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Xigaze China

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Journal Article
Published: 01 July 2003
Journal of the Geological Society (2003) 160 (4): 591–599.
... Zangbo suture zone, southern Tibet, China), and kinematics of its emplacement . Eclogae Geologicae Helvetiae , 77 , 153 – 170 . Girardeau , J. , Mercier , J.C.C. & Zao , Y. 1985 a. Structure of the Xigaze Ophiolite, Yarlung Zangbo suture zone, southern Tibet, China; genetic...
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Journal Article
Published: 25 May 2021
Geochemistry: Exploration, Environment, Analysis (2021) 21 (2): geochem2020-083.
... accurate and can be used in drilling projects to provide an important reference. In China, many valuable mineral deposits have been discovered using soil and rock geochemical surveys ( Xiong et al. 2010 ; Liu and Zhao 2016 ; Zhang 2019 ). The Xiongcun area is located around the city of Xigaze...
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Image
Seismic and outcrop examples of slumps in channels. (A, B) Rotated blocks f...
Published: 01 November 2021
Figure 7. Seismic and outcrop examples of slumps in channels. (A, B) Rotated blocks from the channel margins. (C, D) Slumps and debrites at the base of channels (Cerro Toro Formation, Upper Cretaceous, Torres del Paine, Chile, and Ngamring Formation, Upper Cretaceous, Xigaze, Tibet, China
Journal Article
Journal: Lithosphere
Publisher: GSW
Published: 23 March 2018
Lithosphere (2018) 10 (3): 446–459.
... magmatic arc and central Lhasa terrane. Detrital volumes from the active Asian margin increased markedly at ca. 88 Ma as a result of uplift of central Lhasa, leading to deltaic progradation, filling of the Xigaze forearc basin, and bypassing of sediments funneled via canyons across the subduction complex...
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Journal Article
Journal: GSA Bulletin
Published: 05 August 2021
GSA Bulletin (2021) 133 (3-4): 753–776.
..., and geochronological data from mafic and felsic rocks in the Xigaze ophiolite (southern Tibet) mantle and crustal section; the same types of published data from both this ophiolite and the Izu-Bonin-Mariana forearc are compiled for comparison. The ophiolite section is intruded by various late-stage dikes, including...
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Journal Article
Published: 19 January 2021
Journal of the Geological Society (2021) 178 (2): jgs2020-208.
... similar conditions. Parallel studies of modern ocean lithosphere and ophiolites therefore can uniquely inform the origin and genesis of both. Here we report the results of structural and petrological studies on the Xigaze ophiolite in the Tibetan Plateau, and compare it with the morphology and deep...
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Journal Article
Journal: GSA Bulletin
Published: 01 November 2014
GSA Bulletin (2014) 126 (11-12): 1595–1613.
... the revision of current models for the geological evolution of the Asian active margin during the Cretaceous. The Xigaze forearc basin began to form in the late Early Cretaceous, south of the Gangdese arc, during the initial subduction of the Neotethyan oceanic lithosphere under the Lhasa terrane. Well...
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Journal Article
Journal: GSA Bulletin
Published: 01 November 2019
GSA Bulletin (2020) 132 (5-6): 1273–1290.
... ) compositions of the Miocene allgovite in the eastern part of the Lhasa terrane ( Fig. 10A ; Zhao et al., 2013 ). Partial melting of delaminated lower continental crust is a possible model to explain the genesis of the Xigaze Na-rich dikes. For example, Mesozoic adakites in East China that were derived from...
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Journal Article
Journal: Geology
Published: 01 June 2015
Geology (2015) 43 (6): 475–478.
... al., 2013 ). The ophiolite overlies a mélange containing garnet amphibolites with 40 Ar/ 39 Ar cooling ages of 132–127 Ma ( Guilmette et al., 2012 ). The ophiolites are overlain by ∼8-km-thick Asia-derived mudstone and turbiditic sandstone sequences (Xigaze Group) deposited since at least...
FIGURES
Journal Article
Published: 01 April 2017
Journal of Foraminiferal Research (2017) 47 (2): 188–207.
...Marcelle K. BouDagher-Fadel; Xiumian Hu; G. David Price; Gaoyuan Sun; Jian-Gang Wang; Wei An Abstract This study of mid-Cretaceous foraminifera from the Linzhou, the Coqen and the Xigaze Basins in the southern Tibetan Plateau has provided the first high resolution biostratigraphic description...
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Journal Article
Published: 28 February 2017
European Journal of Mineralogy (2017) 29 (5): 821–837.
