塔克河人行悬索桥锚块式刚性对称LISA结构设计

Aco Wahyudi Efendi
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引用次数: 3

摘要

锚块是悬索桥施工中非常危险的部件和元素之一,因为几乎悬索桥的阻力取决于锚块固定的电缆。锚块行为研究的目的是找出锚块单元中发生的主要应力信息。在本研究中,研究者参考刚性对称人行悬索桥设计准则通函,采用有限元方法lisa程序对锚块进行结构建模。锚块在96米跨度处接受来自圆台的适当拉力后的情况下,悬索桥缆索的拉力为664.6 kN,在锚块混凝土表面产生6.184 N/mm2的应力,使用的混凝土等级为fc 30 MPa,在桥梁的悬索桥缆索工作点处存在22.26 N/mm2的张力。图亚克河跨径96 m悬索桥锚固块分析结果满足轴向承载能力要求,即轴向承载能力大于Borpile构型所产生的最大轴向力。在使用LISA FEA装置进行有限元分析时,锚块与悬索桥缆索的截面出现了较大的应力,如图9所示,这是由于悬索桥缆索受到的拉力较大,并且锚块保持稳定状态的能力是已知的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural Design Tuak River Pedestrian Suspension Bridge Anchor Block Type Rigid Symmetric with LISA
Anchor blocks are one of the components and elements that are very risky for suspension bridge construction, because almost The ability The Suspension bridge resistance rests on the cables held in place by the anchor block. This anchor block behavior study is to find out the major stress information occurring in the anchor block elements. In this research, the researcher refers to the Circular Letter of Design Criteria for Rigid Symmetrical Pedestrian Suspension Bridge, and conducts structural modeling using the finite element method-LISA program on anchor blocks. Condition of the anchor block after receiving the appropriate tensile force from the round table at a span of 96 meters, the tensile force of the suspension bridge cable is 664.6 kN, resulting in a stress of 6.184 N/mm2 on the concrete surface of the anchor block using the concrete grade is fc 30 MPa, in the suspension cable of the bridge there is a tension of 22.26 N/mm2 at the point of work. The results of the analysis of the anchor block used on the Tuak River Suspension Bridge with a span of 96 m can meet the required criteria, namely the axial load-bearing capacity, which is greater than the maximum axial force that occurs in the Borpile configuration. In the analysis of the finite element method using the LISA FEA device, a significant stress occurs in the anchor block section with the suspension bridge cable as shown in Figure 9, this occurs because of the large tensile force on the suspension bridge cable and the ability of the anchor block to remain in a stable condition is known.
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