1.中国地震局黄土地震工程重点实验室,甘肃 兰州 730000
2.中国地震局兰州地震研究所,甘肃 兰州 730000
3.兰州大学土木工程与力学学院,甘肃 兰州 730000
王谦(1985—),男,副研究员。主要从事黄土动力学与黄土地震工程研究。E-mail:wangq0930@126.com
刘钊钊(1994—),男,硕士研究生。主要从事黄土力学与工程研究。E-mail:liuzhaozhao1994@163.com
纸质出版:2021-12-15
移动端阅览
王谦,刘钊钊,王兰民等.黄土地基抗震处理技术研究进展与展望[J].防灾减灾工程学报,2021,41(06):1366-1381.
WANG Qian,LIU Zhaozhao,WANG Lanmin,et al.Review on Seismic Reinforcement of Loess Foundation[J].Journal of Disaster Prevention and Mitigation Engineering,2021,41(06):1366-1381.
王谦,刘钊钊,王兰民等.黄土地基抗震处理技术研究进展与展望[J].防灾减灾工程学报,2021,41(06):1366-1381. DOI: 10.13409/j.cnki.jdpme.201910071.
WANG Qian,LIU Zhaozhao,WANG Lanmin,et al.Review on Seismic Reinforcement of Loess Foundation[J].Journal of Disaster Prevention and Mitigation Engineering,2021,41(06):1366-1381. DOI: 10.13409/j.cnki.jdpme.201910071.
通过对国内外黄土地基抗震处理技术研究历史和现状的介绍,分析不同黄土地基抗震处理方法的物理化学机制及其研究的主要不足,并根据地基处理研究的最新进展,结合黄土地基抗震设计的任务需求,探讨未来黄土地基抗震处理技术的研究方向。通过对现有研究和相关领域前沿性科学问题的总结发现:(1)不同黄土地基抗震处理方法的内在机制均主要针对黄土内的架空孔隙和弱胶结等特殊不良结构,通过增加土体密实度和土骨架结构强度,提高地基的抗震性能;(2)现有黄土地基抗震改良方法中,针对强夯法、挤密桩法的研究和应用较为完备,而在黄土地基设计中防灾目标的统一性、复杂应力及外营力条件下改良黄土的动力特性、新型环保加固材料在黄土地基抗震处理中的应用、黄土地基抗震处理技术的标准化等方面存在较大不足;(3)微生物环保固化技术在黄土地基抗震处理中的应用、改良黄土地基地震动效应特征及动力条件下的土-结相互作用、基于性能的黄土地基抗震处理技术及其标准化应是今后黄土地基抗震处理领域可能取得突破的研究方向。
Seismic reinforcement of loess foundation is one of the frontier subjects in loess dynamics. Based on the review on seismic reinforcement of loess foundation, the physical and chemical mechanisms of different methods for seismic reinforcement of loess foundation are summarized. The main shortcomings of existing research are analyzed. According to the up-to-date research of foundation treatment and considering the demand of seismic reinforcement of loess foundation, the main directions of possible breakthroughs in the future of seismic reinforcement of loess foundation are discussed. The existing results show that the mechanism of different methods of seismic reinforcement of loess foundation is mainly aimed at the special structures of the soil such as overhead pores and weak cementation. The seismic performance of loess foundation is improved by increasing the compactness of soil and the structural strength of the soil skeleton. Among the existing methods for seismic reinforcement of loess foundation, the researches and applications of dynamic compaction and compaction pile are relatively complete. However, more problems in seismic reinforcement of loess foundation are still expected to be answered, such as the unity of disaster prevention target in loess foundation design, the dynamic characteristics of reinforced loess under the condition of complex stress and external forces, the application of new environmental protection reinforcement materials and the standardization of seismic reinforcement of loess foundation. In the future, research directions, which may be broken through in seismic reinforcement of loess foundation, include the application of bio-environmental protection solidification technology, seismic responses and soil-structure interaction under dynamic conditions, and performance-based seismic design and standardization.
刘祖典 . 黄土力学与工程 [M]. 西安 : 陕西科学技术出版社 , 1997 .
Liu Z D . Loess mechanics and engineering [M]. Xi'an : Shanxi Science and Technology Press , 1997 . (in Chinese)
Derbyshire E , Dijkstra T A , Smalley I J , et al . Failure mechanisms in loess and the effects of moisture content changes on remolded strength [J]. Quaternary International , 1994 , 24 : 5 - 15 .
Jefferson I F , Evstatiev D , Karastanev D , et al . Engineering geology of loess and loess-like deposits: a commentary on the Russian literature [J]. Engineering Geology , 2003 , 68 ( 3/4 ): 333 - 351 .
王兰民 , 石玉成 , 刘旭 , 等 . 黄土动力学 [M]. 北京 : 地震出版社 , 2003 .
Wang L M , Shi Y Ch , Liu X , et al . Loess dynamics [M]. Beijing : Seismological Press , 2003 . (in Chinese)
谢定义 , 姚仰平 , 党发宁 . 高等土力学 [M]. 北京 : 高等教育出版社 , 2008 .
