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蒋明杰, 陆晓平, 朱俊高, 吉恩跃, 郭万里. 粗粒土静止侧压力系数估算方法研究[J]. 岩土工程学报, 2018, 40(S2): 77-81. DOI: 10.11779/CJGE2018S2016
引用本文: 蒋明杰, 陆晓平, 朱俊高, 吉恩跃, 郭万里. 粗粒土静止侧压力系数估算方法研究[J]. 岩土工程学报, 2018, 40(S2): 77-81. DOI: 10.11779/CJGE2018S2016
JIANG Ming-jie, LU Xiao-ping, ZHU Jun-gao, JI En-yue, GUO Wan-li. Method for estimating at-rest lateral pressure coefficient of coarse-grained soils[J]. Chinese Journal of Geotechnical Engineering, 2018, 40(S2): 77-81. DOI: 10.11779/CJGE2018S2016
Citation: JIANG Ming-jie, LU Xiao-ping, ZHU Jun-gao, JI En-yue, GUO Wan-li. Method for estimating at-rest lateral pressure coefficient of coarse-grained soils[J]. Chinese Journal of Geotechnical Engineering, 2018, 40(S2): 77-81. DOI: 10.11779/CJGE2018S2016

粗粒土静止侧压力系数估算方法研究

Method for estimating at-rest lateral pressure coefficient of coarse-grained soils

  • 摘要: 静止侧压力系数K0是土体基本的力学参数,进行粗颗粒土K0系数的研究对土石坝及填方工程有重要的理论意义和应用价值。目前,适用于粗粒土K0试验仪器及方法较少,因此准确可靠的K0估算公式在实际土石坝工程中具有较强的应用性。为得到可靠的粗粒土K0估算公式,利用大型K0测试仪以及大型三轴仪,对某砂卵砾石料和堆石料同时进行了系列K0试验以及CD三轴试验。基于各土料K0试验结果,验证了笔者之前提出的粗粒土K0与竖向应力的关系式。在此式基础上,结合三轴试验结果,总结了一个根据有效内摩擦角φ′预测任意固结状态以及应力状态下粗粒土K0值的估算公式。最后,利用K0试验结果验证了本文估算公式的准确性及适用性。

     

    Abstract: The at-rest earth pressure coefficient K0 is a basic mechanical parameter of soils. So studying K0 of coarse-grained soils is of important theoretical value and practical significance in geotechnical engineering. At present, there are few apparatuses and methods applicable for measuring K0 of coarse-grained soils. Therefore, an accurate and reliable empirical formula for K0 has a strong application in the actual earth-rockfill dams. For obtaining the reliable estimation formula for K0 of coarse-grained soils, a number of K0 tests and CD triaxial tests for a sandy gravel and a rockfill are performed by using the specially large-size K0 apparatus and large-size triaxial apparatus, respectively. Based on the results of K0 tests on all specimens, the relationship between K0 and vertical stress σ’v for the coarse-grained soils proposed by the authors is verified. By combining the relationship and triaxial test results, an empirical formula is obtained, which can well describe the relationship between K0 and stress state under an arbitrary consolidation condition based on the effective angle of internal friction φ′. Finally, the proposed formula is verified by using K0 test data.

     

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