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薛秀丽, 廖欢, 曾超峰, 刘运思, 曾兴. 既有地下结构水-土阻隔效应对基坑抽水引发地层变形影响机制[J]. 岩土工程学报, 2023, 45(1): 103-111. DOI: 10.11779/CJGE20211393
引用本文: 薛秀丽, 廖欢, 曾超峰, 刘运思, 曾兴. 既有地下结构水-土阻隔效应对基坑抽水引发地层变形影响机制[J]. 岩土工程学报, 2023, 45(1): 103-111. DOI: 10.11779/CJGE20211393
XUE Xiuli, LIAO Huan, ZENG Chaofeng, LIU Yunsi, ZENG Xing. Barrier effects of existing underground structures on deformation of strata induced by dewatering of foundation pits[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(1): 103-111. DOI: 10.11779/CJGE20211393
Citation: XUE Xiuli, LIAO Huan, ZENG Chaofeng, LIU Yunsi, ZENG Xing. Barrier effects of existing underground structures on deformation of strata induced by dewatering of foundation pits[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(1): 103-111. DOI: 10.11779/CJGE20211393

既有地下结构水-土阻隔效应对基坑抽水引发地层变形影响机制

Barrier effects of existing underground structures on deformation of strata induced by dewatering of foundation pits

  • 摘要: 当基坑邻近既有地下结构时,基坑降水引发的坑外地下水渗流与地层运动均会受到地下结构阻隔(阻水效应与阻土效应);因此,在有/无邻近地下结构情况下,降水引起的基坑变形规律应是不同的。依托实际基坑工程开展了现场抽水试验,实测得到了基坑抽水引起的坑外不同含水层水位变化及围挡与土体变形规律;并基此建立了考虑邻近地下结构阻隔影响的基坑抽水三维流固耦合数值模型,以基坑与邻近地下结构间距D、基坑降水深度Hd为变化参数,探究了邻近地下结构阻隔作用对基坑抽水引发基坑变形的影响。研究发现:当基坑与既有地下结构间距较小时(如D < 20 m),地下结构对基坑变形的阻隔作用以阻土效应为主,减小了坑外地面沉降(相对于无邻近地下结构而言,以下类同);当基坑与既有地下结构间距较大时(D > 20 m),地下结构对基坑变形的阻隔作用以阻水效应为主,增大了坑外地面沉降;而随着间距进一步增大(D > 40 m),阻水与阻土效应均逐渐减弱,坑外地面沉降分布向无地下结构时的情况趋近。基坑设计时应考虑邻近已有地下结构阻水、阻土效应耦合作用的影响以更准确地计算地层损失与围挡侧移,从而更好地优化基坑支护方案。

     

    Abstract: When a foundation pit is adjacent to the existing underground structures, the groundwater seepage and ground movement caused by dewatering will be blocked by the underground structures (i.e., the water- and soil-blocking effects). On this occasion, the deformations of the foundation pit with or without adjacent underground structures should be different. A pumping test is carried out based on an actual project, and the variations of water levels and the deformations of retaining walls and soils induced by pumping are measured. Thus, a three-dimensional fluid-solid coupling model is established to simulate the dewatering of a foundation pit considering the effect of adjacent underground structures. The distance between the foundation pit and the existing underground structures (D) and the dewatering depth (Hd) are selected as the two varying parameters in the numerical model to investigate the barrier effects of the adjacent underground structures on the deformation of the foundation pit caused by pumping. It is found that when D is small (e.g., D < 20 m), the soil-blocking effects play a leading role, reducing the ground settlement outside the pit (compared with the condition without the underground structures outside the pit). When D is large (e.g., D > 20 m), the water-blocking effects play a leading role, increasing the ground settlement outside the pit. However, with the further increase of D (e.g., D > 40 m), both the water- and soil-blocking effects gradually decrease, and the distribution of the ground settlement outside the pit tends to be similar to that without the underground structures. In the design of foundation pits, the coupling actions of the water- and soil-blocking effects of the adjacent underground structures should be considered so that more accurate calculation of the ground losses and wall deflections will be achieved, which is helpful to optimize the design of the foundation pits.

     

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