Xie D Y , Yao Y P , Dang F N . Advanced soil mechanics [M]. Beijing : Higher Education Press , 2008 . (in Chinese)
何开明 , 周健 , 王兰民 . 强夯黄土地基抗液化性状的试验研究 [J]. 地下空间与工程学报 , 2004 , 24 ( 1 ): 27 - 30 .
He K M , Zhou J , Wang L M . Experimental study on anti-liquefaction of rammed loss ground [J]. Chinese Journal of Underground Space and Engineering , 2004 , 24 ( 1 ): 27 - 30 . (in Chinese)
刘世奇 , 陈静曦 , 潘冬子 . 强夯法处理湿陷性黄土地基的效果分析 [J]. 探矿工程(岩土钻掘工程) , 2004 , 31 ( 6 ): 19 - 21 .
Liu Sh Q , Chen J X , Pan D Z . Analyses on results of forced ramming in wet sinking loess foundation [J]. Exploration Engineering (Rock & Soil Drilling and Tunneling) , 2004 , 31 ( 6 ): 19 - 21 . (in Chinese)
何开明 . 经若干方法处理黄土地基抗液化性状的研究 [D]. 杭州 : 浙江大学 , 2001 .
He K M . Studies on the anti-liquefaction behavior of the loess ground improved by several methods [D]. Hangzhou : Zhejiang University , 2001 . (in Chinese)
王军海 , 刘亚明 . 基于动三轴试验的压实黄土动强度特性研究 [J]. 地震工程学报 , 2016 , 38 ( 3 ): 439 - 444 .
Wang J H , Liu Y M . Dynamic strength properties of compacted loess based on dynamic triaxial test [J]. China Earthquake Engineering Journal , 2016 , 38 ( 3 ): 439 - 444 . (in Chinese)
周春梅 , 程月 , 王勇 , 等 . 压实黄土抗剪强度参数影响因素研究 [J]. 防灾减灾工程学报 , 2018 , 38 ( 2 ): 258 - 264 .
Zhou Ch M , Cheng Y , Wang Y , et al . Study on influencing factors of shear strength parameters of compacted loess [J]. Journal of Disaster Prevent and Mitigation Engineering , 2018 , 38 ( 2 ): 258 - 264 . (in Chinese)
谷天峰 , 王家鼎 , 王峻 . 郑西客运专线黄土路基震陷研究 [J]. 工程地质学报 , 2009 , 17 ( 4 ): 557 - 562 .
Gu T F , Wang J D , Wang J . Laboratory and numerical studies on seismic subsidence of loess subgrade along Zhengzhou-Xian high-speed railway [J]. Journal of Engineering Geology , 2009 , 17 ( 4 ): 557 - 562 . (in Chinese)
王谦 , 王兰民 , 王峻 , 等 . 基于密度控制理论的饱和黄土地基抗液化处理指标研究 [J]. 岩土工程学报 , 2013 , 35 ( 增2 ): 844 - 847 .
Wang Q , Wang L M , Wang J , et al . Indices of anti-liquefaction treatment of saturated compacted loess foundation based on theory of density control [J]. Chinese Journal of Geotechnical Engineering , 2013 , 35 ( Sup 2 ): 844 - 847 . (in Chinese)
王兰民 , 袁中夏 , 王峻 , 等 . 干密度对击实黄土震陷性影响的试验研究 [J]. 地震工程与工程振动 , 2000 , 20 ( 1 ): 75 - 80 .
Wang L M , Yuan Zh X , Wang J , et al . Laboratory study of effect of dry density on seismic settlement of compacted loess [J]. Earthquake Engineering and Engineering Vibration , 2000 , 20 ( 1 ): 75 - 80 . (in Chinese)
翁效林 . 强夯黄土地基震陷性离心试验研究 [J]. 岩土工程学报 , 2007 , 29 ( 7 ): 1094 - 1097 .
Weng X L . Studies on seismic subsidence of loess by centrifugal model tests [J]. Chinese Journal of Geotechnical Engineering , 2007 , 29 ( 7 ): 1094 - 1097 . (in Chinese)
王兰民 , 袁中夏 , 王峻 , 等 . 强夯处理后黄土地基的动力特性与抗震性能 [J]. 岩石力学与工程学报 , 2003 ( 增2 ): 2840 - 2847 .
Wang L M , Yuan Zh X , Wang J , et al . Dynamic characteristics and seismic resistance of loess ground treated with dynamic compaction [J]. Chinese Journal of Rock Mechanics and Engineering , 2003 ( Sup 2 ): 2840 - 2847 . (in Chinese)
地下结构抗震设计标准 : GBT51223—2018 [S]. 北京 : 中国建筑工业出版社 , 2018 .
甘肃省建筑抗震设计规程 : DB62/T25-3055—2011 [S]. 兰州 : 甘肃省住房与城乡建设厅 , 2012 .
刘志伟 , 申汝涛 . 钻孔挤密桩处理强湿陷性黄土地基试验研究 [J]. 岩土力学 , 2009 , 30 ( 增2 ): 339 - 343 .
Liu Zh W , Shen R T . Field tests on pre-bored compaction lime-soil pile (down-hole dynamic compaction method) to improve serious collapsible loess [J]. Rock and Soil Mechanics , 2009 , 30 ( Sup 2 ): 339 - 343 . (in Chinese)
郭小云 , 王敏 , 闫嘉庆 , 等 . 灰土挤密桩法和强夯法处理湿陷性黄土地基的效果对比 [J]. 施工技术 , 2012 , 41 ( 19 ): 68 - 71 .
