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在役風電塔結構的最不利風--震組合作用響應分析

Dynamic response analysis on the structure of wind power towers under the most unfavorable wind-earthquake combination action

  • 摘要: 因風電塔整體結構不沿軸向對稱,為明確該結構的受力特性和保證結構安全,采用國外及國內兩種數值計算方法對塔筒結構進行了研究,分析風荷載作用下、地震動作用下和風–地震組合作用下的塔體結構的受力差異.在此基礎上對塔筒結構進行風–地震組合作用下的不同地震動輸入方向的動力響應分析進行研究.結果指出了該狀態下對塔筒結構最不利的地震動輸入方向以及該作用條件下塔筒結構的薄弱位置為塔筒開口位置.

     

    Abstract: With the increasing of wind power generation facilities, structure safety is particularly important in the service of wind power towers. Wind power towers are a typical top-heavy structure which is similar to a kind of thin-wall cylindrical structure. The supporting structure of a wind power tower is forced under the pressure of the upper engine room, rotor and blades, the side of the tower is thrust by ocean wind, and when earthquakes happen the tower undergoes the horizontal and vertical seismic action. Since the whole structure of the tower is asymmetric, in order to clarify the mechanical characteristics and ensure the structure safety, the tower structure was studied by foreign and domestic numerical calculation methods. The differences in force of the tower structure were analyzed under wind load only, earthquake load only and the wind-earthquake load combination case. Then the dynamic responses of the tower structure were performed under the combined action of wind and earthquake load with different earthquake input directions. The results pointed out the earthquake input direction which is most disadvantageous to the tower structure and the weak position of the tower structure is door opening location under this condition.

     

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