›› 2018, Vol. 32 ›› Issue (6): 616-619.

• 工程实录 • 上一篇    下一篇

土体侧土压力系数计算分析

宋 征   

  1. (三峡大学科技学院,湖北宜昌 443002)
  • 收稿日期:2018-01-24 修回日期:2018-02-01 出版日期:2018-12-20 发布日期:2018-12-21
  • 作者简介:宋 征(1984-),男,讲师,主要研究方向为岩土工程、地质灾害防治。

Lateral Earth Pressure Coefficient Under Various Soil Stress States

SONG Zheng   

  1. (College of Science and Technology of China Three Gorges University, Yichang 443002)
  • Received:2018-01-24 Revised:2018-02-01 Online:2018-12-20 Published:2018-12-21

摘要: 在土体二向应力状态分析的基础上,对侧土压力系数进行了推导,分析了侧土压力系数在不同墙背摩擦角和破裂面下的特点,并与经典土压力理论进行了比较。计算结果表明,取库伦搜索真实破裂面的平面假定时,侧土压力系数为常数,分析结果与库伦理论基本一致;曲面破裂面假定时呈先增大后减小的变化特点,且当墙背摩擦角逐渐增大时,在主动破坏特性区域侧土压力系数逐渐减小,被动破坏特性区域逐渐增大,侧土压力系数因破裂面倾角的变化特点是土压力非线性分布的原因。

关键词: 土体应力状态, 侧土压力系数, 破裂面倾角, 墙背摩擦角

Abstract: The lateral earth pressure coefficient is an important parameter in the calculation and analysis of earth pressures and is one of the influence factors on the earth pressure distributions. This paper presents a new earth pressure formula under different failure planes and friction angles of the back of the retaining wall. The results from the new lateral earth pressure formula are compared with the results from the classical formula. The results indicate that, when searching the planar failure plane using Coulomb method, the lateral earth pressure coefficient is a constant, which is consistent with the Coulomb earth pressure coefficient. Under the curved failure plane assumptions, the lateral earth pressure coefficient is not a constant and the active lateral earth pressure coefficient increase with the decrease of the friction angle of the back of the retaining wall. The passive earth pressure coefficient, however, has the reverse trend. The paper also concludes that the nonlinear lateral earth pressure coefficient change with the curved failure plane assumptions is due to the nonlinear behavior of soils.

Key words: Soil Stress States, Lateral Earth Pressure Coefficients, Angle of Failure Planes, Friction Angle at Back of Retaining Wall