Publication | Closed Access
Potential of adaptive neuro fuzzy inference system for evaluating the factors affecting steel-concrete composite beam's shear strength
191
Citations
27
References
2016
Year
EngineeringMechanical EngineeringStructural ApplicationStructural PerformanceStructural OptimizationStructural SteelStructural EngineeringShear Strength CapacityShear StrengthReinforced ConcreteStructural Health MonitoringComposite BeamFiber-reinforced Cement CompositeStructural ReliabilityCivil EngineeringSteel-concrete Composite BeamStructural AnalysisStructural MechanicsConstruction Engineering
Structural design of a composite beam is influenced by two main factors, strength and ductility. For the design to be effective for a composite beam, say an RC slab and a steel I beam, the shear strength of the composite beam and ductility have to carefully estimate with the help of displacements between the two members. In this investigation the shear strengths of steel-concrete composite beams was analyzed based on the respective variable parameters. The methodology used by ANFIS (Adaptive Neuro Fuzzy Inference System) has been adopted for this purpose. The detection of the predominant factors affecting the shear strength steel-concrete composite beam was achieved by use of ANFIS process for variable selection. The results show that concrete compression strength has the highest influence on the shear strength capacity of composite beam.
| Year | Citations | |
|---|---|---|
Page 1
Page 1