Musa Artar
Bayburt University
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Publication
Featured researches published by Musa Artar.
Neural Computing and Applications | 2018
Musa Artar; Ayse T. Daloglu
In this paper, an optimization process using MATLAB-SAP2000 Open Application Programming Interface (OAPI) is presented for optimum design of space frames with semi-rigid connections. A specified list including W-profiles taken from American Institute of Steel Construction (AISC) is used in the selection of suitable sections. The stress constraints as indicated in load and resistance factor design of AISC, lateral displacement constraints being the top- and inter-storey drift and geometric constraints are considered in the optimization process. Genetic algorithm method based on biological principles and harmony search algorithm method based on the processes of musical harmony are used for optimum designs. Two different space frames are solved for the cases of rigid and semi-rigid connections, separately. A computer program is coded in MATLAB for the purpose interacting with SAP2000 OAPI. Results obtained from the analyses show that type of semi-rigid connections plays a crucial role in the optimization of steel space frames and increases the optimum weight.
Advances in Civil Engineering | 2018
Ayse T. Daloglu; Musa Artar; Korhan Ozgan; Ali I. Karakas
Optimum design of braced steel space frames including soil-structure interaction is studied by using harmony search (HS) and teaching-learning-based optimization (TLBO) algorithms. A three-parameter elastic foundation model is used to incorporate the soil-structure interaction effect. A 10-storey braced steel space frame example taken from literature is investigated according to four different bracing types for the cases with/without soil-structure interaction. X, V, Z, and eccentric V-shaped bracing types are considered in the study. Optimum solutions of examples are carried out by a computer program coded in MATLAB interacting with SAP2000-OAPI for two-way data exchange. The stress constraints according to AISC-ASD (American Institute of Steel Construction-Allowable Stress Design), maximum lateral displacement constraints, interstorey drift constraints, and beam-to-column connection constraints are taken into consideration in the optimum design process. The parameters of the foundation model are calculated depending on soil surface displacements by using an iterative approach. The results obtained in the study show that bracing types and soil-structure interaction play very important roles in the optimum design of steel space frames. Finally, the techniques used in the optimum design seem to be quite suitable for practical applications.
Structural and Multidisciplinary Optimization | 2016
Ayse T. Daloglu; Musa Artar; Korhan Ozgan; Ali I. Karakas
Structural Engineering and Mechanics | 2016
Musa Artar
Steel and Composite Structures | 2016
Musa Artar
Steel and Composite Structures | 2015
Musa Artar; Ayse T. Daloglu
Steel and Composite Structures | 2015
Ayse T. Daloglu; Musa Artar
Steel and Composite Structures | 2016
Musa Artar
Structural Engineering and Mechanics | 2015
Musa Artar; Ayse T. Daloglu
e-Journal of New World Sciences Academy | 2017
Musa Artar; Recep Çatar; Ayse T. Daloglu