Guo X Y , Wang M , Yan J Q , et al . Comparison of effect of lime-soil compaction pile and dynamic consolidation method to improve collapsible loess ground [J]. Construction Technology , 2012 , 41 ( 19 ): 68 - 71 . (in Chinese)
陈福江 , 刘金刚 , 方钱宝 , 等 . 水泥土挤密桩加固黄土隧道地基的稳定性研究 [J]. 铁道建筑 , 2017 ( 7 ): 85 - 87 .
Chen F J , Liu J G , Fang Q B , et al . Stability research of loess tunnel subsoil reinforced by cement soil compaction piles [J]. Railway Engineering , 2017 ( 7 ): 85 - 87 . (in Chinese)
许健 , 温淑桥 , 梁媛 , 等 . 引水暗渠湿陷性黄土-灰土挤密桩复合地基动力特性 [J]. 兰州大学学报(自然科学版) , 2012 , 48 ( 2 ): 53 - 56 .
Xu J , Wen Sh Q , Liang Y , et al . Dynamic characteristics of collapsible loess and lime-soil compaction pile composite foundation at underground water diversion canal [J]. Journal of Lanzhou University(Natural Science) , 2012 , 48 ( 2 ): 53 - 56 . (in Chinese)
张富钧 . 湿陷性黄土地基灰土挤密桩静动力特性研究 [D]. 兰州 : 甘肃农业大学 , 2011 .
Zhang F J . Static and dynamic features research of lime-soil compaction pile in collapsible loess foundation [D]. Lanzhou : Gansu Agricultural University , 2011 . (in Chinese)
张小燕 . 湿陷性黄土区桩式复合地基设计选型及其动力响应-以宝兰客运专线天水南站段为例 [D]. 兰州 : 兰州理工大学 , 2018 .
Zhang X Y . Design selection and dynamic response of pile type composite foundation in collapsible loess region: A case study at Tianshui South Station of Baoji-Lanzhou passenger line [D]. Lanzhou : Lanzhou University of Technology , 2018 . (in Chinese)
许兴旺 . 高速铁路CFG桩+挤密桩工程实践及研究 [J]. 铁道工程学报 , 2016 , 33 ( 4 ): 36 - 40 .
Xu X W . Engineering practice and research on the high speed railway composite foundation with CFG pile+compaction pile [J]. Journal of Railway Engineering Society , 2016 , 33 ( 4 ): 36 - 40 . (in Chinese)
赵秀绍 , 刁心宏 , 孙瑞民 . 郑东新区饱和粉土动三轴试验研究 [J]. 路基工程 , 2009 ( 6 ): 44 - 46 .
Zhao X Sh , Diao X H , Sun R M . Dynamic triaxial test of saturated silty soil in Zhengdong new area [J]. Subgrade Engineering , 2009 ( 6 ): 44 - 46 . (in Chinese)
张虎元 , 赵天宇 , 吴军荣 , 等 . 膨润土改性黄土衬里防渗性能室内测试与预测 [J]. 岩土力学 , 2011 , 32 ( 7 ): 1963 - 1969 .
Zhang H Y , Zhao T Y , Wu J R , et al . Laboratory measurement and prediction to the permeability of bentonite-modified loess as a landfill liner [J]. Rock and Soil Mechanics , 2011 , 32 ( 7 ): 1963 - 1969 . (in Chinese)
杨博 , 张虎元 , 赵天宇 , 等 . 改性黄土渗透性与孔隙结构的依存关系 [J]. 水文地质工程地质 , 2011 , 38 ( 6 ): 96 - 101 .
Yang B , Zhang H Y , Zhao T Y , et al . Responsibility of permeability of modified loess soil on microstructure [J]. Hydrogeology and Engineering Geology , 2011 , 38 ( 6 ): 96 - 101 . (in Chinese)
袁中夏 . 黄土动残余变形的特性与机理研究 [D]. 哈尔滨 : 中国地震局工程力学研究所 , 2010 .
Yuan Zh X . Characteristics and mechanism of dynamic residual deformation of loess [D]. Harbin : Institute of Engineering Mechanics, China Earthquake Administration , 2010 . (in Chinese)
李兰 , 王兰民 , 石玉成 . 粘粒含量对甘肃黄土抗液化性能的影响 [J]. 世界地震工程 , 2007 , 23 ( 4 ): 102 - 106 .
Li L , Wang L M , Shi Y Ch . Effect of clay on liquefaction of loess in Gansu [J]. World Information on Earthquake Engineering , 2007 , 23 ( 4 ): 102 - 106 . (in Chinese)
黄祥 , 李劲松 , 王丽艳 , 等 . 格栅加筋废弃钢渣的强度特性试验研究 [J]. 防灾减灾工程学报 , 2018 , 38 ( 5 ): 844 - 849 .
