首页> 外文期刊>Journal of Performance of Constructed Facilities >Investigation of Uplift Pressures on a Drainage Shaft Using ANSYS SOLID185 Elements and Drucker-Prager Failure Criterion for the Surrounding Rock Stratum
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Investigation of Uplift Pressures on a Drainage Shaft Using ANSYS SOLID185 Elements and Drucker-Prager Failure Criterion for the Surrounding Rock Stratum

机译:使用ANSYS固体185元件对排水轴上的提升压力的调查和周围岩石层的DRUCKER-PRAGER故障标准

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This paper presents an assessment study conducted to investigate the structural condition of a drainage shaft that is part of a very large aqueduct system located in the Northeastern United States. A comprehensive three-dimensional finite-element model was generated to simulate the hydrostatic uplift pressures the shaft is subjected to. The behavior of the steel shaft cover, anchor rods, other connecting elements, and the surrounding granite rock stratum are analyzed. The finite-element model covers a large cylindrical region with a radius of 32 m around the shaft centerline to a depth of 15.2 m. The rock material was modeled on the Drucker-Prager failure criterion since the von Mises criterion is not perfectly suited for modeling the yielding of a frictional material like granite rock. A condition assessment study like the one described in this paper required an extensive finite-element model created with comprehensive software like ANSYS to investigate the load and stress distribution of uplift forces through the elements of the shaft to ensure structural integrity. The special features of ANSYS SOLID185 elements are a good fit for the simulation of the nearly incompressible rock stratum of this study. SOLID185 elements with advanced capabilities such as fracture parameter calculations, stress stiffening, creep, nonlinear stabilization, and linear perturbation are used to model the rock. Since a structural condition assessment of a drainage shaft modeled with ANSYS SOLID185 finite elements have not been discussed in detail in a technical publication before, this paper fills that gap. (C) 2019 American Society of Civil Engineers.
机译:本文提出了一种评估研究,以研究排水轴的结构条件,该研究是位于美国东北部的一个非常大的渡槽系统的一部分。产生了全面的三维有限元模型以模拟轴的静压隆起压力。分析了钢轴盖,锚杆,其他连接元件和周围花岗岩岩石层的行为。有限元模型覆盖一个大的圆柱形区域,其半径为32米,轴中心线的深度为15.2米。由于Von Mises标准,岩石材料在Drucker-Prager故障标准上进行了建模,因为Von Mises标准并不完全适合于建模诸如花岗岩岩石等摩擦材料。一种条件评估研究,如本文描述的研究需要一个广泛的有限元模型,以综合软件,如ansys,以研究隆起力通过轴的元件来确保结构完整性的隆起力的负荷和应力分布。 ANSYS Solid185元素的特殊功能是拟合本研究的几乎不可压缩的岩石层的模拟。使用高级能力的固态185元素,如骨折参数计算,应力加强,蠕变,非线性稳定和线性扰动模拟岩石。由于尚未在技术出版物中详细讨论了与ANSYS固体185有限元建模的排水轴的结构条件评估,本文填补了这种缺口。 (c)2019年美国土木工程师协会。

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