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      Effect of temperature and spring-mass systems on modal properties of Timoshenko concrete beam

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      https://www.riss.kr/link?id=A105106394

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      다국어 초록 (Multilingual Abstract)

      An exact solution for the title problem was obtained in closed-form fashion considering general boundary conditions. The expressions of moment, shear and shear coefficient (or shear factor) of cross section under the effect of arbitrary temperature di...

      An exact solution for the title problem was obtained in closed-form fashion considering general boundary conditions. The expressions of moment, shear and shear coefficient (or shear factor) of cross section under the effect of arbitrary temperature distribution were first derived. In view of these relationships, the differential equations of Timoshenko beam under the effect of temperature were obtained and solved. Second, the characteristic equations of Timoshenko beam carrying several spring-mass systems under the effect of temperature were derived based on the continuity and force equilibrium conditions at attaching points. Then, the correctness of proposed method was demonstrated by a Timoshenko laboratory beam and several finite element models. Finally, the influence law of different temperature distribution modes and parameters of spring-mass system on the modal characteristics of Timoshenko beam had been studied, respectively.

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      참고문헌 (Reference)

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      1 Bruch, J.C., "Vibrations of a mass-loaded clamped-free Timoshenko beam" 114 (114): 341-345, 1987

      2 Kim, J.T., "Vibration-based damage monitoring in model plate-girder bridges under uncertain temperature conditions" 29 (29): 1354-1365, 2007

      3 Peeters, B., "Vibration-based damage detection in civil engineering: Excitation sources and temperature effects" 10 (10): 518-527, 2001

      4 Abramovich, H., "Vibration of a cantilever Timoshenko beam with translational and rotational springs and with tip mass" 154 (154): 67-80, 1992

      5 Abramovich, H., "Vibration of a cantilever Timoshenko beam with a tip mass" 148 (148): 162-170, 1991

      6 Xia, Y., "Variation of structural vibration characteristics versus non-uniform temperature distribution" 33 (33): 146-153, 2011

      7 Farrar, C.R., "Variability of modal parameters measured on the Alamosa Canyon Bridge" 1997

      8 Doebling, S.W., "Using statistical analysis to enhance modal-based damage identification" 1997

      9 Rossit, C.A., "Transverse vibrations of a cantilever beam with a spring mass system attached on the free end" 28 : 933-939, 2001

      10 Rossit, C.A., "Transverse normal modes of vibration of a cantilever Timoshenko beam with a mass elastically mounted at the free end" 110 (110): 2837-2840, 2001

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      32 "GB 50010-2010, Code for Design of Concrete Structures"

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      36 Tamer A. El-Sayed, "Exact vibration of Timoshenko beam combined with multiple mass spring sub-systems" 국제구조공학회 57 (57): 989-1014, 2016

      37 H. Su, "Exact natural frequencies of structures consisting of two-part beam-mass systems" 국제구조공학회 19 (19): 551-566, 2005

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      40 Liu, H., "Effect of temperature variation on modal frequency of reinforced concrete slab and beam in cold regions" 2016 (2016): 1-17, 2016

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      42 Shoukry, S.N., "Effect of moisture and temperature on the mechanical properties of concrete" 25 (25): 688-696, 2011

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      45 Maeck, J., "Damage identification on the Z24-bridge using vibration monitoring analysis" 10 (10): 512-517, 2001

      46 Ni, Y.Q., "Correlating modal properties with temperature using long-term monitoring data and support vector machine technique" 27 (27): 1762-1773, 2005

      47 Alvandi, A., "Assessment of vibrationbased damage identification techniques" 292 (292): 179-202, 2006

      48 Sohn, H., "An experimental study of temperature effect on modal parameters of the Alamos Canyon Bridge" 28 (28): 879-897, 1999

      49 Zhou, G.D., "A summary review of correlations between temperatures and vibration properties of long-span bridges" 2014 (2014): 1-19, 2014

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      52 Baldwin, R., "A Stress-strain Relationship for Concrete at High Temperatures" 1973

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