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      KCI등재후보 SCIE SCOPUS

      Coupling vibration response analysis of wind-train-bridge system considering the train-induced wind effect

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      https://www.riss.kr/link?id=A107960410

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      다국어 초록 (Multilingual Abstract)

      Considering the wind loads and track irregularity as external excitation, the wind-train-bridge dynamic analysis model considering the longitudinal freedom of train is established in the present study. In the model, the wind load of trainbridge system...

      Considering the wind loads and track irregularity as external excitation, the wind-train-bridge dynamic analysis model considering the longitudinal freedom of train is established in the present study. In the model, the wind load of trainbridge system under the train-induced wind field and the combined wind field is obtained by employing Computational Fluid Dynamics (CFD) method. With the CRH2 high-speed train and a 10-span simply-supported box girder bridge as an example, the whole history of the train running on the bridge under the combined effect of train-induced wind and crosswind is simulated to analyze the dynamic response of the train-bridge system. In addition, the operational safety indicators of the train are evaluated.
      According to the obtained results, the dynamic response of vehicles and bridges increases with the train speed without the consideration of the crosswind. In the combined wind field, the train-induced wind exerts a greater impact on the dynamic response of the vehicle, but has a less influence on that of the bridge simultaneously. Moreover, the influence of wind velocity is greater than that of train speed. When the wind-train-bridge dynamic response analysis is carried out based on traditional methods, the calculated wind load of the train-bridge system is too high, making the calculated responses too large to be consistent with actual values.

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      참고문헌 (Reference)

      1 Katsuhiro Kikuchi, "Study of aerodynamic coefficients used to estimate critical wind speed for vehicle overturning" Elsevier BV 147 : 1-17, 2015

      2 Pedro Aires Montenegro, "Stability of a train running over the Volga river high-speed railway bridge during crosswinds" Informa UK Limited 16 (16): 1121-1137, 2020

      3 He, X., "Simulation of train–bridge interaction under wind loads - a rigid-flexible coupling approach" 1 (1): 1-20, 2017

      4 C. Noger, "On the transient aerodynamic forces induced on heavy and light vehicles in overtaking processes" Inderscience Publishers 1 (1): 373-383, 2011

      5 R. Scotta, "Numerical wind tunnel for aerodynamic and aeroelastic characterization of bridge deck sections" Elsevier BV 167 : 96-114, 2016

      6 Mulugeta Biadgo Asress, "Numerical investigation on the aerodynamic characteristics of high-speed train under turbulent crosswind" Springer Science and Business Media LLC 22 (22): 225-234, 2014

      7 J.R. Bell, "Moving model analysis of the slipstream and wake of a high-speed train" Elsevier BV 136 : 127-137, 2015

      8 C.J. Baker, "Ground vehicles in high cross winds part I: Steady aerodynamic forces" Elsevier BV 5 (5): 69-90, 1991

      9 P. Lichtneger, "Full scale experiments on vehicle induced transient loads on roadside plates" Elsevier BV 136 : 73-81, 2015

      10 C.S. Cai, "Framework of vehicle–bridge–wind dynamic analysis" Elsevier BV 92 (92): 579-607, 2004

      1 Katsuhiro Kikuchi, "Study of aerodynamic coefficients used to estimate critical wind speed for vehicle overturning" Elsevier BV 147 : 1-17, 2015

      2 Pedro Aires Montenegro, "Stability of a train running over the Volga river high-speed railway bridge during crosswinds" Informa UK Limited 16 (16): 1121-1137, 2020

      3 He, X., "Simulation of train–bridge interaction under wind loads - a rigid-flexible coupling approach" 1 (1): 1-20, 2017

      4 C. Noger, "On the transient aerodynamic forces induced on heavy and light vehicles in overtaking processes" Inderscience Publishers 1 (1): 373-383, 2011

      5 R. Scotta, "Numerical wind tunnel for aerodynamic and aeroelastic characterization of bridge deck sections" Elsevier BV 167 : 96-114, 2016

      6 Mulugeta Biadgo Asress, "Numerical investigation on the aerodynamic characteristics of high-speed train under turbulent crosswind" Springer Science and Business Media LLC 22 (22): 225-234, 2014

