|Table of Contents|

Calculation of vertical stress in subgrade and foundation base under wheel load(PDF)

长安大学学报(自然科学版)[ISSN:1006-6977/CN:61-1281/TN]

Issue:
2011年01期
Page:
26-30
Research Field:
Publishing date:
2011-02-28

Info

Title:
Calculation of vertical stress in subgrade and foundation base under wheel load
Author(s):
NIU Xi-rong12 HAN Ping2 ZHANG Xiao-yan2
1. Key Laboratory for Special Area Highway Engineering of Ministry of Education, Chang'an University, Xi'an 710064, Shaanxi, China;
2. Key Laboratory for Loess Area Highway Construction & Maintenance Technology of Ministry of Transport, Shanxi Province Communications Scientific Research Institute, Taiyuan 030006, Shanxi, China
Keywords:
road engineering subgrade foundation base vertical stress calculation
PACS:
U416.1
DOI:
-
Abstract:
In order to verify the bearing capacity of the special filler(such as soft rock, weathered rock, artificial materials)under the special traffic loads(such as overloading), on the premise of the standard wheel loads(25 kN and 0.7 MPa), considering the variations of the non-standard traffic loads and the backfill density, the vertical stress in subgrade and foundation base were calculated under concentrated wheel load and distributed wheel load. Because of the difference of compressive modulus between pavement material and subgrade backfill, the spread angles of stress are considered. When calculating the foundation base vertical stress under the subgrade center, the subgrade was regarded as strip foundation. The calculation results show that the add-itional stress produced by the distributed wheel load are greater than those obtained by the concentrated wheel load, and both of them tend to same beyond the subgrade depth of 3 m; the variations of wheel load have important influence on the vertical additional stress in subgrade, and the influence depth is about 3 m; the foundation base total stress produced by the standard wheel loads(25 kN and 0.7 MPa)tend to same when the subgrade height is greater than 5 m; a linear growth relation can be found between the foundation base total stress and the filling height of subgrade when the filling height of subgrade is higher than 1 m. 1 tab, 8 figs, 13 refs.

References:

[1] 折学森.路基涵洞的土压力计算[J].中国公路学报,1992,5(3):72-79. SHE Xue-sen.The calculation of vertical earth pressure on buried culvert under roadbed[J].China Journal of Highway and Transport,1992,5(3):72-79.
[2]谢经保,凌建明,马德文,等.行车荷载作用下软弱黄土路基的竖向应力特征[J].城市道桥与防洪,2006(3):87-90. XIE Jing-bao,LING Jian-ming,MA De-wen,et al.Characteristic of vertical stress in soft loess subgrade under driving loading[J].Urban Roads Bridges & Flood Control,2006(3):87-90.
[3]李 渊.高填方路基竖向应力分布规律研究[D].重庆:重庆大学,2008.
[4]宋 飞.黄土地区高填路堤下涵洞上土压力的计算分析[J].山西交通科技,2007(1):59-62. SONG Fei.The computation and analysis of culvert earth pressure for high-fill subgrade in loess area[J].Shanxi Science & Technology of Communications,2007(1):59-62.
[5]杨灿文,柴锦春.铁路路基应力、应变计算方法[J].路基工程,1988(3):48-51. YANG Can-wen,CHAI Jin-chun.Calculation method on railway subgrade stress and strain[J].Subgrade Engineering,1988(3):48-51.
[6]蒋关鲁,王海龙,李安洪.高速铁路路基基底应力计算方法研究[J].铁道建筑,2009(4):65-69. JIANG Guan-lu,WANG Hai-long,LI An-hong.Calculation method on High-speed railway subgrade basement stress[J].Railway Engineering,2009(4):65-69.
[7]张洪亮,边祥芹,王玉兰.重复荷载作用下路基土粘弹塑性永久变形预估[J].长安大学学报:自然科学版,2010,30(2):29-33. ZHANG Hong-liang,BIAN Xiang-qin,WANG Yu-lan.Visco-elastic-plastic model of permanent deform-ation of subgrade soils under repeated load[J].Journal of Chang'an University:Natural Science Edition,2010,30(2):29-33.
[8]张洪亮,郭忠印,高启聚,等.重复荷载作用下砂土永久变形预估模型[J].交通运输工程学报,2008,8(3):58-62. ZHANG Hong-liang,GUO Zhong-yin,GAO Qi-ju,et al.Permanent deformation prediction model of sandy soil under repeated load[J].Journal of Traffic and Transportation Engineering,2008,8(3):58-62.
[9]颜 斌,倪万魁,刘海松.公路黄土地基流变模型研究[J].中国公路学报,2009,22(4):19-23. YAN Bin,NI Wan-kui,LIU Hai-song.Research on rheological model of highway loess subgrade[J].China Journal of Highway and Transport,2009,22(4):19-23.
[10]Lambe T W.The engineering behavior of compacted clay[J].Journal of Soil Mechanics and Foundation Div-ision, ASCE,1958,84(2):1-34:
[11]Delage P,Howat M D,Cui Y J.The relationship between suction and swelling properties in a heavily compacted unsaturated clay[J].Engineering Geology,1998,50(1/2):31-48.
[12]Cokca E,Erol O,Armangil F.Effects of compaction moisture content on the shear strength of an unsatur-ated clay [J].Geotechnical and Geological Engineering,2004,22(2):285-297.
[13]李振霞,王选仓,陈渊召,等.膨胀土的强度与力学特性[J].交通运输工程学报,2008,8(5):54-60. LI Zhen-xia,WANG Xuan-cang,CHEN Yuan-zhao,et al.Strength and mechanic property of expansive soil[J].Journal of Traffic and Transportation Engineering,2008,8(5):54-60.

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Last Update: 2011-02-28