Tracing a subducted ridge–transform system in a late Carboniferous accretionary prism of the southern Altaids: Orthogonal sanukitoid dyke swarms in Western Junggar, NW China

Lithos - Tập 140 - Trang 152-165 - 2012
Chong Ma1,2,3, Wenjiao Xiao2,3, Brian F. Windley4, Guiping Zhao1, Chunming Han2,3, Ji'en Zhang2,3, Jun Luo3, Chao Li3
1Laboratory of Computational Geodynamics, College of Earth Science, Graduate University of the Chinese Academy of Sciences, Beijing 100049, China
2State Key Laboratory of Lithospheric Evolution, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China
3Xinjiang Research Center for Mineral Resources, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi 830011, China
4Department of Geology, University of Leicester, Leicester LE1 7RH, UK

Tài liệu tham khảo

Angelier, 1989, From orientation to magnitudes in paleostress determinations using fault slip data, Journal of Structural Geology, 11, 37, 10.1016/0191-8141(89)90034-5 Angelier, 1994, Fault slip analysis and paleostress reconstruction, 101 Bott, 1959, The mechanics of oblique slip faulting, Geological Magazine, 96, 109, 10.1017/S0016756800059987 Brown, 1998, Ridge–trench interactions and high-T–low-P metamorphism, with particular reference to the Cretaceous evolution of the Japanese Islands, Geological Society of London. Special Publication, 138, 137, 10.1144/GSL.SP.1996.138.01.09 Buckman, 2004, Tectonic evolution of Palaeozoic terranes in West Junggar, Xinjiang, NW China, Geological Society of London, Special Publication, 226, 101, 10.1144/GSL.SP.2004.226.01.06 Cande, 1986, Late Cenozoic Tectonics of the Southern Chile Trench, Journal of Geophysical Research, 91, 471, 10.1029/JB091iB01p00471 Chen, 2005, Elemental and Nd–Sr isotopic geochemistry of granitoids from the West Junggar foldbelt (NW China), with implications for Phanerozoic continental growth, Geochimica et Cosmochimica Acta, 69, 1307, 10.1016/j.gca.2004.09.019 Chen, 2004, Genesis of post-collisional granitoids and basement nature of the Junggar Terrane, NW China: Nd–Sr isotope and trace element evidence, Journal of Asian Earth Sciences, 23, 691, 10.1016/S1367-9120(03)00118-4 Chen, 2010, Zircon U–Pb ages and tectonic implications of Paleozoic plutons in northern West Junggar, North Xinjiang, China, Lithos, 115, 137, 10.1016/j.lithos.2009.11.014 Choulet, 2011, Late Paleozoic paleogeographic reconstruction of Western Central Asia based upon paleomagnetic data and its geodynamic implications, Journal of Asian Earth Sciences, 42, 867, 10.1016/j.jseaes.2010.07.011 Cole, 2009, Continental margin volcanism at sites of spreading ridge subduction: examples from southern Alaska and western California, Tectonophysics, 464, 118, 10.1016/j.tecto.2007.12.005 Cole, 2006, Eocene volcanism above a depleted mantle slab window in southern Alaska, Geological Society of America Bulletin, 118, 140, 10.1130/B25658.1 Coleman, 1989, Continental growth of Northwest China, Tectonics, 8, 621, 10.1029/TC008i003p00621 Defant, 1990, Derivation of some modern arc magmas by melting of young subducted lithosphere, Nature, 347, 662, 10.1038/347662a0 Delvaux, 2010, African stress pattern from formal inversion of focal mechanism data, Tectonophysics, 482, 105, 10.1016/j.tecto.2009.05.009 Delvaux, 2003, New aspects of tectonic stress inversion with reference to the TENSOR program, 212, 75 Delvaux, 1995, Palaeostress reconstructions and geodynamics of the Baikal region, Central Asia, part I. Palaeozoic and Mesozoic pre-rift evolution, Tectonophysics, 252, 61, 10.1016/0040-1951(95)00090-9 Delvaux, 1997, Paleostress