numerous Domestic & International Codes • Concrete Frame Design for Numerous Codes • Aluminum Frame Design for AA Codes • Cold-Formed Steel Frame Design for AISI Codes • Design for Static and Dynamic Loads • Member Selection and Optimization
BRIDGE DESIGN MODULE (Requires Plus or Higher) • Layout Line Definition using Bearings and Stations • Moving Loads with 3D Influence Surfaces • Cross Section Generation using Parametric Templates • AASHTO, LFD & LRFD Codes • Straight and Curved Girder Design with Post Tensioning
STAGED CONSTRUCTION MODULE (Requires Advanced) • Sequencing Allowing Adding or Removing Objects/Loads/Supports • Time Dependent Creep, Shrinkage, Aging and Steel Relaxation • Explicitly Model Time Dependent Effects Using Tendon Objects
OFFSHORE/WAVE MODULE (Requires Advanced) • Wave Load Generator • API Steel Frame Design with Punching Shear Checks • Simplified Fatigue Analysis Based on API Criteria
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