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| ANALYSIS OF EQUIVALENT COEFFICIENT OF SUBGRADE REACTION CONSIDERING VARIABILITY OF LAYERED SOILS |
| ZHU Ling1,2,DING Wenqi1,2,WANG Rui3,LIU Hongzhou4,FANG Lei5 |
| (1. Department of Geotechnical Engineering,Tongji University,Shanghai 200092,China;2. Key Laboratory of Geotechnical and Underground Engineering of Ministry of Education,Tongji University,Shanghai 200092,China;3. College of Water Conservancy and Hydropower Engineering,Hohai University,Nanjing,Jiangsu 210098,China;4. CCCC Highway Consultants Co.,Ltd.,Beijing 100088,China;5. Hong Kong-Zhuhai-Macao Bridge Authority,Zhuhai,Guangdong 519015,China) |
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Abstract Determination of coefficient of subgrade reaction is the key to solve the engineering problems with load-structure method. In order to study the distribution characteristics and statistical parameters of layered soils foundation with variability,a calculation method with the compression modulus of each layer soil as the input parameter was derived based on the principle of consistent final settlement,and the variability of soil was considered with the aid of Monte Carlo method. Besides,the proposed method was realized by using Matlab software. The results were applied to the Hong Kong-Zhuhai-Macao immersed tunnel,and a two-dimensional analytical model was established based on the load-structure method. The following conclusions can be drawn: (1) The equivalent coefficients of subgrade reaction of the typical section K9+843 approximately obey normal distribution. The mean value is 985 kPa/m,and the coefficient of variation is 0.265. (2) The settlements of this section approximately obey logarithmic normal distribution when taking the variability of soils into consideration, which has a significant difference. (3) The settlements of this section are close to those obtained from three-dimensional analysis model based on stratum-structure method under the same condition,which validates the rationality of the proposed method to calculate the equivalent coefficient of subgrade reaction.
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Received: 13 August 2013
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| [1] 张 迪,李晓昭,张西平,等. 水平基床系数的影响因素分析[J]. 桂林工学院学报,2003,23(3):284–287.(ZHANG Di,LI Xiaozhao,ZHANG Xiping,et al. Analysis of influencing factors on horizontal foundation modulus[J]. Journal of Guilin Institute of Technology,2003,23(3):284–287.(in Chinese))
[2] BIOT M A. Bending of an infinite beam on an elastic foundation[J]. Journal of Applied Physics,1937,12(2):155–164.
[3] VESIC A B. Beams on elastic subgrade and the Winkler′s hypothesis[C]// Proceedings of the 5th International Conference of Soil Mechanics. England:P. Press,1963:845–850.
[4] 屈成忠,宋 巍. 不同工况下基床系数的取值研究[J]. 东北电力大学学报:自然科学版,2009,29(1):8–12.(QU Chengzhong,SONG Wei. Study on the foundation modulus under different conditions[J]. Journal of Northeast Dianli University:Natural Science,2009,29(1):8–12.(in Chinese))
[5] 向 军,冯玉勇,肖作声,等. 平板载荷试验中存在的若干问题[J]. 铁道建筑技术,2001,(6):34–38.(XIANG Jun,FENG Yuyong,XIAO Zuosheng,et al. Several problems in the plate loading test[J]. Railway Construction Technology,2001,(6):34–38.(in Chinese))
[6] 周宏磊,张在明. 基床系数的试验方法与取值[J]. 工程勘察,2004,(2):11–15.(ZHOU Honglei,ZHANG Zaiming. Testing method and values of coefficient of subgrade reaction[J]. Geotechnical Investigation and Surveying,2004,(2):11–15.(in Chinese))
[7] 仲锁庆,张西平,潘海利. 地基土基床系数研究[J]. 地下空间与工程学报,2005,1(7):1 109–1 112.(ZHONG Suoqing,ZHANG Xiping,PAN Haili. Study on foundation soil coefficient of subgrade reaction[J]. Chinese Journal of Underground Space and Engineering,2005,1(7) :1 109–1 112.(in Chinese))
[8] 彭友君. 地铁设计中基床系数的解决方案[J]. 都市快轨交通,2007,20(2):40–43.(PENG Youjun. On the coefficient of subgrade reaction in metro design[J]. Urban Rapid Rail Transit,2007,20(2):40–43.(in Chinese))
[9] 王 晖,张杏丽. 大型混凝土水池基床系数的确定[J]. 低温建筑技术,2007,(2):81–82.(WANG Hui,ZHANG Xingli. Study on the coefficient of subgrade reaction of bulk concrete water pool[J]. Low Temperature Architecture Technology,2007,(2):81–82.(in Chinese))
[10] 张 蕾,高广运,高 盟. 基床系数确定方法的讨论[J]. 地下空间与工程学报,2011,7(4):812–818.(ZHANG Lei,GAO Guangyun,GAO Meng. Discussion on the calculation method of coefficient of subgrade reaction[J]. Chinese Journal of Underground Space and Engineering,2011,7(4):812–818.(in Chinese))
[11] 中华人民共和国国家标准编写组. GB50307—1999地下铁道、轻轨交通岩土工程勘察规范[S]. 北京:中国计划出版社,1999.(The National Standards Compilation Group of People?s Republic of China. GB50307—1999 Code on geotechnical investigations for metro and light rail transit[S]. Beijing:China Planning Press,1999.(in Chinese))
[12] 中华人民共和国国家标准编写组. GB5007—2011建筑地基基础设计规范[S]. 北京:中国建筑工业出版社,2011.(The National Standards Compilation Group of People¢s Republic of China. GB5007— 2011 Code for design of building foundation[S]. Beijing:China Architecture and Building Press,2011.(in Chinese)) |
| [1] |
MAO Yuting1, 2, HE Manchao1, 2, LIU Fangzhou3, BAI Xing4, YANG Xiaojie1, 2, TAO Zhigang1, 2*. Development and application of a large-scale physical model system for tunnel creep testing[J]. , 2026, 45(6): 1627-1638. |
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