Huang X , Li J S , Wang L Y , et al . Experimental study on shear strength characteristics of geogrid reinforced waste steel slag [J]. Journal of Disaster Prevent and Mitigation Engineering , 2018 , 38 ( 5 ): 844 - 849 . (in Chinese)
晏长根 , 顾良军 , 杨晓华 , 等 . 土工格室加筋黄土的三轴剪切性能 [J]. 中国公路学报 , 2017 , 30 ( 10 ): 17 - 24 .
Yan Ch G , Gu L J , Yang X H , et al . Triaxial shear property of geocell-reinforced loess [J]. China Journal of Highway and Transport , 2017 , 30 ( 10 ): 17 - 24 . (in Chinese)
彭淑君 , 谢婉丽 , 马闫 , 等 . 含水率对不同加筋方式黄土强度的影响 [J]. 水土保持通报 , 2013 , 33 ( 4 ): 275 - 278 .
Peng Sh J , Xie W L , Ma Y , et al . Influence of moisture content on strength of loess with different reinforcements [J]. Bulletin of Soil and Water Conservation , 2013 , 33 ( 4 ): 275 - 278 . (in Chinese)
李驰 , 王东栋 , 乌力吉那顺 , 等 . 黄土泥岩接触地带边坡的土工织物防护模型试验 [J]. 防灾减灾工程学报 , 2017 , 37 ( 3 ): 442 - 448 .
Li Ch , Wang D D , Wuliji N Sh , et al . Model experimental research on disaster prevention of slope stability in loess mudstone contacted zones using geotextile [J]. Journal of Disaster Prevent and Mitigation Engineering , 2017 , 37 ( 3 ): 442 - 448 . (in Chinese)
马闫 , 谢婉丽 , 彭淑君 , 等 . 加筋方式对黄土动力特性影响三轴试验研究 [J]. 水文地质工程地质 , 2017 , 44 ( 4 ): 50 - 56 .
Ma Y , Xie W L , Peng Sh J , et al . Influence of the reinforce scheme on dynamic properties of the reinforced loess with dynamic triaxial test [J]. Hydrogeology and Engineering Geology , 2017 , 44 ( 4 ): 50 - 56 . (in Chinese)
刘少文 , 张军 , 孙玲 . 交通荷载下非对称加筋路堤动力特性研究 [J]. 郑州大学学报(工学版) , 2014 , 35 ( 2 ): 41 - 45 .
Liu Sh W , Zhang J , Sun L . Study on dynamic behavior of asymmetric reinforced embankment under traffic load [J]. Journal of Zhengzhou University (Engineering Science) , 2014 , 35 ( 2 ): 41 - 45 . (in Chinese)
孙玲 . 黄土地区非对称加筋路堤作用机理及变形特性研究 [D]. 武汉 : 华中科技大学 , 2014 .
Sun L . Study on mechanism and deformation behavior of asymmetric reinforced-embankment in loess area [D]. Wuhan : Huazhong University of Science and Technology , 2014 . (in Chinese)
王谦 , 刘红玫 , 马海萍 , 等 . 水泥改性黄土的抗液化特性与机制 [J]. 岩土工程学报 , 2016 , 38 ( 11 ): 2128 - 2134 .
Wang Q , Liu H M , Ma H P , et al . Liquefaction behavior and mechanism of cement-stabilized loess [J]. Chinese Journal of Geotechnical Engineering , 2016 , 38 ( 11 ): 2128 - 2134 . (in Chinese)
Shan B , Wang Ch M , Dong Q Y , et al . Experimental study on improving collapsible loess with cement [J]. Global Geology , 2010 , 13 ( 2 ): 79 - 84 .
王银梅 , 张咸恭 . 水泥对黄土湿陷灾害防治的机理分析 [J]. 中国地质灾害与防治学报 , 1995 , 6 ( 2 ): 50 - 53 .
Wang Y M , Zhang X G . Analysis on controlling mechanism of loess collapse disaster of cement [J]. The Chinese Journal of Geological Hazard and Control , 1995 , 6 ( 2 ): 50 - 53 . (in Chinese)
Kamruzzaman A H , Chew S H , Lee F H . Structuration and destructuration behavior of cement-treated Singapore marine clay [J]. Journal of Geotechnical and Geoenvironmental Engineering , 2009 , 135 ( 4 ): 573 - 589 .
Wang J D , Peng S J , Xie W L . Study on the cement-improved loess under the vibratory load by dynamic tests [J]. Advanced Materials Research , 2013 , 838-841 : 1302 - 1308 .
王家鼎 , 彭淑君 , 马闫 , 等 . 高速列车振动荷载下水泥改良黄土动力学试验 [J]. 地震工程学报 , 2013 , 35 ( 1 ): 35 - 41 .
Wang J D , Peng Sh J , Ma Y , et al . Dynamic tests on the cement-improved loess under the vibratory load [J]. Northwestern Seismological Journal , 2013 , 35 ( 1 ): 35 - 41 . (in Chinese)
张沛云 , 马学宁 . 水泥改良黄土路基动力稳定性评价参数试验研究 [J]. 水文地质工程地质 , 2019 , 46 ( 2 ): 141 - 147 .
Zhang P Y , Ma X N . An experimental study of the evaluation parameters of dynamic stability of the cement-improved loess subgrade [J]. Hydrogeology and Engineering Geology , 2019 , 46 ( 2 ): 141 - 147 . (in Chinese)
马学宁 , 梁波 . 水泥改良黄土力学特性试验研究 [J]. 岩土工程技术 , 2005 , 19 ( 5 ): 241 - 244 .
