埋在倾斜地面下的管道的垂直荷载

IF 2.5 3区 工程技术 Q2 ENGINEERING, CIVIL
Muhammad Umer Arif Khan, S. Shukla
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引用次数: 5

摘要

在世界范围内,管道通常安装在地下进行公用事业输送。埋地管道的竖向荷载是保证其安全设计和安装的重要参数。在荷载计算中考虑土拱有助于实现更真实、更有效的设计。在以往的设计中,考虑到拱效应,设计图纸主要是供工程实践人员计算埋于水平地面以下的管道竖向荷载时使用。目前还没有计算斜坡地下埋管竖向荷载的设计图纸。本文尝试推导出考虑管道上覆土体坡面和拱拱现象的广义解析表达式。利用所开发的广义表达式给出了考虑边坡几何形状、土壤性质和埋深等特定值的设计图表。此外,针对开发的数值模型和独立研究,将特定土壤参数的分析结果与从商业软件PLAXIS 2D中提取的结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vertical load on a conduit buried under a sloping ground
Conduits are commonly installed below the ground for utility conveyance around the world. Vertical load on a buried conduit is an important parameter that needs to be known to ensure its safe design and installation. Consideration of soil arching in load calculations helps achieve a more realistic and efficient design. In the past, considering the arching effect, the design charts have been presented for use by practicing engineers to calculate the vertical load on the conduit buried below the level ground. There are currently no design charts for calculating the vertical load on the conduit buried under a sloping ground. In this paper, an attempt has been made to present the derivation of a generalized analytical expression considering that the soil mass overlying the conduit has a sloping face and the arching phenomenon takes place. The developed generalized expression has been used to present some design charts considering specific values of slope geometry, soil properties and burial depths. Furthermore, analytical results for specific soil parameters have been compared with the results extracted from a commercial software PLAXIS 2D, for a developed numerical model and an independent study.
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来源期刊
Geomechanics and Engineering
Geomechanics and Engineering ENGINEERING, CIVIL-ENGINEERING, GEOLOGICAL
CiteScore
5.20
自引率
25.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: The Geomechanics and Engineering aims at opening an easy access to the valuable source of information and providing an excellent publication channel for the global community of researchers in the geomechanics and its applications. Typical subjects covered by the journal include: - Analytical, computational, and experimental multiscale and interaction mechanics- Computational and Theoretical Geomechnics- Foundations- Tunneling- Earth Structures- Site Characterization- Soil-Structure Interactions
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