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Sand creep as a factor in land subsidence during groundwater level recovery in the southern Yangtze River delta, China

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Abstract

A number of areas worldwide are suffering from the land subsidence, including the southern Yangtze River delta, the most developed area in China. Land subsidence is mainly induced by excessive groundwater pumping and has caused numerous problems, for example, flooding, structural cracking, and ground fissuring. Although several countermeasures have been adopted to mitigate the land subsidence problem in the southern Yangtze River delta, commonly using groundwater recharge, land subsidence is still developing even when groundwater levels are rising. The observation data of land subsidence in each stratum show that the deformation of the pumped aquifer is even greater than that in the adjacent aquitards when groundwater levels are recovering. Laboratory test results on the aquifer sand in Shanghai and Changzhou (two cities in the studied area, which have the most sufficient observation data about the land subsidence and groundwater level developing with time) proved that sand creep deformation is significant and is partially responsible for the land subsidence without groundwater level drawdown. Considering the difficulty and cost of collecting borehole samples from deep pumped aquifers to obtain the essential parameters for the existing sand creep calculation models, a simplified method was then proposed to calculate the sand creep deformation in the pumped aquifer. The relationship between the sand creep rate and the time can be recognized as linear using double logarithmic coordinates and the slope can be assumed to be one. In the proposed method, the laboratory test data are not necessary. Finally, case histories from Shanghai and Changzhou were used to verify the effectiveness of the proposed method.

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References

  • Ausgustesen A, Liingaard M, Lade PV (2004) Evaluation of time-dependent behavior of soils. Int J Geomech 4(3):137–156

    Article  Google Scholar 

  • Bendetto DH, Tatsuoka F, Ishihara M (2002) Time-dependent shear deformation characteristics of sand and their constitutive modeling. Soils Found 42(2):1–22

    Article  Google Scholar 

  • Chai JC, Shen SL, Zhu HH, Zhang XL (2004) Land subsidence due to groundwater drawdown in Shanghai. Géotechnique 54(2):143–147

    Article  Google Scholar 

  • Hannink G (1994) Settlement of high-rise building in Rotterdam. In: Proceedings of the 13th International Conference on Soil Mechanics and Foundation Engineering, Balkema, New Delhi, India, pp 441–444

  • Jiangsu Geological Office (2003) Study on the land subsidence in Su-Xi-Chang area (in Chinese)

  • Lade PV, Liu CT (1998) Experimental study of drained creep behavior of sand. J Eng Mech 124(8):912–920

    Article  Google Scholar 

  • Leung CF, Lee FH, Yet NS (1996) The role of particle breakage in pile creep in sand. Can Geotech J 33:888–898

    Article  Google Scholar 

  • Mejia CA, Vaid YP, Negussey D (1988) Time dependent behavior of sand. In: Proceedings of the International Conference on Rheology and Soil Mechanics. Coventry, England

  • Murayama S, Michihiro K, Sakagami T (1984) Creep characteristics of sands. Soils Found 24(2), 1–15

    Google Scholar 

  • Nonveiller E (1963) Settlement of a grain soil on fine sand. In: Proceedings of 3rd European Conference on Soil Mechanics and Foundation Engineering. Wiesbaden, Germany, pp 285–294

  • Robert JE (1969) Sand compression as a factor in oil field subsidence. In: Proceedings of the International Symposium on Land Subsidence, Tokyo, pp 368–376

  • Shi XQ, Xue YQ, Wu JC et al (2006) A study of soil deformation properties of the groundwater system in the Changzhou area. Hydrogeol Eng Geol 33(3):1–6 (in Chinese)

    Google Scholar 

  • Shi XQ, Xue YQ, Wu JC et al (2007) Uniaxial compression test for creep model of saturated sand in Changzhou. J Eng Geol 15(2):212–216 (in Chinese)

    Google Scholar 

  • Singh A, Mitchell JK (1968) General stress-strain-time function for soils. J Soil Mech Found Div 94(1):21–46

    Google Scholar 

  • Sweeney M, Lambson MD (1991) Long term settlements of storage tanks on sand. In: Proceedings of the 10th European Conference on Soil Mechanics and Foundation Engineering. Florence, Italy, pp 587–591

  • Tatsuoka F, Santucci de Magistris F, Hayano Y et al (1998) Some new aspects of time effects on the stress-strain behavior of stiff gematerials. The geotechnics of hard soils-soft rocks, 1998, vol 2. Rotterdam, The Netherlands, pp 1285–1371

  • Wang F (2010) Mechanisms of land subsidence and the remediation technology. Ph.D. dissertation, Southeast University, Nanjing, China

  • Wei ZX (2002) The stress-strain analysis of the 4th confined aquifer in Shanghai City. Chin J Hydrogeol Eng Geol 29(1):1–4 (in Chinese)

    Google Scholar 

  • Xue YQ, Wu JC, Zhang Y et al (2008) Simulation of the regional land subsidence at south of Yangtze River delta. China Sci D Earth Sci 38(4):477–492 (in Chinese)

    Google Scholar 

  • Ye SJ, Xue YQ, Zhang Y et al (2005) Study on the deformation characteristics of soil layers in regional land subsidence model of Shanghai. Chin J Geotech Eng 27(2):140–147 (in Chinese)

    Google Scholar 

  • Zhang Y, Xue YQ, Wu JC et al (2007) Characteristics of aquifer system deformation in southern Yangtse Delta, China. Eng Geol 90:160–173

    Article  Google Scholar 

Download references

Acknowledgments

This paper is part of the project supported by the Southeast University’s “Creative Fund”; the projects No. 51108078 and 51278099 are supported by the National Natural Science Fund of China. The authors wish to express their gratitude for the support given to this work.

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Correspondence to Fei Wang.

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Wang, F., Miao, L. & Lu, W. Sand creep as a factor in land subsidence during groundwater level recovery in the southern Yangtze River delta, China. Bull Eng Geol Environ 72, 273–283 (2013). https://doi.org/10.1007/s10064-013-0474-7

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  • DOI: https://doi.org/10.1007/s10064-013-0474-7

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