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NONLINEAR FINITE ELEMENT ANALYSES OF THE CONCRETE-FILLED STEEL TUBULAR WIND TURBINE TOWER JOINTS

机译:混凝土管式风力涡轮机塔接缝的非线性有限元分析

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The failure mode and ultimate bearing capacity of wind generator latticed concrete-filled circular steel tubular welded K shape unstiffened joints and gusset plate joints were studied under axial loads by finite element program ABAQUS,and the main parameters were analyzed,the influence laws of diameter-thickness ratio γ of tower column,diameter ratio β between web member and tower column,joint gap a and joint plate thickness tg on the failure mode and ultimate bearing capacity of the two kinds of joints were investigated.Results show that for the unstiffened welded K-joints,the γ and β have more significant influence on the failure mode and bearing capacity.The bearing capacity decreases with the increase of the γ and reduce of the β under the same failure mode.While the influence of gap g on the failure mode and bearing capacity is relatively smaller.For the welded gusset plate K-joints,the joint plate's thickness directly affect the failure mode and bearing capacity,and the buckling failures along the buckling lines and the fractures along the tear lines of gusset plates occur when the joint plates are thinner,so the design control areas of the joint plates are obvious the buckling lines and tear lines.The bearing capacity is mainly determined by the stability bearing capacity of joint plates.While the failure mode turns into the buckling of compression web member when the thickness of joint plate is up to a certain value and the bearing capacity are decided by the buckling load of the web members.The finite element analysis results can provide some references for engineering design.
机译:风力发电机的故障模式和极限承载力铺薄的混凝土填充圆形钢管焊接K形状不稳定的接头和角撑板接头在轴向载荷下,通过有限元编程ABAQUS进行了分析,主要参数,直径的影响法则 - 研究了塔柱厚度γ,腹板和塔柱之间的直径比β,接头间隙A和接头板厚度Tg对两种关节的故障模式和最终承载力的厚度Tg。结果表明,对于不稳定的焊接k - γ和β对故障模式和承载力具有更大的影响。承载能力随着γ的增加而降低,并在相同的故障模式下降低β。差距G对故障模式的影响承载力相对较小。对于焊接的角撑板k关节,关节板的厚度直接影响失效模式和承载力,以及屈曲当关节板更薄时,沿屈曲线和沿角撑板的撕裂线的裂缝的故障发生,因此接头板的设计控制区域明显是屈曲线和撕裂线。承载力主要取决于稳定性关节板的承载力。当接头板的厚度高达一定值时,故障模式变成压缩腹板构件的屈曲,并且承载能力由网构件的屈曲负荷决定。有限元分析结果可以为工程设计提供一些引用。

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