Matches in SemOpenAlex for { <https://semopenalex.org/work/W2043900361> ?p ?o ?g. }
- W2043900361 endingPage "210" @default.
- W2043900361 startingPage "195" @default.
- W2043900361 abstract "The deformation and uplifting history of the Qinghai–Tibet Plateau is a controversial issue, and so far there has been insufficient evidence for interpretation. Investigations of the Cenozoic deformation in the northeastern edge of this plateau may provide some relevant information. In this paper, the Cenozoic deformation history of the Qaidam Basin has been studied based on results from the balanced cross-section restoration of six geological sections. They indicate that: (1) the Qaidam Basin has been undergoing continuous shortening since the beginning of Cenozoic with two relatively fast shortening phases, the first during 42.8–40.5 Ma and the second during 2.8 Ma–present; (2) the shortening rate of the Qaidam Basin reached its maximum value since 2.8 Ma, and approximately 32% of the average total Cenozoic shortening took place in this period; and (3) the shortening of all sections reached approximately 50% of their respective total shortening by Miocene. The Cenozoic deformation history of the Qaidam Basin shows good synchroneity with uplifting history of the Qinghai–Tibet Plateau. It is therefore proposed that the deformation and uplifting in the south and north edges of the Qinghai–Tibet Plateau was almost synchronous, with the Altyn Tagh Fault formed at the beginning of India–Asia collision. Accordingly, it is postulated that since the India–Asia collision at the beginning of Cenozoic, the Indian Plate moved northward continuously with two relatively fast phases, the first during 42.8–40.5 Ma and the second during 2.8 Ma–present. Approximately 50% of the total Cenozoic northward displacement of the Indian Plate, of the total amount of crustal shortening and uplifting of the Qinghai–Tibet Plateau, and of the total Cenozoic strike slip displacement of the Altyn Tagh Fault were probably reached by the early Miocene. Moreover, another 30–40% might have taken place during 2.8 Ma–present. The periods during 42.8–40.5 Ma and during 2.8 Ma–present may also be the two fast phases for crustal shortening and uplifting of the Qinghai–Tibet Plateau and strike slip displacement of the Altyn Tagh Fault." @default.
- W2043900361 created "2016-06-24" @default.
- W2043900361 creator A5005028395 @default.
- W2043900361 creator A5022816322 @default.
- W2043900361 creator A5080098344 @default.
- W2043900361 creator A5080806051 @default.
- W2043900361 creator A5084108895 @default.
- W2043900361 date "2006-03-15" @default.
- W2043900361 modified "2023-10-03" @default.
- W2043900361 title "Cenozoic deformation history of the Qaidam Basin, NW China: Results from cross-section restoration and implications for Qinghai–Tibet Plateau tectonics" @default.
- W2043900361 cites W1492591453 @default.
- W2043900361 cites W1597063492 @default.
- W2043900361 cites W1659758765 @default.
- W2043900361 cites W1857980690 @default.
- W2043900361 cites W1909705670 @default.
- W2043900361 cites W1968042449 @default.
- W2043900361 cites W1968894582 @default.
- W2043900361 cites W1970957370 @default.
- W2043900361 cites W1971492133 @default.
- W2043900361 cites W1972694007 @default.
- W2043900361 cites W1974467019 @default.
- W2043900361 cites W1993697991 @default.
- W2043900361 cites W1996132723 @default.
- W2043900361 cites W1996923801 @default.
- W2043900361 cites W1997020239 @default.
- W2043900361 cites W1999812652 @default.
- W2043900361 cites W2001230931 @default.
- W2043900361 cites W2008917609 @default.
- W2043900361 cites W2012594522 @default.
- W2043900361 cites W2016297915 @default.
- W2043900361 cites W2016760315 @default.
- W2043900361 cites W2025941139 @default.
- W2043900361 cites W2026252331 @default.
- W2043900361 cites W2027243914 @default.
- W2043900361 cites W2035391532 @default.
- W2043900361 cites W2041774199 @default.
- W2043900361 cites W2045701784 @default.
- W2043900361 cites W2047468532 @default.
- W2043900361 cites W2048947169 @default.
- W2043900361 cites W2053200882 @default.
- W2043900361 cites W2053984125 @default.
- W2043900361 cites W2055576385 @default.
- W2043900361 cites W2055833799 @default.
- W2043900361 cites W2057235710 @default.
- W2043900361 cites W2066679709 @default.
- W2043900361 cites W2067467619 @default.
- W2043900361 cites W2075972202 @default.
- W2043900361 cites W2079335235 @default.
- W2043900361 cites W2081608429 @default.
- W2043900361 cites W2082213466 @default.
- W2043900361 cites W2086580138 @default.
- W2043900361 cites W2091717222 @default.
- W2043900361 cites W2094074034 @default.
- W2043900361 cites W2096140565 @default.
- W2043900361 cites W2096393398 @default.
- W2043900361 cites W2097671688 @default.
- W2043900361 cites W2105315404 @default.
- W2043900361 cites W2105325875 @default.
- W2043900361 cites W2106240160 @default.
- W2043900361 cites W2107131849 @default.
- W2043900361 cites W2113585222 @default.
- W2043900361 cites W2115023651 @default.
- W2043900361 cites W2115518283 @default.
- W2043900361 cites W2119461781 @default.
- W2043900361 cites W2152546160 @default.
- W2043900361 cites W2160761287 @default.
- W2043900361 cites W2165471161 @default.
- W2043900361 cites W2167174628 @default.
- W2043900361 cites W2171356021 @default.
- W2043900361 cites W2349841790 @default.
- W2043900361 cites W2371372897 @default.
- W2043900361 cites W2404697470 @default.
- W2043900361 doi "https://doi.org/10.1016/j.epsl.2005.11.033" @default.
- W2043900361 hasPublicationYear "2006" @default.
- W2043900361 type Work @default.
- W2043900361 sameAs 2043900361 @default.
- W2043900361 citedByCount "182" @default.
- W2043900361 countsByYear W20439003612012 @default.
- W2043900361 countsByYear W20439003612013 @default.
- W2043900361 countsByYear W20439003612014 @default.
- W2043900361 countsByYear W20439003612015 @default.
- W2043900361 countsByYear W20439003612016 @default.
- W2043900361 countsByYear W20439003612017 @default.
- W2043900361 countsByYear W20439003612018 @default.
- W2043900361 countsByYear W20439003612019 @default.
- W2043900361 countsByYear W20439003612020 @default.
- W2043900361 countsByYear W20439003612021 @default.
- W2043900361 countsByYear W20439003612022 @default.
- W2043900361 countsByYear W20439003612023 @default.
- W2043900361 crossrefType "journal-article" @default.
- W2043900361 hasAuthorship W2043900361A5005028395 @default.
- W2043900361 hasAuthorship W2043900361A5022816322 @default.
- W2043900361 hasAuthorship W2043900361A5080098344 @default.
- W2043900361 hasAuthorship W2043900361A5080806051 @default.
- W2043900361 hasAuthorship W2043900361A5084108895 @default.
- W2043900361 hasConcept C109007969 @default.
- W2043900361 hasConcept C127313418 @default.
- W2043900361 hasConcept C134306372 @default.