...Xu-Ping Li; Wen-Yong Duan; Lin-Quan Zhao; Hans-Peter Schertl; Fan-Mei Kong; Tong-Qiang Shi; Xin Zhang The Xigaze ophiolite represents one of the most prominent occurrences of Neo-Tethyan ocean remnants in the central part of the Yarlung-Zangbo suture zone, southern Tibet, which marks the collision...
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Journal Article
Journal: Geology
Published: 06 September 2019
Geology (2019) 47 (11): 1029–1033.
... provenance analysis. Xigaze Group forearc basin sample locations are shown in green ( Orme et al., 2015 ; Orme and Laskowski, 2016 ), whereas Rongmawa Formation (trench basin) samples are shown in pink (this study; Metcalf and Kapp, 2019 ). Major rivers and locations of towns were traced from the Esri...
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Journal Article
Journal: GSA Bulletin
Published: 01 March 2013
GSA Bulletin (2013) 125 (3-4): 401–419.
... of the Altaids (or Central Asian orogenic belt), northwestern China. The data were used to identify the petrogenesis of the mélange, and to evaluate its tectonic significance. In addition, this study aimed to assess the possible presence of Devonian mantle plume in the region. The Karamay ophiolitic mélange...
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Journal Article
Journal: GSA Bulletin
Published: 08 April 2020
GSA Bulletin (2020) 132 (11-12): 2432–2454.
... Paleozoic peak at ca. 540 Ma and a wide Proterozoic cluster between 950 Ma and 1300 Ma ( Leier et al., 2007c ). Cretaceous sedimentary basins formed in several regions across the Lhasa block ( Fig. 1B ). To the south of the Gangdese arc, the Xigaze Forearc Basin includes a condensed upper Aptian basal...
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Journal Article
Published: 01 May 2010
Journal of the Geological Society (2010) 167 (3): 511–517.
...–Ladakh Himalaya, NW India Journal of the Geological Society, London 2005 162 889 892 Girardeau J. Marcoux J. Zao Y. Lithologic and tectonic environment of the Xigaze ophiolite (Yarlung Zangbo suture zone, southern Tibet, China), and kinematics of its emplacement Eclogae...
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Journal Article
Journal: GSA Bulletin
Published: 01 January 2003
GSA Bulletin (2003) 115 (1): 21–34.
...M.A. Murphy; An Yin Abstract Regional mapping of a north-south traverse from the India-Nepal-China border junction to Mount Kailas in southwest Tibet—combined with previously published geochronologic and stratigraphic data—is the basis for an incremental restoration of the Tethyan fold-thrust belt...
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Journal Article
Journal: GSA Bulletin
Published: 01 July 2015
GSA Bulletin (2015) 127 (7-8): 1001–1020.
... and erosion, and place this evidence within the context of the early tectonic history of the southern Tibetan region. Cretaceous sedimentary basins in the Lhasa terrane can be divided into two domains separated by the Gangdese magmatic arc. To the south of the Gangdese arc, the Xigaze forearc basin...
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Journal Article
Journal: Lithosphere
Publisher: GSW
Published: 02 November 2020
Lithosphere (2020) 2020 (1): 8835259.
...Shao-Hua Zhang; Wei-Qiang Ji; Hao Zhang; Guo-Hui Chen; Jian-Gang Wang; Zhong-Yu Meng; Fu-Yuan Wu Abstract The Xigaze forearc sediments revealed the part of the tectonomagmatic history of the Gangdese arc that the bedrocks did not record. However, the sediments’ development is restricted...
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Journal Article
Journal: Lithosphere
Publisher: GSW
Published: 01 October 2016
Lithosphere (2016) 8 (5): 427–450.
... after this. A nearly continuous zone of conglomeratic rocks crops out over ∼1300 km along strike of the suture zone between rocks of the Xigaze forearc basin and the Gangdese arc. Various formation names have been assigned to these rocks, including the Kailas Formation ( Heim and Gansser, 1939...
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Journal Article
Journal: GSA Bulletin
Published: 15 September 2020
GSA Bulletin (2021) 133 (5-6): 949–962.
... that there was some ancient basement beneath the western Gangdese belt. To the south of the Gangdese arc, the Xigaze forearc basin consists of Cretaceous to lower Eocene clastic units that were mainly derived from the Gangdese arc ( Wu et al., 2010 ; Orme et al., 2015 ; Orme and Laskowski, 2016 ; Wang et al...
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