Research on the Characteristics of Thermosyphon Embankment Damage and Permafrost Distribution Based on Ground-Penetrating Radar: A Case Study of the Qinghai–Tibet Highway

Author:

Qi Shunshun123ORCID,Li Guoyu123ORCID,Chen Dun123ORCID,Niu Fujun14ORCID,Sun Zhizhong123,Wu Gang123ORCID,Du Qingsong123ORCID,Chai Mingtang5ORCID,Cao Yapeng123,Yue Jianwei6

Affiliation:

1. State Key Laboratory of Frozen Soil Engineering, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China

2. University of Chinese Academy of Sciences, Beijing 100049, China

3. Da Xing’anling Observation and Research Station of Frozen-Ground Engineering and Environment, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Jagdaqi 165002, China

4. South China Institution of Geotechnical Engineering, School of Civil Engineering and Transportation, South China University of Technology, Guangzhou 510640, China

5. School of Civil and Hydraulic Engineering, Ningxia University, Yinchuan 750014, China

6. School of Civil Engineering and Architecture, Henan University, Kaifeng 475001, China

Abstract

In order to research the special embankment (thermosyphon embankment) damages and the distribution of permafrost under the Qinghai–Tibet Highway (QTH) embankment. The section K2952–K2953, which is a typical representative of the QTH, was chosen for the detection and research of the permafrost and embankment damages in order to determine the sources of the damages. In this study, the performance characteristics of the embankment, the active layer, and the permafrost table found in ground-penetrating radar (GPR) images were researched, combined with multi-source. According to the research findings, the construction of the embankment in this section has stabilized the effect on the permafrost table. Under the embankment of the unemployed thermosyphon section, the permafrost distribution has good structural integrity and continuity, with the permafrost table at a depth of around 5 m. The continuity of the permafrost distribution under the embankment in the thermosyphon section was poor, and there was localized degradation, with the permafrost table being approximately 6 m deep. The main cause of the irregular settlement and other damage in this section is the presence of a loose area at the base of the embankment. Although the thermosyphon on both sides of the embankment also plays a role in lifting the permafrost table, it is not ideal for managing the damage to high embankments where the type of permafrost under the embankment is high-temperature permafrost with a high ice content and where the sunny–shady slope effect is obvious. The research results described in this article can therefore provide a crucial foundation for the detection of highway damage and permafrost under embankments in permafrost regions in the future.

Funder

the Second Tibetan Plateau Scientific Expedition and Research Program

the Science and Technology Project of State Grid Corporation of China

the Foundation of the State Key Laboratory of Frozen Soil Engineering

the programme of Gansu Province Science and Technology Foundation for Youths

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference62 articles.

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