Research Article Open Access

Hybrid Connection Simulation Using Dynamic Nodal Numbering Algorithm

Alongkorn Lamom1, Thaksin Thepchatri2 and Wanchai Rivepiboon2
  • 1 Faculty of Engineering, Mahasarakham University, Mahasarakham, Thailand
  • 2 Faculty of Engineering, Chulalongkorn University, Bangkok, Thailand

Abstract

Problem statement: The traditional dynamic nodal numbering algorithm was proposed for generating code number to support truss and frame simulation using only one element type, frame element; it facilitates the software development process. The traditional algorithm, however, supports simulation of only two types of connection: Hinged connection and rigid connection. In many cases, the problems consist of mix-connection and hybrid connection which cannot be simulated by the traditional technique directly. Approach: In this research, an improvement of dynamic nodal numbering algorithm was proposed to support hybrid connection simulation. It required only one frame element to simulate hinged, rigid and also various hybrid connection types. Results: The implemented software following the new algorithm was tested with two hybrid structure examples. The analysis results are shown in term of shear force, bending moment and axial force. Conclusion: The proposed algorithm does not only improve the ability of connection simulation, but it is also more convenient to implement, debug and expand the finite element software. Hence it reduces the cost, time and effort in developing the computer software.

American Journal of Applied Sciences
Volume 7 No. 8, 2010, 1174-1181

DOI: https://doi.org/10.3844/ajassp.2010.1174.1181

Submitted On: 20 October 2009 Published On: 31 August 2010

How to Cite: Lamom, A., Thepchatri, T. & Rivepiboon, W. (2010). Hybrid Connection Simulation Using Dynamic Nodal Numbering Algorithm. American Journal of Applied Sciences, 7(8), 1174-1181. https://doi.org/10.3844/ajassp.2010.1174.1181

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Keywords

  • Truss analysis
  • frame analysis
  • hybrid connection
  • nodal numbering algorithm