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      KCI등재 SCIE SCOPUS

      Nonlinear Winkler-based Beam Element with Improved Displacement Shape Functions

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      https://www.riss.kr/link?id=A104794150

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      다국어 초록 (Multilingual Abstract)

      This paper presents a Winkler-based beam element capable of representing the nonlinear interaction mechanics between the beam and the foundation. The element is derived based on a displacement-based formulation using improved displacement shape functi...

      This paper presents a Winkler-based beam element capable of representing the nonlinear interaction mechanics between the beam and the foundation. The element is derived based on a displacement-based formulation using improved displacement shape functions. The improved displacement shape functions are analytically derived based on the homogeneous solution to the governing differential equilibrium equation of the problem, thus enhancing the model accuracy. An iterative technique is used to determine the length-scale parameter needed in evaluating the displacement shape functions. Two numerical examples are used to verify the accuracy and the efficiency of the proposed Winkler-based beam model.

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      참고문헌 (Reference)

      1 SEAOC, "Vision 2000: Performance based seismic engineering of buildings" Structural Engineers Association of California 1995

      2 김성민, "Vibration of Simplified Prestressed Pavement Model Under Moving Two-Axle Harmonic Loads" 대한토목학회 13 (13): 409-421, 2009

      3 Wang, X. Y., "The coupled vibration of fluid-filled multiwalled carbon nanotubes with intertube deformation" 108 (108): 1-13, 2010

      4 Zhang, Y, "Tensionless contact of a finite beam resting on Reissner foundation" 50 (50): 1035-1041, 2009

      5 Celep, Z., "Symmetrically loaded beam on a twoparameter tensionless foundation" 27 (27): 555-574, 2007

      6 Ma, X., "Static analysis of an infinite beam resting on a tensionless Pasternak foundation" 28 (28): 697-703, 2009

      7 Raychowdhury, P, "Seismic response of low-rise Steel Moment- Resisting Frame (SMRF) buildings incorporating nonlinear Soil-Structure Interaction (SSI)" 33 (33): 958-967, 2011

      8 Reissner, E, "Note on the formulation of the problem of the plate on an elastic foundation" 4 (4): 88-91, 1967

      9 Sapountzakis, E. J., "Nonlinear response of shear deformable beams on tensionless nonlinear viscoelastic foundation under moving loads" 330 (330): 5410-5426, 2011

      10 Mullapudi, R., "Nonlinear finite element modeling of beams on two-parameter foundations" 37 (37): 334-342, 2010

      1 SEAOC, "Vision 2000: Performance based seismic engineering of buildings" Structural Engineers Association of California 1995

      2 김성민, "Vibration of Simplified Prestressed Pavement Model Under Moving Two-Axle Harmonic Loads" 대한토목학회 13 (13): 409-421, 2009

      3 Wang, X. Y., "The coupled vibration of fluid-filled multiwalled carbon nanotubes with intertube deformation" 108 (108): 1-13, 2010

      4 Zhang, Y, "Tensionless contact of a finite beam resting on Reissner foundation" 50 (50): 1035-1041, 2009

      5 Celep, Z., "Symmetrically loaded beam on a twoparameter tensionless foundation" 27 (27): 555-574, 2007

      6 Ma, X., "Static analysis of an infinite beam resting on a tensionless Pasternak foundation" 28 (28): 697-703, 2009

      7 Raychowdhury, P, "Seismic response of low-rise Steel Moment- Resisting Frame (SMRF) buildings incorporating nonlinear Soil-Structure Interaction (SSI)" 33 (33): 958-967, 2011

      8 Reissner, E, "Note on the formulation of the problem of the plate on an elastic foundation" 4 (4): 88-91, 1967

      9 Sapountzakis, E. J., "Nonlinear response of shear deformable beams on tensionless nonlinear viscoelastic foundation under moving loads" 330 (330): 5410-5426, 2011

