纸质出版:2018
移动端阅览
[1]段旭,高洁,门玉明,董琪.微型群桩预支护高陡边坡模型试验研究[J].防灾减灾工程学报,2018,38(02):244-250.
段旭, 高洁, 门玉明, et al. Study on Model Test of High and Steep Slope Pre-supported by Micro Pile Group[J]. 2018, 38(2): 244-250.
[1]段旭,高洁,门玉明,董琪.微型群桩预支护高陡边坡模型试验研究[J].防灾减灾工程学报,2018,38(02):244-250. DOI: 10.13409/j.cnki.jdpme.2018.02.006.
段旭, 高洁, 门玉明, et al. Study on Model Test of High and Steep Slope Pre-supported by Micro Pile Group[J]. 2018, 38(2): 244-250. DOI: 10.13409/j.cnki.jdpme.2018.02.006.
山区房建工程中常通过开挖边坡拓展用地空间
对于存在潜在滑动面的高边坡进行削坡处理会降低坡体安全系数
诱发滑坡灾害
造成财产与人员损失。开展微型群桩支护高边坡的物理模型试验
研究微型群桩在高陡边坡支护中的受力变形状态。试验结果表明:钢管微型群桩对高陡边坡的支护效果较好
未支护时坡体在削坡完成后沿预设滑面滑动破坏
采用微型群桩支护后削坡过程高边坡变形被有效抑制
坡体由不稳定状态提高至安全系数1.5。三排桩的受力分布规律相近
抗滑段土压力成倒三角分布
滑面以上20cm土体推力最为集中。由于第一排桩间无法形成有效土拱作用
第二排桩体受力明显
一至三排桩抗滑段的受力分配比例约为1.3∶2∶1。试验结果为山区高边坡的预支护设计提供了参考。
Slope excavation is a common technology to expand the land space for construction projects in the mountain area.Cutting of high slope with potential sliding surface will reduce the safety factor of the slope
resulting in landslide disaster and leading to loss of property and casualty.In this paper
the physical model test of high slope supported by micro pile group was carried out.The stress and deformation state of the micro pile group reinforced in the high and steep slope was studied.Experimental results show that the micro steel pile has perfect effect in high and steep slope supporting.For the unsupported slope
slope failure occurs after slope cutting
while for the micro pile group supported slope
the slope deformation is restrained.The factor of safety for the supported slope increases sharply and reaches to about 1.5.The distribution law of the force in the piles of the three rows is similar.The distribution of earth pressure in the antislide section shows a shape of inverted triangles.The thrust mainly concentrates in the soil about20 cm above the sliding surface.Earth pressure acting on the piles of the second row is significant because there is not enough soil arching effect formed between the piles of the first row.The ratio of earth pressure on the piles from the first row to the third row is about 1.3∶2∶1.The test results provide reference for reinforcement design of high slopes in the mountain area.
延安地区人类工程活动与地质灾害相关性探讨 [J]. 段旭,祝俊华,董琪,陈志新. 灾害学 . 2017(01)
微型桩加固边坡的合理桩间距确定 [J]. 谷拴成,甄希翠. 地下空间与工程学报 . 2015(06)
微型桩群加固土坡稳定性分析 [J]. 孙书伟,陈冲,丁辉,刘英. 岩土工程学报 . 2014(12)
滑坡防治独立微型桩性状的大型物理模型试验研究 [J]. 闫金凯,殷跃平,马娟. 水文地质工程地质 . 2012(04)
滑坡微型桩群桩加固工程模型试验研究 [J]. 闫金凯,殷跃平,门玉明,梁炯. 土木工程学报 . 2011(04)
微型桩群与普通抗滑桩抗滑特性的对比试验研究 [J]. 孙书伟,朱本珍,马惠民,杨让宏. 岩土工程学报 . 2009(10)
失稳高陡路堑边坡桩锚加固方案分析 [J]. 吴顺川,高永涛,金爱兵. 岩石力学与工程学报 . 2005(21)
微型桩原型水平荷载试验研究 [J]. 龚健,陈仁朋,陈云敏,程光明,应建国. 岩石力学与工程学报 . 2004(20)
微型桩复合结构在滑坡整治中的应用 [J]. 丁光文,王新. 岩土工程技术 . 2004(01)
微型桩处理滑坡的设计方法 [J]. 丁光文. 西部探矿工程 . 2001(04)
微型钢管桩在岩石基坑支护工程中的应用研究 [D]. 李白. 中国海洋大学 2012
0
浏览量
148
下载量
4
CSCD
关联资源
相关文章
相关作者
相关机构
苏公网安备32010202012147号
