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SHAO Sheng-jun, WANG Li-qin, SHAO Shuai, WANG Qiang. Structural yield and collapse deformation of loess[J]. Chinese Journal of Geotechnical Engineering, 2017, 39(8): 1357-1365. DOI: 10.11779/CJGE201708001
Citation: SHAO Sheng-jun, WANG Li-qin, SHAO Shuai, WANG Qiang. Structural yield and collapse deformation of loess[J]. Chinese Journal of Geotechnical Engineering, 2017, 39(8): 1357-1365. DOI: 10.11779/CJGE201708001

Structural yield and collapse deformation of loess

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  • Received Date: May 24, 2016
  • Published Date: August 24, 2017
  • The loess is a typically structural soil, thus its collapsibility is actually the response of damaged structure under water immersion. The structure of loess, which can reflect the physical composition and the structure-deposited characteristics of different geological ages for loess, can be quantitatively described by the structural index. Both loading and water immersion can result in the attenuation of the structure of loess. However, the representative indexes of the two attenuation actions are different, i.e., the loading-induced attenuation can be represented by the compressive yield stress of structure and the compression curve of loess under certain water content; while the water immersion-induced attenuation can be illustrated by the decrease of the compressive yield stress of structure and the variation of compression curve. Two kinds of compression tests and structural index tests are performed on a series of loess specimens with different water contents, which are sampled from several sites deposited in the Middle and Upper Pleistocenes. According to the test results, the relationship between the structural index and the compressive yield stress of structure is analyzed, as well as the logarithmic relationship between the ratio of the pore ratio of loess under compressive deformation to initial pore ratio and the ratio of compression stress to the compressive yield stress of structure. The analysis indicates that the structural index of loess has a monotonic relation with the comprehensively physical quantity representing the fundamental physical property. The compressive yield stress of structure is approximatively linear with the structural index. The variation law of the ratio of pore ratio is approximatively consistent with that of the logarithmic value of the ratio of compressive yield stress. Then, the method for the calculation of structural index is proposed that the structural index can be derived from several fundamental physical parameters, moreover, the compressive yield stress of structure can be determined according to the linear relation with structural index. The compression curves of natural loess and saturated loess can be respectively described in accordance with the logarithmic relationship between the ratio of pore ratio and the ratio of compressive stress, thereby, the coefficient of collapsibility under overburden pressure of saturated loess can be obtained. This method has been used in several loess sites in Xi'an district to calculate the collapse deformation under overburden pressure. The computed results are in good agreement with the measured ones of the filed immersion tests, demonstrating the rationality and accuracy of the collapsibility evaluation method for the structural loess. It can be applied as a new method, by which the collapse deformation evaluation of loess foundation can be calculated for the construction engineering and the underground structure embedded in the loess layer with a larger thickness.
  • [1]
    GB50025—2004湿陷性黄土地区建筑规范[S]. 2004. (GB50025—2004 Code for building construction in collapsible loess regions[S]. 2004. (in Chinese))
    [2]
    邵生俊, 李 骏, 李国良, 等. 大厚度自重湿陷黄土湿陷变形评价方法的研究[J].岩土工程学报, 2015, 37(6): 956-978. (SHAO Sheng-jun, LI Jun, LI Guo-liang, et al. Evaluating method on self weight collapsible deformation of large thickness loess foundation[J]. Chinese Journal Geotechnical Engineering, 2015, 37(6): 956-978. (in Chinese))
    [3]
    邵生俊, 周飞飞, 龙吉勇. 原状黄土结构性及其定量化参数研究[J]. 岩土工程学报, 2004, 26(4): 531-536. (SHAO Sheng-jun, ZHOU Fei-fei, LONG Ji-yong. Structural properties of loess and its quantitative parameter[J]. Chinese Journal of Geotechnical Engineering, 2004, 26(4): 531-536. (in Chinese))
    [4]
    邵生俊, 王丽琴, 陶 虎, 等. 黄土的构度及其与粒度、密度、湿度之间的关系[J]. 岩土工程学报, 2014, 36(8): 1387-1393. (SHAO Sheng-jun, WANG Li-qin, TAO Hu, et al. Structural index of loess and its relation with granularity, density and humidity[J]. Chinese Journal of Geotechnical Engineering, 2014, 36(8): 1387-1393. (in Chinese))
    [5]
    机械工业勘察设计研究院有限公司. 西安市地铁五号线月登阁试坑浸水试验报告[R]. 西安: 机械工业勘察设计研究院有限公司, 2014. (China Jikan Institute of Engineering Investigations and Design Co Ltd. Report on soaking test of Yue Deng Ge site in Xi'an Metro Line 5[R]. Xi'an: China Jikan Institute of Engineering Investigations and Design Co Ltd, 2014. (in Chinese))
    [6]
    机械工业勘察设计研究院有限公司. 西安财经学院新校区一期工程湿陷性黄土场地现场试坑浸水试验报告[R]. 西安: 机械工业勘察设计研究院有限公司, 2004. (China Jikan Institute of Engineering Investigations and Design, Co., Ltd. Report on soaking test of collapsible loess site of the first phase of the new campus of Xi'an Institute of Finance and Economics[R]. Xi'an: China Jikan Institute of Engineering Investigations and Design Co Ltd, 2004. (in Chinese))
    [7]
    西安市地下铁道有限责任公司. 西安地铁穿越湿陷性黄土工程性质及应对措施研究成果报告[R]. 西安: 西安市地下铁道有限责任公司, 2013. (Xi'an Metro Co Ltd. The research report on engineering behaviors and measures of tunnel passing collapsible loess strata in Xi'an Metro[R]. Xi'an: Xi'an Metro Co Ltd, 2013. (in Chinese))
    [8]
    机械工业勘察设计研究院有限公司. 曲江新区黄渠头村桩基浸水载荷试验[R]. 西安: 机械工业勘察设计研究院有限公司, 2004. (China Jikan Research Institute of Engineering Investigations and Design Co Ltd. Immersed field loading test of pile foundation at the Huangqutou village, New-Qujiang district, Xi'an city[R]. Xi'an: China Jikan Research Institute of Engineering Investigations and Design Co Ltd, 2004. (in Chinese))
    [9]
    中煤西安设计工程有限责任公司. 西安北至机场城际轨道交通工程岩土工程勘察现场试坑浸水试验报告[R]. 西安: 中煤西安设计工程有限责任公司, 2015. (China Coal Xi'an Design Engineering Co Ltd. Report on the field immersion test of geotechnical investigation for intercity rail engineering from the Northern of Xi'an to Xianyang airport[R]. Xi'an: China Coal Xi'an Design Engineering Co Ltd, 2015. (in Chinese))
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