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Ülker, Hakan.
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Dynamic analysis of flexible mechanisms by finite element method/ Ülker, Hakan.
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Kılıçaslan, Cenk.
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Modelling and simulation of metal cutting by finite element method/ Kılıçaslan, Cenk.
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Manoğlu, Kaya, author.
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Design of acoustic meta-material sound absorbers by finite element method / Manoğlu, Kaya, author.
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Çankaya, Mehmet Alper, author.
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Modeling of concrete under high strain rate conditions using nonlinear finite element method /
by
Tosun, Mehmet Mahir.
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Investigation of aerodynamic effects on performance of wind turbine blades by using finite element
by
Tatar, İlhan.
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Finite element method.
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Yıldırım, Tolga.
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Finite element method.
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Uyar, Ahmet Serhend, author.
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Finite element method.
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Turan, Ali Kıvanç.
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Finite element method.
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Akyol, Çağrı Gökhan, author.
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Finite element method.
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Şendur, Ali.
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Finite element method.
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Tirtom, İsmail.
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Finite element method.
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Batarlar, Baturay, author.
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Finite element method.
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Karabulut, Mehmet Görkem, author.
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Finite element method.
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Ramyar, Ayda, author.
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Finite element method.
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Baltacı, Çetin Özgür, author.
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Finite element method.
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Öterkuş, Ertan.
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Finite element method.
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Öztoprak, Nahit, author.
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Finite element method.
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Baysal, Onur.
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Finite element method.
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Bakunowicz, Paulina, author.
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Finite element method.
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Dumlu, Emre, author.
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Finite element method
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Cağaloğlu, Çare Neriman.
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Finite element method.
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Çelik, Ahmet, author.
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Finite element method.
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Altıntaş, Hayri, author.
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Finite element method
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Şahin, Selim, author
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Finite element method.
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Pehlivanoğlu, Uğur, author.
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Finite element method.
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Ceylan, Hasan, author.
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Finite element method.
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Çetin, Mert, author.
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Finite element method.
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Turan, Ali Kıvanç, author.
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Finite element method.
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Ateş, Selcan, author.
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Finite element method.
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Kangal, Serkan, author.
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Finite element method.
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Akari, Merve, author.
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acomplished by using Finite Element Method. A computer program is developed by using APDL (ANSYS Parametric
33.
by
İskeçe, Barış, author.
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studied by Finite Element Method with the help of ANSYS which is very powerful and well proven software
by
Kartav, Osman, author.
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Finite Difference Method and Finite Element Method since the mathematical model of the present problem is
by
Kavuncu, Ali Vala, author.
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the variable coefficients, Finite Element Method is used to reduce the differential eigenvalue problem
by
Sarı, Tansel, author.
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stiffeners are studied by Finite Element Method. The effects of stiffeners on natural frequencies are
by
Cin, Uğur, author.
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Finite Element Method. In the selected method, it is known that generalized differential eigenvalue
by
Akgüneyli, Melih, author.
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–axis wind turbines (VAWTs) with different design parameters are studied by Finite Element Method (FEM
by
Kaygısız, Kaan.
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with FEM (Finite Element Method) results found from solid model created in ANSYS. Good agreement is
by
Semerci, Aykut, author.
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, Levee, Flood, Finite Element Method
by
Akdağ, Osman, author.
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drum brake, is studied by Finite Element Method to analyze the brake squeal. Natural frequencies and
by
Aras, Tunç, author.
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of curvature is investigated using Finite Element Method. Firstly, a background of beam theories is
by
Deveci, Can Deniz.
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plate by using Theoretical Modal Analysis by Finite Element Method and Experimental Modal Analysis. In
by
Kamış, Ömer Faruk, author.
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proposed by this study and those of the finite element method were also compared.
by
İnayet, Mehmet Göktuğ, author.
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finite element method and compared to the those of identical regular piles. We performed analyses with
by
Bingöl, Hakan.
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the three link rigid planer manipulator. The finite element model of the three link flexible planer
by
Köroğlu, Fahri Baran, author.
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computationally expensive when along with finite element analysis, or it is hard to implement them when a more
by
Özkan, Mert, author.
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defense industries. In this study, the finite element method was used to model filament-wound composite
by
Öğünç, Ozan, author.
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parametrically designed using python, and its modal analysis is made using the CalculiX finite element program
by
Şahin, Esra, author.
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software used for modeling and structural analyses was SAP2000 v20.2 commercial finite element software
by
Bayhan, Mesut, author.
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multiple impact loading. MAT_162 material model in LS-DYNA finite element code was used to model the
by
İşler, Tuğçe, author.
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finite element method to evaluate the behavior of the grid under various conditions. Five different
by
Toptop, Evren, author.
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, thus reducing cost and time for the development. A mathematical model using finite element method was
by
Taner, Barış, author.
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reducing the node elements it is not accurate as Finite Element Analysis (FEA) method. Comparing the VJM to
by
Ergönenç, Çağrı.
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deforming plastically. Finite element modeling of sandwich structures subjected to blast loading were
by
Güler, Duygu.
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using Finite Element Method. In order to express the linear equation of motion, suspension link forces
by
Demir, Hatice Ayşegül, author.
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the building, numerical analysis using the finite element method was conducted in ANSYS software
by
Erten, Hacer İrem, author.
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obtained optimization results with the finite element method and the results in the literature, it has been
by
Şeker, Öncel, author.
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using finite element method (FEM) software (ANSYS) to obtain moment-rotation curves, including
by
Yorulmazlar, Berika, author.
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by using the commercial explicit finite element code LS-DYNA 971. Raw data obtained from experiments
by
Bektaş, Nurullah, author.
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analysis within a finite element model for the seismic analysis of unanchored circular steel liquid storage
by
Hasanoğlu, Emre Azim, author.
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properties. The optimum designs obtained are verified by finite element method, and mode shapes of laminated
by
Kalyoncu, Gülce, author.
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of fluid flow were performed by solving Navier-Stokes equation numerica lly with finite element
by
Odacı, İsmet Kutlay, author.
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analytically. The composite plates were modelled using MAT_162 material model in LS-DYNA finite element code
by
Beylergil, Bertan, author.
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in-plane mechanical properties. Finite element method (FEM) was used to evaluate the effects of electrospun
by
Teomete, Egemen.
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, finite element analyses is the most common method of structural analyses of historical masonries. In this
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