浅埋有盖波纹金属涵洞荷载和阻力系数分级的挠曲承载力标准

Bujing Liu, J. Brian Anderson, James S. Davidson
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引用次数: 0

摘要

交通部门必须对跨度超过 20 英尺(6.1 米)的桥梁进行检查和评级。其中一个经常遇到的挑战是对浅埋波纹金属涵洞进行评级,因为没有适用于所有截面和深度的标准方法来定义力矩或组合力矩和推力控制时的阻力。常用的涵洞分析和设计(CANDE)有限元软件是专为涵洞设计开发的,其配套程序 CANDE Tool Box 可以计算荷载等级系数。然而,由于土壤与结构相互作用以及波纹横截面屈服等非线性因素,要准确提取浅埋波纹金属涵洞的可用阻力可能需要繁琐的迭代程序。此外,由于没有正确执行非线性程序而产生的额定系数,从安全角度来看,可能表明可用阻力是不保守的。AASHTO 最近采用并纳入 CANDE 的改进措施包括组合推力-力矩标准,但仅适用于具有深波纹横截面的涵洞。因此,本研究的目的是评估浅埋金属波纹管和拱形结构(包括标准波纹横截面)的荷载分级挠度标准,以简化流程,同时又不大幅降低精度。首先讨论了现有方法和最近针对浅埋暗渠方案实施的综合标准所面临的挑战。然后,制定并介绍了基于荷载和阻力系数等级的修正抗弯承载力标准。最后,使用一系列实用的波纹金属涵洞尺寸和参数对这些方法的准确性和适用性进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexural Capacity Criteria for Load And Resistance Factor Rating of Shallow Covered Corrugated Metal Culverts
Departments of transportation are required to inspect and rate bridges that span more than 20 ft (6.1 m). One frequent challenge is rating shallow-buried corrugated metal culverts, since there are no standard methodologies deemed applicable to all sections and depths for defining the resistance when moment or combined moment and thrust controls. The commonly used Culvert ANalysis and DEsign (CANDE) finite element software was developed specifically for culvert design; its companion program, CANDE Tool Box, enables computing of load rating factors. However, owing to nonlinearities associated with soil–structure interaction and yielding of the corrugated cross-section, extracting accurate representations of available resistance for shallow-buried corrugated metal culverts may require a cumbersome iterative procedure. Furthermore, the resulting rating factor from not properly implementing nonlinear procedures may indicate an available resistance that is unconservative from a safety perspective. Recent improvements adopted by AASHTO and incorporated into CANDE include combined thrust–moment criterion, but are deemed suitable only for culverts with deep corrugation cross-sections. The objective of this research was therefore to assess flexure criteria for load rating shallow-buried corrugated metal pipe and arch structures, including standard corrugation cross-sections, to simplify the process without significantly sacrificing accuracy. Challenges with available methods and recently implemented combined criterion for the shallow-buried culvert scenario are first discussed. A modified flexural capacity criterion based on load and resistance factor rating is then developed and presented. Finally, the accuracy and applicability of the methodologies are assessed using a range of practical corrugated metal culvert dimensions and parameters.
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