      7 J.R. Bell, "Moving model analysis of the slipstream and wake of a high-speed train" Elsevier BV 136 : 127-137, 2015

      8 C.J. Baker, "Ground vehicles in high cross winds part I: Steady aerodynamic forces" Elsevier BV 5 (5): 69-90, 1991

      9 P. Lichtneger, "Full scale experiments on vehicle induced transient loads on roadside plates" Elsevier BV 136 : 73-81, 2015

      10 C.S. Cai, "Framework of vehicle–bridge–wind dynamic analysis" Elsevier BV 92 (92): 579-607, 2004

      11 W. Khier, "Flow structure around trains under side wind conditions: a numerical study" Elsevier BV 29 (29): 179-195, 2000

      12 J.Y. Kim, "Experimental and numerical analyses of train-induced unsteady tunnel flow in subway" Elsevier BV 22 (22): 166-172, 2007

      13 Wanming Zhai, "Dynamics of high-speed train in crosswinds based on an air-train-track interaction model" 한국풍공학회 20 (20): 143-168, 2015

      14 Xia H., "Dynamic interaction of train-bridge systems in high-speed railways: Theory and applications" Beijing Jiaotong University Press 2018

      15 Yulong Bao, "Dynamic interaction analysis of suspended monorail vehicle and bridge subject to crosswinds" Elsevier BV 156 : 107707-, 2021

      16 He Xia, "Dynamic analysis of railway bridge under high-speed trains" Elsevier BV 83 (83): 1891-1901, 2005

      17 Nan Zhang, "Dynamic analysis of coupled wind-train-bridge system considering tower shielding and triangular wind barriers" 한국풍공학회 21 (21): 311-329, 2015

      18 Nan Zhang, "Dynamic analysis of coupled vehicle–bridge system based on inter-system iteration method" Elsevier BV 114-115 : 26-34, 2013

      19 Y.L. Xu, "Dynamic analysis of coupled road vehicle and cable-stayed bridge systems under turbulent wind" Elsevier BV 25 (25): 473-486, 2003

      20 Z. W. Chen, "Dynamic Stress Analysis of Long Suspension Bridges under Wind, Railway, and Highway Loadings" American Society of Civil Engineers (ASCE) 16 (16): 383-391, 2011

      21 Y. L. Xu, "Dynamic Response of Suspension Bridge to High Wind and Running Train" American Society of Civil Engineers (ASCE) 8 (8): 46-55, 2003

      22 Hrvoje Kozmar, "Downslope Gusty Wind Loading of Vehicles on Bridges" American Society of Civil Engineers (ASCE) 20 (20): 04015008-, 2015

      23 Jing-wen Chen, "Detached-eddy simulation of flow around high-speed train on a bridge under cross winds" Springer Science and Business Media LLC 23 (23): 2735-2746, 2016

      24 F. Dorigatti, "Crosswind effects on the stability of a model passenger train—A comparison of static and moving experiments" Elsevier BV 138 : 36-51, 2015

      25 A. Premoli, "Comparison between steady and moving railway vehicles subjected to crosswind by CFD analysis" Elsevier BV 156 : 29-40, 2016

      26 Tian Zhang, "Analysis on running safety of train on the bridge considering sudden change of wind load caused by wind barriers" Springer Science and Business Media LLC 12 (12): 558-567, 2018

      27 T. Zhang, "Analysis on running safety of train on bridge with wind barriers subjected to cross wind" 한국풍공학회 17 (17): 203-225, 2013

      28 Xiang Huoyue, "Aerodynamic interaction between static vehicles and wind barriers on railway bridges exposed to crosswinds" 한국풍공학회 20 (20): 237-247, 2015

      29 Weiwei Guo, "Aerodynamic effect of wind barriers and running safety of trains on high-speed railway bridges under cross winds" 한국풍공학회 20 (20): 213-236, 2015

      30 C.S. Cai, "A coupled wind-vehicle-bridge system and its applications: a review" 한국풍공학회 20 (20): 117-142, 2015

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      연월일 이력구분 이력상세 등재구분
      2022 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2021-12-01 평가 등재후보 탈락 (해외등재 학술지 평가)
      2020-12-01 평가 등재후보로 하락 (해외등재 학술지 평가) KCI등재후보
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2005-09-23 학술지등록 한글명 : Wind and Structures, An International Journal
      외국어명 : Wind and Structures, An International Journal
      KCI등재
      2004-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2003-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      2016 0.9 0.45 0.69
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      0.62 0.58 0.301 0.15
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