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Plaxis在板桩结构分析中的应用 被引量:15

Application of Plaxis in analysis of sheet-pile structure
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摘要 上海市某船闸引航道拟采用板桩结构,为选取合适的板桩结构形式,利用岩土工程有限元分析软件Plaxis对锚碇墙拉锚板桩结构、锚碇叉桩拉锚板桩结构、叉桩式高桩承台结构、直桩式高桩承台结构这4种不同板桩结构形式进行数值模拟分析,得出了各种板桩结构形式的结构位移变形、结构内力及桩侧土压力分布情况。计算成果显示:锚碇墙拉锚板桩结构和直桩高桩承台结构水平位移较大,达60~70 mm;叉桩高桩承台结构和锚碇叉桩拉锚结构在水平位移较小,约20 mm;叉桩高桩承台结构还具有卸荷作用,板桩所受主动土压力较小,板桩弯矩值最小。本项目宜采用叉桩高桩承台结构。 The sheet-pile structure is used in a Shanghai ship lock. In order to choose appropriate solutions, we put forward the anchor sheet-pile by anchorage wall, anchor sheet-pile by inclined pile, inclined pile structure of elevated pile cap, and straight pile structure of elevated pile cap, and analyze the structures based on Plaxis finite element program. Through calculation, we get the structure's displacement and internal force and the distribution of earth pressure. The calculation results show that the horizontal displacement of the anchor sheet-pile by anchorage wall and straight pile structure of elevated pile cap structure reach 60 ~ 70 ram; the horizontal displacement of inclined pile structure of elevated pile cap and anchor sheet-pile by inclined pile structure are only about 20 mm; the inclined pile structure of elevated pile cap can also reduce the effect of earth pressure, the earth pressure on the sheet-pile is smaller, and the bending moment value of the sheet-pile is the minimum. Inclined pile-elevated pile cap is more suitable for this project.
出处 《水运工程》 北大核心 2015年第4期194-200,共7页 Port & Waterway Engineering
关键词 PLAXIS 板桩 拉锚 叉桩 高桩承台 HSS模型 Plaxis sheet-pile anchor inclined pile elevated pile cap HSS model
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参考文献12

  • 1JTS 167-3-2009板桩码头设计与施工规范[S]. 被引量:28
  • 2汤子扬,牛志国,陈春燕.Plaxis在板桩码头分析中的应用[J].水利水运工程学报,2013(1):81-85. 被引量:10
  • 3桂劲松,孟庆,李振国,张波.基于PLAXIS的板桩结构非线性有限元分析[J].水运工程,2011(6):11-15. 被引量:20
  • 4Duncan J M, Chang C Y. Nonlinear analysis of stress and strain in soil [J]. Journal of the Soil Mechanics and Foundation Division: ASCE, 1970, 96(5) : 1 629-1 653. 被引量:1
  • 5Drucker D C, Prager W. Soil mechanics and plastic analysis in limit design I J]. Quarterly of Applied Mathematics, 1952, 10(2) : 157-165. 被引量:1
  • 6Schofield A N, Worth C P. Critical State Soil Mechanics[M]. London: McGraw Hill, 1968. 被引量:1
  • 7Schanz T, Vermeer P A, Bonnier P G. The hardening soil model-formulation and verification [C]//Beyond 2000 in Computational Geotechnics, Amsterdam, Balkema: [ s. n. ], 1999: 281-296. 被引量:1
  • 8Benz T. Small-strain Stiffness of Soils and Its Numerical Consequences [ D ]. Stuttgart, Germany: Institute of Geotechnical Engineering, University of Stuttgart, 2007. 被引量:1
  • 9Benz T. Small-strain Stiffness of Soils and Its Numerical Consequences [D]. Stuttgart, Germany: University of Stuttgart, 2006. 被引量:1
  • 10Atkinson J H, Sailors G. Experimental determination of soil properties[C]//Proc 10th ECSMFE: 915-956. 被引量:1

二级参考文献53

  • 1李元音,刘永绣.遮帘式板桩码头结构的空间有限元法分析[J].港工技术,2005,42(B12):37-40. 被引量:19
  • 2徐中华,王建华,王卫东.主体地下结构与支护结构相结合的复杂深基坑分析[J].岩土工程学报,2006,28(B11):1355-1359. 被引量:24
  • 3DG/TJ08-61-2010基坑工程技术规范[S].上海,2010. 被引量:15
  • 4APS赛尔瓦杜雷.土与基础相互作用的弹性分析[M].北京:中国铁道出版社,1988. 被引量:1
  • 5Dawkins W P. Computer program for winkler soil-structureinteraction analysis of sheet pile retaining walls [R].Vicks- burg MS: US Army Engineer Waterways Experiment Station, 1992. 被引量:1
  • 6Vaziri H H. Numerical study of parameters influencing the response of flexible retaining walls[J]. Canadian Geotechnical Journal, 1996, 33: 290-308. 被引量:1
  • 7中国建筑科学研究院.JGJ120-99建筑基坑支护技术规程[S].北京:中国建筑工业出版社,1999. 被引量:123
  • 8陈万佳.港口水工建筑物[M],北京:人民交通出版社,1997. 被引量:8
  • 9南京水利科学研究院.GB/T50123-1999土工试验方法标准[S].北京:中国标准出版社,1999. 被引量:31
  • 10SCHWEIGER H F, VERMEER P A, WEHNERT M. On the design of deep excavations based on finite element analysis[J]. Geomeehanies and Tunnelling, 2009, 2:333 -344. 被引量:1

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