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Bayatfar Abbas

Main Referenced Co-authors
Rigo, Philippe  (11)
Amrane, Amirouche  (2)
Caprace, Jean-David  (2)
Chakkalakkal Joseph, Jose Mishael  (2)
Echeverry Jaramillo, Sara  (2)
Main Referenced Keywords
Ultimate strength (3); FEA (2); FEM (2); analytical method (1); BESST (1);
Main Referenced Disciplines
Mechanical engineering (8)
Civil engineering (4)
Engineering, computing & technology: Multidisciplinary, general & others (1)

Publications (total 12)

The most downloaded
7221 downloads
Nguyen, T. D., Rigo, P., & Bayatfar, A. (2012). ULTIMATE STRENGTH ANALYSIS OF STEEL PLATES USING ISO/DIS 1872-2 AND ULSAP. In Nguyen Thien Tong (Ed.), International Conference on Advances in Computational Mechanics (Proceedings is published in Vietnam under sponsors of Ton Duc Thang University and National Foundation for Science & Technology Development (NAFOSTED)). https://hdl.handle.net/2268/132610

The most cited

46 citations (Scopus®)

Bayatfar, A., & Rigo, P. (November 2014). Residual Ultimate Strength of Cracked Steel Unstiffened and Stiffened Plates under Longitudinal Compression. Thin-Walled Structures, 84, 378-392. doi:10.1016/j.tws.2014.07.002 https://hdl.handle.net/2268/182621

Bayatfar, A., Chakkalakkal Joseph, J. M., Warnotte, R., & Rigo, P. (2019). AN INTEGRATED FRAMEWORK FOR SHIP STRUCTURAL OPTIMISATION IN CONTRACT DESIGN PHASE. Analele Universitatii Dunarea de Jos din Galati, Fascicula XI- Constructii navale.
Peer Reviewed verified by ORBi

Bayatfar, A., & Rigo, P. (25 September 2019). AN EFFICIENT APPROACH AT HOLISTIC SHIP DESIGN’S SERVICE FOR STRUCTURAL OPTIMISATION [Paper presentation]. International Conference on Computer Applications in Shipbuilding.

Bayatfar, A., & Chakkalakkal Joseph, J. M. (2019). HOLISHIP - Structural and Functional Optimisation Packages for Platform 12 Deliverable D4.3.

Bayatfar, A., Warnotte, R., & Rigo, P. (15 June 2019). Automated scantling optimization of ships’ midship transverse frame in concept design phase [Paper presentation]. The SBE&S Magazine.

Rigo, P., Bayatfar, A., Echeverry Jaramillo, S., & Caprace, J.-D. (2019). Structural Design Optimization—Tools and Methodologies: Volume 1: Optimisation of Ship Design and Operation for Life Cycle. In A Holistic Approach to Ship Design. Springer.
Peer reviewed

Rigo, P., Bayatfar, A., Buldgen, L., Pire, T., Echeverry Jaramillo, S., & Caprace, J.-D. (July 2017). Optimisation of Ship and Offshore Structures and Effective Waterway Infrastructures to Support the Global Economic Growth of a Country/Region. Ship Science and Technology, 11, 9-27. doi:10.25043/19098642.155
Peer Reviewed verified by ORBi

Bayatfar, A., & Rigo, P. (November 2014). Residual Ultimate Strength of Cracked Steel Unstiffened and Stiffened Plates under Longitudinal Compression. Thin-Walled Structures, 84, 378-392. doi:10.1016/j.tws.2014.07.002
Peer Reviewed verified by ORBi

Bayatfar, A., Pire, T., & Rigo, P. (2014). On the ultimate compressive strength of transversely cracked plates. In Proceedings of the ASME 2014 33rd International Conference on Ocean, Offshore and Arctic Engineering. doi:10.1115/OMAE2014-24668
Peer reviewed

Amrane, A., Bayatfar, A., & Rigo, P. (2013). Optimisation Methodology Applied to Ship Design. In Practical Design of Ships and Other Floating Structures(PRADS), Korea, 20-25 October 2013.
Peer reviewed

Amrane, A., Bayatfar, A., & Rigo, P. (2013). An Optimisation Methodology for Ship Structural Design using CAD/FEM Integration. In 12th International Conference on Computer and IT Applications in the Maritime Industries, COMPIT’13, Cortona 15-17 April 2013.
Peer reviewed

Nguyen, T. D., Rigo, P., & Bayatfar, A. (2012). ULTIMATE STRENGTH ANALYSIS OF STEEL PLATES USING ISO/DIS 1872-2 AND ULSAP. In Nguyen Thien Tong (Ed.), International Conference on Advances in Computational Mechanics (Proceedings is published in Vietnam under sponsors of Ton Duc Thang University and National Foundation for Science & Technology Development (NAFOSTED)).
Peer reviewed

Reza Khedmati, M., Bayatfar, A., & Rigo, P. (January 2010). Post-buckling behaviour and strength of multi-stiffened aluminium panels under combined axial compression and lateral pressure. Marine Structures, 23. doi:10.1016/j.marstruc.2009.10.003
Peer Reviewed verified by ORBi

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