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      KCI등재 SCIE SCOPUS

      Dynamic characteristics and wind-induced vibration coefficients of purlin-sheet roofs

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      https://www.riss.kr/link?id=A103565148

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      다국어 초록 (Multilingual Abstract)

      This paper presents the dynamic characteristics analysis of the purlin-sheet roofs by the random vibration theories. Results show that the natural vibration frequency of the purlin-sheet roof is low, while the frequencies and mode distributions are ve...

      This paper presents the dynamic characteristics analysis of the purlin-sheet roofs by the random vibration theories. Results show that the natural vibration frequency of the purlin-sheet roof is low, while the frequencies and mode distributions are very intensive. The random vibration theory should be used for the dynamic characteristics of the roof structures due to complex vibration response. Among the first 20th vibration modes, the first vibration mode is mainly the deformations of purlins, while the rest modes are the overall deformations of the roof. In the following 30th modes, it mainly performs unilateral local deformations of the roof. The frequency distribution of the first 20th modes varies significantly while those of the following 30th modes are relatively sensitive. For different parts, the contributions of vibration modes on the vibration response are different. For the part far from the roof ridge, only considering the first 5th modes can reflect the wind-induced vibration response. For the part near the ridge, at least the first 12 modes should be considered, due to complex vibration response. The wind vibration coefficients of the upwind side are slightly higher than that of the leeward side. Finally, the corresponding wind vibration coefficient for the purlin-sheet roof is proposed.

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      참고문헌 (Reference)

      1 Lu, F., "Wind-induced dynamic response and wind load factor for longspan flat roof structures" 19 (19): 52-57, 2002

      2 Uematsu, Y., "Wind-induced dynamic response and resultant load estimation of a circular flat roof" 83 (83): 251-261, 1999

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      4 Fu, J., "Wind tunnel and full-scale study of wind effects on a large roof structure" 37 (37): 12-18, 2010

      5 Yuan, W. B., "Web-flange distortional buckling of partially restrained coldformed steel purlins under uplift loading" 89 : 476-481, 2014

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      7 Surry, D., "Structurally effective static wind loads for roof panels" 133 (133): 871-885, 2007

      8 Zhang, X. T., "Structural Wind Engineering" China Architecture and Building Press 2006

      9 Krentowski, J., "Steel roofing disaster and the effect of the failure of butt joints" 45 : 245-251, 2014

      10 Jianguo Cai, "Static analysis of a radially retractable hybrid grid shell in the closed position" 국제구조공학회 18 (18): 1391-1404, 2015

      1 Lu, F., "Wind-induced dynamic response and wind load factor for longspan flat roof structures" 19 (19): 52-57, 2002

      2 Uematsu, Y., "Wind-induced dynamic response and resultant load estimation of a circular flat roof" 83 (83): 251-261, 1999

      3 Farquhar, S., "Wind tunnel and uniform pressure tests of a standing seam metal roof model" 131 (131): 650-659, 2005

      4 Fu, J., "Wind tunnel and full-scale study of wind effects on a large roof structure" 37 (37): 12-18, 2010

      5 Yuan, W. B., "Web-flange distortional buckling of partially restrained coldformed steel purlins under uplift loading" 89 : 476-481, 2014

      6 Lin, J. X., "The distribution of pressure near roof corners of flat roof low buildings" 56 (56): 235-265, 1995

      7 Surry, D., "Structurally effective static wind loads for roof panels" 133 (133): 871-885, 2007

      8 Zhang, X. T., "Structural Wind Engineering" China Architecture and Building Press 2006

      9 Krentowski, J., "Steel roofing disaster and the effect of the failure of butt joints" 45 : 245-251, 2014

      10 Jianguo Cai, "Static analysis of a radially retractable hybrid grid shell in the closed position" 국제구조공학회 18 (18): 1391-1404, 2015

      11 Kasperski, M., "Specification of the design wind load—A critical review of code concepts" 97 (97): 335-357, 2009

      12 Pei, Y. Z., "Research on Wind Loads and Wind-induced Responses of Large-span Aircraft Maintenance Hangars" Tsinghua University 2009

