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Analysis and Study of Fluid-solid Coupling and Combinatorial Loads of Pillar-less Canopy in Railway Station |
YANG Hui-dong1,LIU Xing-yong2,WANG Shi-pei1,ZHANG Yong-li2,LEI Xian-hua2 |
1. China Railway Eryuan Engineering Group Co. Ltd, Chengdu, Sichuan 610031,China; 2. ANSYS-China Agency in Chengdu, Chengdu,Sichuan 610016,China |
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Abstract Research purposes: Using ANSYS CFX top grade hydrodynamic software, this paper simulates the alteration condition of inner flow field and pressure field when high speed trains pass. And this paper also studies the effect of this alteration on the structure deformation and stress by applying specific fluid-solid coupling analysis technology of ANSYS.
Research conclusions:The maximal deformation in the vertical direction is 0. 662 mm when the train passes in the unidirectional way; it turns to 0. 775mm when the trains pass in reversible ways. The vertical deformation of the canopy truss will attach to its maximum with the downward direction under the action of other combinatorial loads which does not take the temperature in consideration. There are two aspects when the contribution of temperature is concerned: negative temperature makes the canopy shrink which increases the vertical downward deformation of the truss, while positive temperature makes the canopy expand which cancels out partial vertical downward deformation, the deformation value will reduce consequently. On the strength aspect , the maximal stress of the truss is less than the yield extreme of the material under the action of the considered load condition , so the canopy is feasible.
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Received: 26 May 2008
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[1] GB 500017 — 2003,钢结构设计规范[S].
[2] GB 50009—2001,建筑结构荷载规范[S].
[3] 张永立,柳兴勇,雷先华.高速列车驶过无柱雨棚车站时 的气流流态及雨棚受力分析[D].成都:ANSYS-China 成都办事处,2005.
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