2016
DOI: 10.1016/j.enggeo.2016.10.013
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Typical embankment settlement/heave patterns of the Qinghai–Tibet highway in permafrost regions: Formation and evolution

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Cited by 72 publications
(18 citation statements)
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“…The distribution region of frozen soils accounts for about 23% of the world's land area. With the development of engineering constructions, such as railways, highways, tunnels, and mineral engineering, frozen soils are used widely as the foundation and structures of engineering in cold regions (Liu et al, 2010;Ma et al, 2009Ma et al, , 2005Yu et al, 2013Yu et al, , 2016Zhou et al, 2015aZhou et al, , 2015b. Therefore, it is essential and important for engineering design and maintenance to systematically investigate the physical-mechanical properties of frozen soils (Liu et al, 2016(Liu et al, , 2014Xu et al, 2015Xu et al, , 2016aXu et al, , 2016bXu et al, , 2017.…”
Section: Introductionmentioning
confidence: 99%
“…The distribution region of frozen soils accounts for about 23% of the world's land area. With the development of engineering constructions, such as railways, highways, tunnels, and mineral engineering, frozen soils are used widely as the foundation and structures of engineering in cold regions (Liu et al, 2010;Ma et al, 2009Ma et al, , 2005Yu et al, 2013Yu et al, , 2016Zhou et al, 2015aZhou et al, , 2015b. Therefore, it is essential and important for engineering design and maintenance to systematically investigate the physical-mechanical properties of frozen soils (Liu et al, 2016(Liu et al, , 2014Xu et al, 2015Xu et al, , 2016aXu et al, , 2016bXu et al, , 2017.…”
Section: Introductionmentioning
confidence: 99%
“…ough some countermeasures, such as elevating embankment height, constructing thermal insulation berm, and placing insulation materials in the embankment, were used to reinforce the embankments based on the principle of permafrost protection or thawing rate control, some damages to the embankments occurred subsequently [43]. At present, the subgrade distress mainly results from differential settlement [16,42], and the pavement damages are characterized by transverse cracking, potholes, and longitudinal cracking [30]. Until now, pavement damages along the QTH have not been entirely solved, and large-scale rehabilitations and remedies still need to be carried out every 2-3 years [44,45].…”
Section: Ermomechanical Stability Of Existing Linear Projectsmentioning
confidence: 99%
“…Now, the existing linear projects, such as the Qinghai-Tibet Highway (QTH), the Qinghai-Tibet Railway (QTR), the Golmud-Lhasa oil product pipeline, and the optical cable from Lanzhou to Lhasa, are all located in the QTEC within a width of less than 10 km [9,15]. During the operation of the QTH and the QTR, remarkable settlement of the embankments occurred in warm and ice-rich permafrost regions [16,17], posing an adverse effect on the traffic safety. With the design and construction of major projects along the QTEC, it is urgent to formulate the proper engineering design principles and develop the valid engineering supporting techniques.…”
Section: Introductionmentioning
confidence: 99%
“…Therefore, the cloud model is utilized to handle the randomness and fuzziness in the process of highway distresses prediction, which can reflect the actual situation. According to the relevant research results and literature data, the higher annual average ground temperature in permafrost regions is the primary cause of subsoil ice melting and thaw slumping, as well as the subgrade uneven deformation and subgrade settlement [28]. With the increase in the annual average ground temperature in permafrost regions, the stability of frozen soil becomes worse, and the highway distress degree increases.…”
Section: Analysis Of Influence Factors Of Highway Distresses Inmentioning
confidence: 99%