Correlation analysis of physical and mechanical parameters of inland fluvial-lacustrine soft soil based on different survey techniques

Author:

Zhang Liujun12,Qiu Youqiang13,Wu Tong4,Zhang Wei5

Affiliation:

1. CCCC First Highway Consultants Co., Ltd , Xi’an 710075 , China

2. School of Highway, Chang’an University , Xi’an 710064 , China

3. School of Civil and Resource Engineering, University of Science and Technology Beijing , Beijing 100083 , China

4. CCCC Second Highway Engineering Co., Ltd , Xi’an 710065 , China

5. School of Civil Engineering, Northwest Minzu University , Lanzhou 730030 , China

Abstract

Abstract Based on the collected soil property index test data of more than 2,500 groups of inland fluvial-lacustrine soft soil, the correlation of physical and mechanical parameters of this soft soil was systematically analyzed. The results show that the physical indexes of inland fluvial-lacustrine soft soil are close to that of marine soft soil, while its mechanical indexes are higher. However, the variation coefficient of its mechanical indexes is much larger than that of the physical indexes. In addition, it is found that the cone penetration parameters of this soft soil are significantly correlated with its physical and mechanical indexes by establishing a series of empirical relationships between the static point resistance and the natural unit weight, the liquidity index, the quick shear cohesion, and vane shear strength. On the basis of the previous research results, the disturbance strength of inland fluvial-lacustrine soft soil can be converted into in situ strength by deriving the theoretical formula between the vane shear strength and the disturbance degree. The calculation process of the above conversion relation is explained in detail through an engineering case, which indicates that the theoretical formulas have good applicability for inland fluvial-lacustrine soft soil.

Publisher

Walter de Gruyter GmbH

Subject

Condensed Matter Physics,General Materials Science

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