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Deriving analytical solutions using symbolic matrix structural analysis for continuous beams
1Department of Civil and Environmental Engineering, College of Engineering, Qatar University, P.O. Box: 2713, Doha, Qatar. vplevris@qu.edu.qa.
Symbolic computation in Matrix Structural Analysis (MatSA) provides analytical solutions for continuous beams. This method enhances design exploration and aids in understanding structural mechanics through clear parameter relationships.
Area of Science:
- Structural Engineering
- Computational Mechanics
- Symbolic Computation
Background:
- Traditional Matrix Structural Analysis (MatSA) often relies on numerical methods.
- Deriving analytical expressions for complex structures like continuous beams can be challenging.
- Limited tools exist for in-depth, symbolic-driven sensitivity analysis in structural mechanics.
Purpose of the Study:
- To investigate the application of symbolic computation in MatSA for continuous beams.
- To develop an open-source MATLAB program for symbolic analysis of continuous beams.
- To demonstrate the benefits of symbolic MatSA for design exploration and education.
Main Methods:
- Utilizing the MATLAB Symbolic Math Toolbox for symbolic computation.
- Applying symbolic MatSA to derive analytical expressions for displacements, reactions, and internal forces.
- Implementing the derived methodology into an open-source MATLAB program.
Main Results:
- Analytical expressions for displacements, support reactions, and internal forces were successfully derived.
- Efficient and scalable sensitivity analysis capabilities were achieved through direct computation of partial derivatives.
- An open-source MATLAB program was developed for symbolic analysis of continuous beams under various loads.
- The program facilitates the derivation of influence lines and identification of maximum response values.
Conclusions:
- Symbolic computation offers a powerful approach to MatSA for continuous beams, providing deeper insights into structural behavior.
- This methodology enhances design exploration and aids in engineering education by clarifying parameter relationships.
- The developed open-source tool promotes wider adoption and understanding of symbolic MatSA in structural engineering.
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