OpenSees Examples -- Introductory Examples: Difference between revisions
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Example 1 is a 2D elastic cantilever column, Example 1b is a 2D elastic portal frame. Each example has two independent input files, one for each type of analysis: | Example 1 is a 2D elastic cantilever column, Example 1b is a 2D elastic portal frame. Each example has two independent input files, one for each type of analysis: | ||
:a. Static Pushover | |||
:b. Dynamic Earthquake Ground Motion | |||
a. Static Pushover | |||
b. Dynamic Earthquake Ground Motion | |||
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B. Define & apply gravity load | B. Define & apply gravity load | ||
#nodal or element load | #nodal or element load | ||
#static-analysis parameters (tolerances & load increments) | #static-analysis parameters (tolerances & load increments) | ||
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#reset time to zero | #reset time to zero | ||
C. Define and apply lateral load | |||
C. Define and apply lateral load | |||
#load pattern (nodal loads for static analysis, support ground motion for earthquake) | #load pattern (nodal loads for static analysis, support ground motion for earthquake) | ||
#lateral-analysis parameters (tolerances & displacement/time increments) | #lateral-analysis parameters (tolerances & displacement/time increments) |
Latest revision as of 17:28, 10 November 2009
The objective of Example 1a and Example 1b is to give an overview of input-file format in OpenSees using simple scripts. These scripts do not take advantage of the Tcl scripting capabilities shown in the later examples. However, they do provide starting a place where the input file is similar to that of more familiar Finite-Element Analysis software. Subsequent examples should be used as the basis for user input files.
Example 1 is a 2D elastic cantilever column, Example 1b is a 2D elastic portal frame. Each example has two independent input files, one for each type of analysis:
- a. Static Pushover
- b. Dynamic Earthquake Ground Motion
Each example script does the following:
A. Build the model
- model dimensions and degrees-of-freedom
- nodal coordinates
- nodal constraints -- boundary conditions
- nodal masses
- elements and element connectivity
- recorders for output
B. Define & apply gravity load
- nodal or element load
- static-analysis parameters (tolerances & load increments)
- analyze
- hold gravity loads constant
- reset time to zero
C. Define and apply lateral load
- load pattern (nodal loads for static analysis, support ground motion for earthquake)
- lateral-analysis parameters (tolerances & displacement/time increments)
- damping for dynamic analysis
- analyze
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