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| VARIATION OF SOIL ARCHING EFFECT DURING BURYING PROCESS OF HDPE PIPES |
| ZHOU Min1,2,DU Yanjun1,2,ZHANG Yajun3,WANG Fei1,2,QIN Xiaogang1,2 |
(1. Institute of Geotechnical Engineering,Southeast University,Nanjing,Jiangsu 210096,China;2. Jiangsu Key Laboratory of Urban Underground Engineering and Environmental Safety,Southeast University,Nanjing,Jiangsu 210096,China;
3. Construction Bureau of Yixing City,Jiangsu Province,Yixing,Jiangsu 214206,China) |
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Abstract Previous studies show that the soil arching considerably affects the earth pressure distribution around the buried pipelines. However,very few studies investigated comprehensively how the soil arching effect changed with respect to the height of the backfill and the diameter of buried pipes during construction. This research presents the details of a study on the soil arching effect and earth pressures acting on the crown of the buried HDPE pipes. A series of field tests were conducted for the measurements of earth pressures acting on the HDPE pipes and of soil pressures at different elevations over HDPE pipes during construction. The results reveal that the soil arching effect activate in the backfills beside and above HDPE pipes increase remarkably with the increasing of the height of the backfill. At a given backfill height,the degree of soil arching effect increases with the decreasing of vertical distance from the crown of pipes. The earth pressures acting on the crown of pipes computed by Marston theory are 3% to 31% higher than those measured in the field tests. Based on a series of finite element analyses,an empirical equation was proposed to predict the earth pressure acting on the crown of HDPE pipes during soil backfilling. Predicted earth pressures using the proposed equation are in good agreement with the field test data reported by the previous studies.
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Received: 14 January 2014
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| [1] 吴 念. 我国HDPE双壁波纹管发展现状[J]. 塑料,2007,36(5):39–42.(WU Nian. Development of domestic double-wall corrugated pipes[J]. Plastics,2007,36(5):39–42.(in Chinese))
[2] 陈秀华. HDPE双壁波纹管在市政排水工程中的应用优势[J]. 广东建材,2006,(6):7–9.(CHEN Xiuhua. The advantages of HDPE double-wall corrugated pipe in municipal drainage project[J]. Guangdong Building Materials,2006,(6):7–9.(in Chinese))
[3] TERZAGHI K. Theoretical soil mechanics[M]. New York:John Wileyand Sons,1943:66–76.
[4] MARSTON A,ANDERSON A O. The theory of loads on pipes in ditches and tests of cement and clay drain tile and sewer pipe[M]. Ames:Iowa State College of Agriculture and Mechanic Arts,1913:13–21.
[5] TERZI N U,YILMAZTURK F,YILDIRIM S,et al. Experimental investigations of backfill conditions on the performance of high- density polyethylene pipes[J]. Experimental Techniques,2012,36(2):40–49.
[6] TALESNICK M L,XIA H W,MOORE I D. Earth pressure measurements on buried HDPE pipe[J]. Geotechnique,2011,61(9):721–732.
[7] DHAR A S,MOORE I D,MCGRATH T J. Two-dimensional analyses of thermoplastic culvert deformations and strains[J]. Journal of Geotechnical and Geoenvironmental Engineering,2004,130(2):199–208.
[8] AL-ABRI D S,MOHAMEDZEIN Y E A. Performance of plastic pipes installed in dune sand[C]// Proceedings of Pipelines 2010 Climbing New Peaks to Infrastructure Reliability:Renew,Rehab and Reinvest. [S. l.]:ASCE,2010:402–414.
[9] MCAFFEE R P,VALSANGKAR A J. Field performance,centrifuge testing and numerical modelling of an induced trench installation[J]. Canadian Geotechnical Journal,2008,45(1):85–101.
[10] MCGUIGAN B L,VALSANGKAR A J. Field monitoring and analysis of twin 3 660 mm inside diameter induced trench culverts installed under 21.7 m of fill[J]. Canadian Geotechnical Journal,2011,48(5):781–794.