Ma X N , Liang B . Experimental study of mechanical performance of cement-improved loess [J]. Geotechnical Engineering Technique , 2005 , 19 ( 5 ): 241 - 244 . (in Chinese)
Ma X N , Zhang Zh , Zhang P Y , et al . Study on the long-term dynamic stability of improved loess subgrade for high-speed railway [J]. Proceedings of the Institution of Civil Engineers-Geotechnical Engineering , 2019 , 173 ( 3 ): 1 - 33 .
买晓斌 , 马学宁 , 李善珍 . 循环荷载作用下水泥改良黄土路基的变形特性 [J]. 铁道建筑 , 2017 , 57 ( 12 ): 78 - 81 .
Mai X B , Ma X N , Li Sh Zh . Study on deformation characteristics of cement-improved loess subgrade under cyclic loading [J]. Railway Engineering , 2017 , 57 ( 12 ): 78 - 81 . (in Chinese)
许书雅 , 王平 , 钟秀梅 , 等 . 强震作用下抗震陷黄土改良地基的微观特征分析 [J]. 地震工程学报 , 2019 , 41 ( 3 ): 724 - 730 .
Xu Sh Y , Wang P , Zhong X M , et al . Microscopic characteristics of improved aseismic subsidence loess foundations under strong earthquakes [J]. China Earthquake Engineering Journal , 2019 , 41 ( 3 ): 724 - 730 . (in Chinese)
许书雅 , 王平 , 王峻 , 等 . 强震作用下不同处理方式黄土地基抗震陷性能评价 [J]. 地震工程学报 , 2018 , 40 ( 6 ): 1198 - 1205 .
Xu Sh Y , Wang P , Wang J , et al . Evaluation of aseismic subsidence of loess foundation with different ground treatments under strong earthquake [J]. China Earthquake Engineering Journal , 2018 , 40 ( 6 ): 1198 - 1205 . (in Chinese)
王随新 , 费月英 , 杨有海 . 郑西客运专线石灰改性黄土强度特性试验研究 [J]. 路基工程 , 2007 ( 4 ): 76 - 77 .
Wang S X , Fei Y Y , Yang Y H . Experimental study on strength characteristics of lime-modified loess in Zhengzhou-Xi'an Dedicated Line [J]. Subgrade Engineering , 2007 ( 4 ): 76 - 77 . (in Chinese)
严旭德 , 张帆宇 , 梁收运 , 等 . 石灰固化黄土的比表面积和离子交换能力研究 [J]. 中山大学学报(自然科学版) , 2014 , 53 ( 5 ): 149 - 154 .
Yan X D , Zhang F Y , Liang Sh Y , et al . Characteristics of special surface area and cation exchange capacity of lime-stabilized loess [J]. Acta Scientiarum Naturalium Universitatis Sunyatseni , 2014 , 53 ( 5 ): 149 - 154 . (in Chinese)
岳建平 , 杨有海 . 石灰及其与粉煤灰混合改良黄土强度特性试验研究 [J]. 兰州工业学院学报 , 2013 , 20 ( 5 ): 41 - 45 .
Yue J P , Yang Y H . Experimental study on the strengthening behaviors of lime and flyash-lime [J]. Journal of Lanzhou Higher Polytechnical College , 2013 , 20 ( 5 ): 41 - 45 . (in Chinese)
买晓斌 . 循环荷载作用下高速铁路石灰改良黄土路基长期动力稳定性研究 [D]. 兰州 : 兰州交通大学 , 2018 .
Mai X B . Study on long-term dynamic stability of high-speed railway lime-improved loess subgrade in under cyclic load [D]. Lanzhou : Lanzhou Jiaotong University , 2018 . (in Chinese)
Wang M , Kong L W , Wang X Y . Study on dynamical modulus and damping ratio of lime-treated soil [J]. Advanced Materials Research , 2012 , 487 : 534 - 538 .
胡大林 , 胡厚兰 , 郑娅娜 . 循环荷载作用下榆佳高速公路石灰稳定土的动力特性研究 [J]. 公路 , 2013 ( 6 ): 6 - 14 .
Hu D L , Hu H L , Zheng Y N . Study on dynamic characteristics of lime stabilized soil of Yujia expressway under cyclic loading [J]. Highway , 2013 ( 6 ): 6 - 14 . (in Chinese)
羊群芳 . 基于湿陷、震陷、液化灾害的黄土微结构研究 [D]. 兰州 : 兰州大学 , 2011 .
Yang Q F . Microstructure of loess in collapsibility, seismic subsidence and liquefaction [D]. Lanzhou : Lanzhou University , 2011 . (in Chinese)
胡再强 , 沈珠江 , 谢定义 . 结构性黄土的变形特性 [J]. 岩石力学与工程学报 , 2004 , 23 ( 24 ): 4142 - 4146 .
