Finite Element Modelling and Simulation of Tunnel Gates of Dam Structures in ABAQUS Using Reduced-Integrated 8-Node Hexahedral Solid-Shell Element

IF 0.8 Q3 ENGINEERING, MULTIDISCIPLINARY Modelling and Simulation in Engineering Pub Date : 2024-05-06 DOI:10.1155/2024/7142460
C. Balkaya
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Abstract

Tunnel gates used for water regulation are very important and critical parts of dam safety. This is because they are exposed to the hydrostatic pressure of the total height of the water in the reservoir. In this case study, a nonlinear finite element modelling and simulation of the diversion tunnel gate of the Gokdere Bridge Dam in Adana, Turkey, are performed to investigate the performance and capacity of the structure before collapse. The maximum water level in the reservoir is 85 meters. A 3D finite element modelling of the gate structure was created, considering the details of the construction project. Both the concrete structure and the anchorages between the concrete of the first and second phases of the gate structure and the steel profiles in the gate supports are modelled to obtain composite behavior, bond stresses, and a more accurate load and stress distribution. For the nonlinear finite element modelling in ABAQUS, C3D8R reduced-integrated 8-node hexahedral solid elements with concrete damage and tension stiffening are used. For the simulation, linear and nonlinear capacity analyses of the gate structure are performed, and the stresses, strains, deformations, and crack propagation in concrete and steel are investigated. It is found that nonlinear analysis and finite element modelling of anchors for capacity and load transfer are important in the simulation of gate structures to prevent tunnel collapse. It is suggested that dam monitoring and control systems and the use of multiple gates are recommended when a problem occurs in the operation of a gate in the diversion tunnel gates of a dam structure.
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在 ABAQUS 中使用简化集成的 8 节点六面体固壳单元对大坝结构的隧道闸门进行有限元建模和仿真
用于水量调节的隧洞闸门是大坝安全中非常重要和关键的部分。这是因为它们要承受水库总水位的静水压力。在本案例研究中,我们对土耳其阿达纳 Gokdere Bridge 大坝的引水隧洞闸门进行了非线性有限元建模和模拟,以研究该结构在坍塌前的性能和承载能力。水库的最高水位为 85 米。考虑到施工项目的细节,对闸门结构进行了三维有限元建模。为获得复合行为、粘结应力以及更精确的荷载和应力分布,对混凝土结构以及闸门结构一期和二期混凝土与闸门支撑钢型材之间的锚固件进行了建模。在 ABAQUS 中进行非线性有限元建模时,使用了带有混凝土损伤和拉伸刚度的 C3D8R 简化积分 8 节点六面体实体单元。模拟中,对闸门结构进行了线性和非线性承载力分析,并研究了混凝土和钢材中的应力、应变、变形和裂缝扩展。研究发现,对锚杆的承载力和荷载传递进行非线性分析和有限元建模对于模拟闸门结构以防止隧道坍塌非常重要。研究建议,当大坝引水隧洞闸门的运行出现问题时,建议使用大坝监测和控制系统以及多闸门。
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来源期刊
Modelling and Simulation in Engineering
Modelling and Simulation in Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
2.70
自引率
3.10%
发文量
42
审稿时长
18 weeks
期刊介绍: Modelling and Simulation in Engineering aims at providing a forum for the discussion of formalisms, methodologies and simulation tools that are intended to support the new, broader interpretation of Engineering. Competitive pressures of Global Economy have had a profound effect on the manufacturing in Europe, Japan and the USA with much of the production being outsourced. In this context the traditional interpretation of engineering profession linked to the actual manufacturing needs to be broadened to include the integration of outsourced components and the consideration of logistic, economical and human factors in the design of engineering products and services.
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