      13 Tamura, T., "Reliability on CFD estimation for wind-structure interaction problems" 81 (81): 7-143, 1999

      14 Li, Y.Q., "Random wind load simulation and computer program for large-span spatial structures" 7 (7): 3-11, 2001

      15 Huang, B.C, "Principle and Application of Structural Wind Resistance Analysis" Tongji University Press 2008

      16 Robertson, A., "Prediction of structural loads from fluctuating wind pressures : Validation from full-scale force and pressure measurements" 74 (74): 631-640, 1998

      17 Jue Zhu, "Numerical study on the moment capacity of zed-section purlins under uplift loading" 국제구조공학회 49 (49): 147-161, 2014

      18 Jubayer, C.M, "Numerical simulation of wind effects on a stand-alone ground mounted photovoltaic(PV)system" 134 : 56-64, 2014

      19 Cai, J. G., "Non-linear stability analysis of hybrid grid shells" 13 (13): 2013

      20 Jianguo Cai, "Non-linear stability analysis of a hybrid barrel vault roof" 국제구조공학회 14 (14): 571-586, 2013

      21 Cope, A. D., "Low-rise gable roof wind loads : Characterization and stochastic simulation" 93 (93): 719-738, 2005

      22 "Load code for the design of building structures" Architecture & Building Press 2012

      23 Zhang, L., "Lateral buckling of simply supported C-and Z-section purlins with top flange horizontally restrained" 99 : 155-167, 2016

      24 Cai, J. G., "Investigation of the static and dynamic behavior of a deployable hybrid grid shell" 16 (16): 1103-1111, 2013

      25 Wu Zhou, "Improving the dynamic performance of capacitive micro-accelerometer through electrical damping" Springer Nature 22 (22): 2961-2969, 2016

      26 Davenport, A. G., "Gust loading factors" 93 (93): 11-34, 1967

      27 Habte, F., "Full-scale testing to evaluate the performance of standing seam metal roofs under simulated wind loading" 105 : 231-248, 2015

      28 J. D. Ginger, "Fluctuating wind loads across gable-end buildings with planar and curved roofs" 한국풍공학회 7 (7): 359-372, 2004

      29 Lou, W., "Fitting formula to wind pressure distribution on long-span roofs and wind load suggestion" 30 (30): 588-593, 2002

      30 Ryan B Jacklin, "Finite-element modeling of a light-framed wood roof structure" 한국풍공학회 19 (19): 603-621, 2014

      31 Xu, A., "Field measurements of typhoons according to civil engineering research" 28 (28): 23-31, 2010

      32 Ahmad, S., "Effect of geometry on wind pressures on low-rise hip roof buildings" 90 (90): 755-779, 2002

      33 Amy C. Lovisa, "Development and validation of a numerical model for steel roof cladding subject to static uplift loads" 한국풍공학회 17 (17): 495-513, 2013

      34 Uematsu, Y., "Design wind loads for structural frames of flat long-span roofs : Gust loading factor for the beams supporting roofs" 66 (66): 35-50, 1997

      35 Cai, J. G., "Design and analysis of a glass roof structure" 22 (22): 677-686, 2013

      36 Tieleman, H. W., "Characteristics of mean and fluctuating pressure coefficients under corner(delta wing)vortices" 52 : 263-275, 1994

      37 Liu, M., "Characteristics of dynamic pressures on a saddle type roof in various boundary layer flow" 150 : 1-14, 2016

      38 Ren, C., "Buckling behaviour of partially restrained cold-formed steel zed purlins subjected to transverse distributed uplift loading" 114 : 14-24, 2016

      39 Martins, N. E., "Application of statistical models to predict roof edge suctions based on wind speed" 150 : 42-53, 2016

      40 Sun, X., "Application of numerical wind tunnel to simulate wind load on long-span roof" 38 (38): 83-86, 2008

      41 Nakayama, M., "An efficient method for selection of vibration modes contributory to wind response on dome-like roofs" 73 (73): 31-43, 1998

      42 Zhou, W., "Air damping analysis in comb microaccelerometer" 2014 : 6-, 2014

      43 Shu, X.L., "AR model of wind speed time series and its rapid implementation" 9 (9): 27-32, 2003

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