Hu Z Q , Shen Zh J , Xie D Y . Deformation properties of structural loess [J]. Chinese Journal of Rock Mechanics and Engineering , 2004 , 23 ( 24 ): 4142 - 4146 . (in Chinese)
张耀 , 胡再强 , 陈昊 , 等 . 酸性溶液对黄土结构改良的试验研究 [J]. 岩土工程学报 , 2018 , 40 ( 4 ): 681 - 688 .
Zhang Y , Hu Z Q , Chen H , et al . Experimental study on evolution of loess structure using acid solutions [J]. Chinese Journal of Geotechnical Engineering , 2018 , 40 ( 4 ): 681 - 688 . (in Chinese)
何开明 , 周健 , 王兰民 . 化学灌浆黄土地基的抗液化性状研究 [J]. 地震研究 , 2003 , 26 ( 4 ): 396 - 399 .
He K M , Zhou J , Wang L M , et al . Research on the anti -liquefaction behavior of loess subsoil improved by chemical grouting [J]. Journal of Seismological Research , 2003 , 26 ( 4 ): 396 - 399 . (in Chinese)
邓津 , 王兰民 , 吴志坚 , 等 . 黄土抗震陷变形的酸改性方法及其微观结构分析 [J]. 岩土力学 , 2012 , 33 ( 12 ): 3624 - 3631 .
Deng J , Wang L M , Wu Zh J , et al . Acid-modified method for loess aseismic subsidence and its microstructure analysis [J]. Rock and Soil Mechanics , 2012 , 33 ( 12 ): 3624 - 3631 . (in Chinese)
邓津 , 王兰民 , 程菊红 , 等 . 降低黄土液化势的改性技术分析 [J]. 地震工程学报 , 2014 , 36 ( 4 ): 820 - 823 .
Deng J , Wang L M , Cheng J H , et al . Analysis of modification technique for reducing loess liquefaction potential [J]. China Earthquake Engineering Journal , 2014 , 36 ( 4 ): 820 - 823 . (in Chinese)
王峻 , 王谦 , 钟秀梅 , 等 . 粉煤灰与动载耦合作用下黄土震陷试验研究 [J]. 水文地质工程地质 , 2014 , 41 ( 6 ): 70 - 75 .
Wang J , Wang Q , Zhong X M , et al . Experimental study of loess seismic subsidence under the coupling effect of fly ash and dynamic loading [J]. Hydrogeology and Engineering Geology , 2014 , 41 ( 6 ): 70 - 75 . (in Chinese)
王东星 , 高向雲 , 杜怡莹 , 等 . 活性MgO-粉煤灰固化黄土剪切特性试验研究 [J]. 防灾减灾工程学报 , 2018 , 38 ( 5 ): 822 - 829 .
Wang D X , Gao X Y , Du Y Y , et al . Experimental investigation on shear properties of reactive MgO-fly ash stabilized loess [J]. Journal of Disaster Prevent and Mitigation Engineering , 2018 , 38 ( 5 ): 822 - 829 . (in Chinese)
王峻 , 王谦 , 王平 , 等 . 粉煤灰掺入量对改性黄土动本构关系的影响 [J]. 岩土工程学报 , 2013 , 35 ( 增1 ): 156 - 160 .
Wang J , Wang Q , Wang P , et al . Effect of adding amount of fly ash on dynamic constitutive relationship of modified loess [J]. Chinese Journal of Geotechnical Engineering , 2013 , 35 ( Sup 1 ): 156 - 160 . (in Chinese)
王峻 , 高中南 , 车高凤 , 等 . 动荷载作用下粉煤灰改性黄土的震陷特性 [J]. 地震工程学报 , 2016 , 38 ( 5 ): 751 - 756 .
Wang J , Gao Zh N , Che G F , et al . Seismic subsidence behavior of fly-ash-modified loess under dynamic loading [J]. China Earthquake Engineering Journal , 2016 , 38 ( 5 ): 751 - 756 . (in Chinese)
王峻 , 钟秀梅 , 柴少峰 , 等 . 动荷载作用下粉煤灰改良黄土的动应力-应变关系研究 [J]. 世界地震工程 , 2015 , 31 ( 1 ): 45 - 51 .
Wang J , Zhong X M , Chai Sh F , et al . Research on dynamic stress-strain relationship of flyash-modified loess under dynamic load [J]. World Information on Earthquake Engineering , 2015 , 31 ( 1 ): 45 - 51 . (in Chinese)
王兆朋 . 粉煤灰掺量对黄土动力特性的影响研究 [D]. 西安 : 西北农林科技大学 , 2016 .
Wang Zh P . Effect of fly ash the dynamic characteristics of loess [D]. Xi'an : Northwest A&F University , 2016 . (in Chinese)
Wang Q , Wang L M , Zhong X M , et al . Dynamic behavior and constitutive relationship of saturated fly ash-modified loess [J]. European Journal of Environmental and Civil Engineering , 2019 , 25 ( 7 ): 1 - 16 .
高中南 , 周仲华 , 王峻 , 等 . 粉煤灰改良饱和黄土的抗液化特性 [J]. 地震工程学报 , 2018 , 40 ( 1 ): 105 - 110 .
Gao Zh N , Zhou Zh H , Wang J , et al . Anti-liquefaction properties of saturated loess improved by fly ash [J]. China Earthquake Engineering Journal , 2018 , 40 ( 1 ): 105 - 110 . (in Chinese)
危险废物鉴别标准通则 : GB 5085.7—2007 [S]. 北京 : 中国环境科学出版社 , 2007 .
