Search Results - "Danian, Shi"
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Localized foundering of Indian lower crust in the India–Tibet collision zone
Published in Proceedings of the National Academy of Sciences - PNAS (06-10-2020)“…The deep structure of the continental collision between India and Asia and whether India’s lower crust is underplated beneath Tibet or subducted into the…”
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Receiver function imaging of crustal suture, steep subduction, and mantle wedge in the eastern India–Tibet continental collision zone
Published in Earth and planetary science letters (15-03-2015)“…To understand the along-strike variation of crustal deformation and tectonic processes in the India–Tibet continental collision zone, we deployed a linear…”
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Tibetan plate overriding the Asian plate in central and northern Tibet
Published in Nature geoscience (01-12-2011)“…At the southern boundary between India and Tibet, the Indian tectonic plate subducts northwards beneath the Tibetan Plateau. Seismic imaging shows that at the…”
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Crustal structure and geodynamics of the Middle and Lower reaches of Yangtze metallogenic belt and neighboring areas: Insights from deep seismic reflection profiling
Published in Journal of Asian earth sciences (15-12-2015)“…•300km long deep seismic reflection profile was shot over the world-class metallogenic belts.•Diversified deformation patterns were observed in the crust and…”
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West–east transition from underplating to steep subduction in the India–Tibet collision zone revealed by receiver-function profiles
Published in Earth and planetary science letters (15-10-2016)“…Closely-spaced receiver-function profiles in the east-central India–Tibet collision zone reveal drastic west–east changes of the crustal and upper mantle…”
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Deep geodynamics and metallogenic mechanism of the South China block: New insight from mantle tomography
Published in Tectonophysics (20-12-2023)“…The South China block (SCB) is located at the southeastern margin of the Eurasian plate, where intense Mesozoic magmatism and metallogenic belts occurred. The…”
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Crustal thickness and composition in the South China Block: Constraints from earthquake receiver function
Published in Science China. Earth sciences (01-04-2022)“…Crustal thickness and composition are closely related to geology and tectonic evolution of the region. Studying the differences in the crustal thickness and…”
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3-D velocity model beneath the Middle–Lower Yangtze River and its implication to the deep geodynamics
Published in Tectonophysics (23-10-2013)“…A mineralization zone exists in the Middle and Lower Yangtze River (MLYR) region. Previous studies have shown that this zone might be caused by the rich…”
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A fine crustal structure and geodynamics revealed by receiver functions along the Guangchang-Putian line in the Cathaysia Block, South China
Published in Tectonophysics (20-09-2021)“…The Cathaysia Block is located in South China, along the western margin of the Pacific plate, and well known for its widespread granitoids and rich…”
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Crustal structure beneath the middle–lower Yangtze metallogenic belt in East China: Constraints from passive source seismic experiment on the Mesozoic intra-continental mineralization
Published in Tectonophysics (23-10-2013)“…To understand the formation and the tectonic process of the Mesozoic middle–lower Yangtze metallogenic belt (YMB), the SinoProbe program deployed a…”
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Upper mantle velocity structure beneath the eastern South China Block and implications for late Mesozoic magmatism
Published in Journal of Asian earth sciences (01-02-2022)“…A 3-D P-wave velocity structure down to 750 km beneath the eastern South China Block is obtained by using a large number of high-quality teleseismic data…”
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Receiver function analysis of crustal structure beneath the eastern Tibetan plateau
Published in Journal of Asian earth sciences (05-09-2013)“…•The crustal thickness and Poisson’s ratio are estimated at 252 stations in the eastern Tibet.•Our results show the strong heterogeneous and complex crust…”
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Reflection seismic imaging of the Lujiang–Zongyang volcanic basin, Yangtze Metallogenic Belt: An insight into the crustal structure and geodynamics of an ore district
Published in Tectonophysics (23-10-2013)“…Five intersecting reflection seismic profiles were shot over the Lu–Zong volcanic basin, one of the seven ore districts in the middle and lower Yangtze River…”
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The distribution of the mid-to-lower crustal low-velocity zone beneath the northeastern Tibetan Plateau revealed from ambient noise tomography
Published in Journal of geophysical research. Solid earth (01-03-2014)“…We collected continuous seismic data recorded between 2007 and 2010 by 208 broadband stations from the Chinese Provincial Digital Seismic Networks, A Seismic…”
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Crustal and uppermost mantle velocity structure and its relationship with the formation of ore districts in the Middle–Lower Yangtze River region
Published in Earth and planetary science letters (15-12-2014)“…In this study, we conduct ambient noise tomography and teleseismic two-plane-wave tomography to probe the crustal and uppermost mantle structures in the…”
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Seismic evidence for a Moho offset and south-directed thrust at the easternmost Qaidam–Kunlun boundary in the Northeast Tibetan plateau
Published in Earth and planetary science letters (30-10-2009)“…During 2006 to 2007, a small array of broadband seismic stations was deployed across the eastern Qaidam–Kunlun border. Receiver functions derived from this…”
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Receiver-function imaging of the lithosphere at the Kunlun-Qaidam boundary, Northeast Tibet
Published in Tectonophysics (20-05-2019)“…We studied the crustal structure and tectonics in the north Tibetan Plateau from the Songpan-Ganzi terrane to the Qaidam Basin using teleseismic…”
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The Lithospheric Structure in the South China Block from Receiver Function: Implications for the Source of Mineral System
Published in Acta geologica Sinica (Beijing) (01-11-2021)Get full text
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New Insights into the Mesozoic Large‐scale Intra‐plate Magmatism and Mineralization in South China from Seismic Tomography
Published in Acta geologica Sinica (Beijing) (01-08-2023)“…A great amount of new S‐wave data has been combined to image the mantle structure down to lower mantle depth near the southeastern margin of Eurasia and…”
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