      10 Mullapudi, R., "Nonlinear finite element modeling of beams on two-parameter foundations" 37 (37): 334-342, 2010

      11 Sapountzakis, E. J., "Nonlinear dynamic analysis of Timoshenko beam-columns partially supported on tensionless Winkler foundation" 88 (88): 1206-1219, 2010

      12 Sapountzakis, E. J., "Nonlinear analysis of shear deformable beam-columns partially supported on tensionless three-parameter foundation" 81 (81): 1833-1851, 2011

      13 Gosowski, B, "Non-uniform torsion of stiffened open thinwalled members of steel structures" 63 (63): 849-865, 2007

      14 김성민, "Moving Two-Axle High Frequency Harmonic Loads on Axially Loaded Pavement Systems" 대한토목학회 14 (14): 513-526, 2010

      15 He, X. G., "Modeling dowel action of reinforcement bars for finite element analysis of concrete structures" 79 (79): 595-604, 2001

      16 Wolfram, S., "Mathematica reference guide" Addison-Wesley Publishing Company 1992

      17 Matlock, H., "Generalized solutions for laterally loaded piles" 86 (86): 63-91, 1960

      18 Byoung-KooLee, "Free Vibrations of Tapered Beams Laterally Restrained by Elastic Springs" 대한토목학회 7 (7): 193-199, 2003

      19 Limkatanyu, S., "Frame element with lateral deformable supports: Formulations and numerical validation" 84 (84): 942-954, 2006

      20 Mindlin, R. D, "Force at a point in the interior of a semi-infinite solid" 7 : 195-202, 1936

      21 Tong, P., "Finite element method: Basic technique and implementation" MIT Press 1977

      22 Miranda, C., "Finite beams on elastic foundation" 92 : 131-142, 1966

      23 Taylor, R. L., "FEAP: A finite element analysis program, User Manual: Version 7.3"

      24 Eisenberger, M., "Exact stiffness matrix for beams on elastic foundation" 21 (21): 1355-1359, 1985

      25 Selvadurai, A. P. S., "Elastic analysis of soil-foundation interaction" Elsevier Publishing Company, Inc. 1979

      26 Gendy, A. S., "Effective modeling of beams with shear deformations on elastic foundation" 8 (8): 607-622, 1999

      27 Winkler, E., "Die lehre von der elastizität und Festigkeit"

      28 Zhang, L., "Deformation analysis of geocell reinforcement using Winkler model" 36 (36): 977-983, 2009

      29 Limkatanyu, S., "Contact-interface fiber-section element: shallow foundation modeling" 4 (4): 173-190, 2012

      30 Chore, H. S., "Building frame-pile foundation-soil interaction analysis: A parametric study" 3 (3): 55-79, 2010

      31 Avramidis, I. E., "Bending of beams on threeparameter elastic foundation" 43 (43): 357-375, 2006

      32 Vlasov, V. Z., "Beams, plates, and shells on elastic foundation, Israel Program for Scientific Translations"

      33 Hetenyi, M., "Beams on elastic foundations" University of Michigan Press 1946

      34 Harden, C. W., "Beam-on-nonlinear-Winkler-foundation modeling of shallow rocking-dominated footings" 25 (25): 277-300, 2009

      35 Ting, B. Y., "Beam on elastic foundation finite elements" 110 (110): 2324-2339, 1984

      36 Pilkey, W. D., "Analysis and design of elastic beams: Computational methods" John Wiley & Sons Inc. 2007

      37 Bowles, J. E, "Analysis and computer methods in foundation engineering" McGraw Hill 1974

      38 Kerr, A. D, "A study of a new foundation model" 1 (1): 135-147, 1965

      39 Taciroglu, E., "A robust marcoelement model for soil-pile interaction under cyclic loads" 132 (132): 1304-1314, 2006

      40 Mahmood Mehrdad Shokrieh, "A comparative study for beams on elastic foundation models to analysis of mode-I delamination in DCB specimens" 국제구조공학회 37 (37): 149-162, 2011

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