[11] 顾安全. 上埋式管道及洞室垂直土压力的研究[J]. 岩土工程学报,1981,3(1):3–15.(GU Anquan. Investigation of the vertical earth pressure on projecting conduit and underground chamber under a under embankment[J]. Chinese Journal of Geotechnical Engineering,1981,3(1):3–15.(in Chinese))
[12] 方有珍,王秀丽,朱彦鹏. 上海软土地区 HDPE 螺旋管现场荷载下的试验研究[J]. 岩石力学与工程学报,2005,24(5):889–897.(FANG Youzhen,WANG Xiuli,ZHU Yanpeng. Testing study on HDPE spiral piep used in soft soil area of Shanghai[J]. Chinese Journal of Rock Mechanics and Engineering,2005,24(5):889–897.(in Chinese))
[13] 申文明,边学成,唐晓武,等. 低填方上埋式管涵土压力的模型试验和理论研究[J]. 岩土工程学报,2010,32(7):1 017–1 022.(SHEN Wenming,BIAN Xuecheng,TANG Xiaowu,et al. Model tests and theoretical studies on earth pressure on shallow positive buried culverts[J]. Chinese Journal of Geotechnical Engineering,2010,32(7):1 017–1 022.(in Chinese))
[14] 刘全林. 地埋管道与土相互作用平面分析与计算方法[J]. 岩土力学,2007,28(1):83–88.(LIU Quanlin. Calculating method and analysis of plane strain question of interaction between buried pipe and soil[J]. Rock and Soil Mechanics,2007,28(1):83–88.(in Chinese))
[15] 娄奕红,王秉勇. 涵洞顶填土压力的计算分析[J]. 岩土力学,2003,24(3):475–478.(LOU Yihong,WANG Bingyong. Analysis of earth pressure on top of culverts[J]. Rock and Soil Mechanics,2003,24(3):475–478.(in Chinese))
[16] 李永刚,张善元. 矩形沟埋涵洞顶部垂直土压力试验和理论研究[J]. 岩土力学,2008,29(4):1 081–1 086.(LI Yonggang,ZHANG Shanyuan. Experimental and theoretical study on earth pressure on top of rectangular trench-buried culverts[J]. Rock and Soil Mechanics,2008,29(4):1 081–1 086.(in Chinese))
[17] 中华人民共和国行业标准编写组. CECS 164:2004埋地聚乙烯排水管管道工程技术规程[S]. 北京:中国建筑工业出版社,2004.(The Professional Standards Compilation Group of People?s Republic of China. CECS 164:2004 Technical specification for buried PE pipeline of sewer engineering[S]. Beijing:China Architecture and Building Press,2004.(in Chinese))
[18] 中华人民共和国国家标准编写组. GB 50332—2002 给水排水工程管道结构设计规范[S]. 北京:中国建筑工业出版社,2002.(The National Standards Compilation Group of People?s Republic of China. GB 50332—2002 Structural design code for pipelines water supply and waste water engineering[S]. Beijing:China Architecture and Building Press,2002.(in Chinese))
[19] MOSER A P,FOLKMAN S. Buried pipe design(third edition)[M]. Utah:McGraw-Hill Professional,1990:10–33.
[20] 杜金龙,杨 敏. 深基坑开挖对邻近地埋管线影响分析[J]. 岩石力学与工程学报,2009,28(1):3 015–3 020.(DU Jinlong,YANG Min. Influence analysis of excavation of deep pit on adjacent buried pipelines[J]. Chinese Journal of Rock Mechanics and Engineering,2009,28(1):3 015–3 020.(in Chinese))
[21] 郭婷婷. EPS板在上埋式涵洞土压力减荷中的应用与分析[J]. 水利水电科技进展,2011,31(1):74–78.(GUO Tingting. Application of EPS blocks in load reduction of earth pressures on culverts under high-stacked soil[J]. Advances in Science and Technology of Water Resources,2011,31(1):74–78.(in Chinese))
[22] 郝中海,崔江余. 粘土压实特性分析研究[J]. 工程力学,2003,(增):192–195.(HAO Zhonghai,CUI Jiangyu. Clay compaction characteristics analysis[J]. Engineering Mechanics,2003,(Supp.):192–195.(in Chinese))
[23] 边学成,申文明,马祖桥,等. 不同填土管涵土压力模型试验和数值模拟研究[J]. 土木工程学报,2012,45(1):127–133.(BIAN Xuecheng,SHEN Wenming,MA Zuqiao,et al. Model test and numerical simulation of earth pressure on under different earth backfill conditions[J]. China Civil Engineering Journal,2012,45(1):127–133.(in Chinese))
[24] 陈保国,骆瑞萍,孙金山. 上埋式盖板涵受力特性及影响因素研究[J]. 岩土力学,2011,32(1):199–206.(CHEN Baoguo,LUO Ruiping,SUN Jinshan. Study of stress characteristics and its influencing factors of embankment installation slab-culverts[J]. Rock and Soil Mechanics,2011,32(1):199–206.(in Chinese))
[25] HANDY R L. The arch in soil arching[J]. Journal of Geotechnical Engineering,1985,111(3):302–318.
[26] SARGAND S,MASADA T,TARAWNEH B,et al. Deeply buried thermoplastic pipe field performance over five years[J]. Journal of Geotechnical and Geoenvironmental Engineering,2008,134(8):1 181–1 191. |
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