放射性废物分类 : GB 9133—1995 [S]. 北京 : 中国标准出版社 , 1995 .
陈瑞锋 . 循环荷载作用下赤泥改良黄土的动力特性研究 [D]. 太原 : 太原理工大学 , 2018 .
Chen R F . Study on dynamic characteristics of loess modified by red mud under cyclic loading [D]. Taiyuan : Taiyuan University of Technology , 2018 . (in Chinese)
陈瑞锋 , 田高源 , 米栋云 , 等 . 赤泥改性黄土的基本工程性质研究 [J]. 岩土力学 , 2018 , 39 ( 增1 ): 89 - 97 .
Chen R F , Tian G Y , Mi D Y , et al . Study on the engineering properties of red mud modified loess [J]. Rock and Soil Mechanics , 2018 , 39 ( Sup 1 ): 89 - 97 . (in Chinese)
董晓强 , 张强 , 寇晓辉 , 等 . 赤泥黄土复合体的动参数试验研究 [J]. 东南大学学报(自然科学版) , 2016 , 46 ( 增1 ): 135 - 141 .
Dong X Q , Zhang Q . Kou X H, et al. Experimental study on dynamic parameters of red mud loess complex[J]. Journal of Southeast University(Natural Science Edition) , 2016 , 46 ( Sup 1 ): 135 - 141 . (in Chinese)
张强 . 赤泥作为路基材料的动力性能研究 [D]. 太原 : 太原理工大学 , 2017 .
Zhang Q . Study on dynamic properties of red mud as road material [D]. Taiyuan : Taiyuan University of Technology , 2017 . (in Chinese)
蒋挺大 . 木质素 [M]. 北京 : 化学工业出版社 , 2008 .
Jiang T D . Lignin [M]. Beijing : Chemical Industry Press , 2008 . (in Chinese)
Cai G J , Zhang T , Liu S Y , et al . Stabilization mechanism and effect evaluation of stabilized silt with lignin based on laboratory data [J]. Marine Geotechnology , 2016 , 34 ( 4 ): 331 - 340 .
贺智强 , 樊恒辉 , 王军强 , 等 . 木质素加固黄土的工程性能试验研究 [J]. 岩土力学 , 2017 , 38 ( 3 ): 731 - 739 .
He Zh Q , Fan H H , Wang J Q , et al . Experimental study of engineering properties of loess reinforced by lignosulfonate [J]. Rock and Soil Mechanics , 2017 , 38 ( 3 ): 731 - 739 . (in Chinese)
Vinod J S , Indraratna B , Mahamud M A A . Stabilization of an erodible soil using a chemical admixture [J]. Ground Improvement , 2010 , 163 ( 1 ): 43 - 51 .
Liu W , Wang J , Lin G C , et al . Microscopic mechanism affecting shear strength in lignin-treated loess samples [J]. Advances in Materials Science and Engineering , 2019 , 2019 : 1 - 12 .
王谦 . 饱和黄土地基震害改性处理变形控制技术 [R]. 兰州 : 中国地震局兰州地震研究所 , 2018 .
Wang Q . Deformation control technology of seismic modification of saturated loess foundation [R]. Lanzhou : Lanzhou Institute of Seismology, CEA , 2018 . (in Chinese)
Yuan Z X , Wang L M . Collapsibility and seismic settlement of loess [J]. Engineering Geology , 2009 , 105 : 119 - 123 .
孙军杰 , 王兰民 , 秋仁东 , 等 . 基于物理力学机制的黄土震陷数学估算模型 [J]. 工程力学 , 2012 , 29 ( 5 ): 61 - 68 .
Sun J J , Wang L M , Qiu R D , et al . A mathematical estimation model for seismic subsidence of loess based on physical-mechanical mechanism [J]. Engineering Mechanics , 2012 , 29 ( 5 ): 61 - 68 . (in Chinese)
王兰民 , 刘红玫 , 李兰 , 等 . 饱和黄土液化机理与特性的试验研究 [J]. 岩土工程学报 , 2000 , 22 ( 1 ): 89 - 94 .
Wang L M , Liu H M , Li L , et al . Laboratory study on the mechanism and behaviors of saturated loess liquefaction [J]. Chinese Journal of Geotechnical Engineering , 2000 , 22 ( 1 ): 89 - 94 . (in Chinese)
张虎元 , 彭宇 , 王学文 , 等 . 抗疏力固化剂改性黄土进失水能力研究 [J]. 岩土力学 , 2016 , 37 ( 增1 ): 19 - 26 .
Zhang H Y , Peng Y , Wang X W , et al . Water entrance-and-release ability of loess soil modified by consoled system [J]. Rock and Soil Mechanics , 2016 , 37 ( Sup 1 ): 19 - 26 . (in Chinese)
吕擎峰 , 吴朱敏 , 王生新 , 等 . 温度改性水玻璃固化黄土机制研究 [J]. 岩土力学 , 2013 , 34 ( 5 ): 1293 - 1298 .
