Semiempirical Correlation between P-Wave Velocity and Thermal Conductivity of Frozen Silty Clay Soil

Author:

Ji Yadong12,Zhu Kaipeng12,Lyu Chao3ORCID,Wang Shidong12,Ning Dianyan124,Fan Juan12,Shi Lei12

Affiliation:

1. Xi’an Research Institute Co. Ltd., China Coal Technology and Engineering Group Corp., Xi’an, 710077, Shaanxi, China

2. Shaanxi Key Laboratory of Coal Mine Water Hazard Prevention and Control Technology, Xi’an, 710077, Shaanxi, China

3. School of Resources and Geosciences, China University of Mining and Technology, Xuzhou 221116, China

4. School of Geology and Environment, Xi’an University of Science and Technology, Xi’an 710054, China

Abstract

In this study, the thermal conductivity and P-wave velocity of silty clay soil with different water contents are investigated through experiments at different temperatures, and a theoretical correlation between thermal conductivity and wave velocity is established. With temperature decline, the unfrozen water content is reduced and frost heave cracks propagate in soil samples. The variations in thermal conductivity and P-wave velocity are summarized as four phases. The freezing temperature of silty clay soil is between −2°C and −4°C. There is an inversely proportional relationship between thermal conductivity and P-wave velocity for silty clay soil at temperatures below freezing. The experimental results show that the theoretical correlation can well explain the relationship between P-wave velocity and thermal conductivity. These findings provide a possibility for determining the thermal conductivity easily and quickly in geothermal systems and underground engineering projects.

Funder

Shaanxi Key Lab of Mine Water Hazard Prevention and Control

Publisher

Hindawi Limited

Subject

Mechanical Engineering,Mechanics of Materials,Geotechnical Engineering and Engineering Geology,Condensed Matter Physics,Civil and Structural Engineering

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