Abstract:Research purposes:During the electrified reconstruction of the Xuzhou 一 Lianyungang Railway, it was found the topsoil in Liangyungang area was soft clay like the marine clay and the muddy clay, with the mud silt under it. Under the effect of loading,the bearing capacity of the foundation was very low and the ground had a big settlement and deformation, easily resulting in the uneven settlement. When the external disturbances took place, the soil structure would be damaged with the sharp drop of the soil strength. So the geological condition in this area was extremely poor for the project. Considering the actual situation of the electrification reconstruction of the railway, it was necessary to do the study on the treatment plan for the support foundation of OCS under condition of soft soil subgrade of the Xuzhou - Liangyungang Railway.
Research conclusions:(1) In the high filling region with deep topsoils, the “T - type” foundation would be adopted, with its flange to bear the vertical loads so that the foundation would not settle. It had less impact on the traffic safety because of the less excavation of the deep soft soil. (2) In the subgrade region with the filling thickness of less than 2. 0 meters, the shallow foundation with the expanded underside would be designed. After replacement of substrate material, some parts of the soft soil subgrade would be reinforced by filling the flagstones and compacted by filling the sandy and stony soils. When the bearing capacity of the foundation met the design requirement, the shallow foundation with the constructed so as to lower the requirement of the foundation for the bearing capacity of the undisturbed soil. (3) The shallow foundation with the expanded underside was proved safe and feasible by the field testing. The horizontal displacement of the foundation surface, the foundation torsional angel and the support deflection met the technical demands of the design. (4)This research result could provide the reference to the similar works.
张曼华,李方安,杨振龙,李文豪. 徐连线软土路基接触网支柱基础的研究[J]. 铁道工程学报, 2013, 30(6): 64-68.
NG Man-hua,LI Fang-an,YANG Zhen-long,LI Wen-hao. Study on Support Foundation of OCS Under Condition of Soft Soil Subgrade of Xuzhou - Lianyungang Railway. 铁道工程学报, 2013, 30(6): 64-68.
[Germany ] Kiβling,Puschman,Schmieder. Contact Line for Electric Railways[M]. Beijing; China Power Press, 2003.
[3] JGJ 79-2002,建筑地基处理技术规范[S].
JGJ 79-2002, Technical Code for Ground Treatment of Buildings[S].
[4] JGJ 94—2008,建筑桩基技术规范[S].
JGJ 94—2008, Technical Code for Building Pile Foundations [S].
[5]史建明,吕振聚.大涌水地段的接触网基础施工[J].电气化铁道,2006(5) :31-34.
Shi Jianming, Lv Zhenju. Foundation Construction for Overhead Contact Wire System In the Water Burst Location [ J], Electric Rail ways,2006 (5) :31 -34.
[6]TB 10005—2010,混凝土结构耐久性设计规范[S].
TB 10005-2010,Code for Durability Design of Concrete Structures [S].
[7] GB 50007—2011,建筑地基基础设计规范[5].
GB 50007-2011, Code for Design of Building Foundation [ S] .
[8]TZ 10208—2008,客货共线铁路电力牵引供电工程施工技术指南[S].
TZ 10208—2008,Passenger and Cargo Collinear Railway Electric Traction Feeding Project Construction Technical Guidelines [S].
[9]GB 50204—2011,混凝土结构工程施工质量验收规范 [S].
GB 50204—2011, Code for Acceptance of Constructional Quality of Concrete Structures[S].
[10] TB 10009-2005,铁路电力牵引供电设计规范[S].
TB 10009-2005, Design Code of Railway Electric Traction Feeding [S].
Jiang Xin,Qiu Yanjun, Wei Yongxing. Research on the Sub Grade Embankments Engineering on Sloped Weak Ground [J]. Journal of Railway Engineering Society, 2006(1) :32 - 35.