Lyu Q F , Wu Zh M , Wang Sh X , et al . Mechanism of temperature-modification silicification grouted loess [J]. Rock and Soil Mechanics , 2013 , 34 ( 5 ): 1293 - 1298 . (in Chinese)
周春梅 , 王琴华 , 张静波 , 等 . 干湿和冻融循环对压实黄土路用性能影响的试验研究 [J]. 防灾减灾工程学报 , 2019 , 39 ( 3 ): 533 - 540 .
Zhou Ch M , Wang Q H , Zhang J B , et al . Experimental study on the influence of dry-wet and freeze-thaw cycles on compacted loess road performance [J]. Journal of Disaster Prevent and Mitigation Engineering , 2019 , 39 ( 3 ): 533 - 540 . (in Chinese)
Cui Z , He P , Yang W . Mechanical properties of a silty clay subjected to freezing-thawing [J]. Cold Regions Science and Technology , 2014 , 98 : 26 - 34 .
袁志辉 , 倪万魁 , 唐春 , 等 . 干湿循环下黄土强度衰减与结构强度试验研究 [J]. 岩土力学 , 2017 , 38 ( 7 ): 1894 - 1902 .
Yuan Zh H , Ni W K , Tang Ch , et al . Experimental study of structure strength and strength attenuation of loess under wetting-drying cycle [J]. Rock and Soil Mechanics , 2017 , 38 ( 7 ): 1894 - 1902 . (in Chinese)
Huang Y , Wen Z , Wang L , et al . Centrifuge testing of liquefaction mitigation effectiveness on sand foundations treated with nanoparticles [J]. Engineering Geology , 2019 , 249 : 249 - 256 .
Gao H , Bu C , Wang Z , et al . Dynamic characteristics of expanded polystyrene composite soil under traffic loadings considering initial consolidation state [J]. Soil Dynamics and Earthquake Engineering , 2017 , 102 : 86 - 98 .
Zhang X D , Ren K . Experimental study on dynamic elastic modulus and critical dynamic stress of cinder-improved soil subgrade [J]. Journal of Highway and Transportation Research and Development (English Edition) , 2018 , 12 ( 4 ): 25 - 32 .
Lu X S , Xiang W . Experimental study on dynamic characteristics of ionic soil stabilizer reinforcing red clay [J]. Advanced Materials Research , 2011 , 374-377 : 1391 - 1395 .
Shi W , Hu R G , Zhang L L , et al . Experimental study on geosynthetic reinforced soil dynamic characteristics under cyclic loading [C]∥ First International Conference on Transportation Infrastructure and Materials . DEStech Transactions on Engineering and Technology Research . USA : DEStech Publications , 2017 .
湿陷性黄土地区建筑规范 : GB 50025—2004 [S]. 北京 : 中国建筑工业出版社 , 2004 .
Wang L M , Wu Z J , Xia K , et al . Amplification of thickness and topography of loess deposit on seismic ground motion and its seismic design methods [J]. Soil Dynamics and Earthquake Engineering , doi: 10.1016/j.soildyn.2018.02.021 http://dx.doi.org/10.1016/j.soildyn.2018.02.021 .
Wang L M , Wang Q , Zhong X M , et al . Study on improvement methods of saturated loess ground [C]∥ The 7th China-Japan Geotechnical Symposium . New Advances in Geotechnical Engineering . Beijing : China Communication Press , 2018 : 342 - 346 .
建筑抗震设计标准 : GB 50011—2010 [S]. 北京 : 中国建筑工业出版社 , 2010 .
Mitchell J , Santamarina J . Biological considerations in geotechnical engineering [J]. Journal of Geotechnical and Geoenvironmental Engineering, ASCE , 2005 , 131 ( 10 ): 1222 - 1233 .
刘士雨 , 俞缙 , 韩亮 , 等 . 三合土表面微生物诱导碳酸钙沉淀耐水性试验研究 [J]. 岩石力学与工程学报 , 2019 , 38 ( 9 ): 1718 - 1728 .
Liu Sh Y , Yu J , Han L , et al . Experimental study on water resistance of tabia surface with microbially induced carbonate precipitation [J]. Chinese Journal of Rock Mechanics and Engineering , 2019 , 38 ( 9 ): 1718 - 1728 . (in Chinese)
何稼 , 楚剑 , 刘汉龙 , 等 . 微生物岩土技术的研究进展 [J]. 岩土工程学报 , 2016 , 38 ( 4 ): 643 - 653 .
He J , Chu J , Liu H L , et al . Research advances in biogeotechnology [J]. Chinese Journal of Geotechnical Engineering , 2016 , 38 ( 4 ): 643 - 653 . (in Chinese)
张优龙 , 杨坪 . 微生物改善土体性能研究进展 [J]. 微生物学通报 , 2014 , 41 ( 10 ): 2122 - 2127 .
Zhang Y L , Yang P . Research progress in microorganism improving soil properties [J]. Microbiology China , 2014 , 41 ( 10 ): 2122 - 2127 . (in Chinese)
建筑工程抗震性态设计通则(试用) : CECS 160—2004 [S]. 北京 : 中国计划出版社 , 2004 .
建筑工程抗震性态设计规范 : DB37/T 5055—2016 [S]. 济南 : 山东省住房和城乡建设厅 , 2016 .
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