reconstructions and geodynamics of the Baikal region, Central Asia, part 2. Cenozoic rifting, Tectonophysics, 282, 1, 10.1016/S0040-1951(97)00210-2 Dupin, 1993, Homogeneous stress hypothesis and actual fault slip: a distinct element analysis, Journal of Structural Geology, 15, 1033, 10.1016/0191-8141(93)90175-A Feng, 1989, Tectonic evolution of the West Junggar region, Xinjiang, China, Tectonics, 8, 729, 10.1029/TC008i004p00729 Féraud, 1987, Dyke swarms as paleostress indicators in areas adjacent to continental collision zones, 273 Gao, 2004, Recycling lower continental crust in the North China craton, Nature, 432, 892, 10.1038/nature03162 Gao, 2006, Geochemical characteristics of the Karamay granitoids and their significance in West Junggar, Xinjiang, Xinjiang Geology, 24, 125 Geng, 2009, Geochemical, Sr–Nd and zircon U–Pb–Hf isotopic studies of Late Carboniferous magmatism in the West Junggar, Xinjiang: implications for ridge subduction?, Chemical Geology, 266, 364, 10.1016/j.chemgeo.2009.07.001 Hao, 1993, Paleozoic strata in Western Junggar, 236 Hoek, 1995, Continental mafic dyke swarms as tectonic indicators: an example from the Vestfold Hills, East Antarctica, Precambrian Research, 75, 121, 10.1016/0301-9268(95)00033-X Huang, 2008, High-Mg adakitic rocks in the Dabie orogen, Central China: implications for foundering mechanism of lower continental crust, Chemical Geology, 255, 1, 10.1016/j.chemgeo.2008.02.014 Kamei, 2004, High-Mg diorites derived from sanukitic HMA magmas, Kyushu Island, southwest Japan arc: evidence from clinopyroxene and whole rock compositions, Lithos, 75, 359, 10.1016/j.lithos.2004.03.006 Kang, 2009, Petrographic evidence for magma mixing of Xiaerpu granite in West Junggar, Xinjiang, Acta Petrologica et Mineralogica, 28, 423 Keiding, 2009, Earthquakes, stress, and strain along an obliquely divergent plate boundary: Reykjanes Peninsula, southwest Iceland, Journal of Geophysical Research, 114, B09306, 10.1029/2008JB006253 Kusky, 2003, Controls on intrusion of near-trench magmas of the Sanak–Barabof belt, Alaska, during Paleogene ridge subduction, and consequences for forearc evolution, 371, 269 Lagabrielle, 2004, Neogene to Quaternary tectonic evolution of the Patagonian Andes at the latitude of the Chile Triple Junction, Tectonophysics, 385, 211, 10.1016/j.tecto.2004.04.023 Lefort, 2005, AMS criteria for determining the azimuth and dip of a subduction zone from a mafic dyke swarm, 49 Lefort, 2005, Structural and AMS study of a Miocene dyke swarm located above the Patagonian subduction, 225 Liu, 2009, Geochemistry and dating of E-MORB type mafic rocks from Dalabute ophiolite in West Junggar, Xinjiang and geologcial implications, Acta Petrologica Sinica, 25, 1373 Madsen, 2006, Cenozoic to Recent plate configurations in the Pacific Basin: ridge subduction and slab window magmatism in western North America, Geosphere, 2, 11, 10.1130/GES00020.1 Martin, 2005, An overview of adakite, tonalite–trondhjemite–granodiorite (TTG), and sanukitoid: relationships and some implications for crustal evolution, Lithos, 79, 1, 10.1016/j.lithos.2004.04.048 Maruyama, 1997, Pacific-type orogeny revisited: Miyashiro-type orogeny proposed, The Island Arc, 6, 91, 10.1111/j.1440-1738.1997.tb00042.x McCrory, 2009, Continuing evolution of the Pacific–Juan de Fuca–North America slab window system—a trench–ridge–transform example from the Pacific Rim, Tectonophysics, 464, 30, 10.1016/j.tecto.2008.01.018 Moyen, 2003, Late Archaean granites: a typology based on the Dharwar Craton (India), Precambrian Research, 127, 103, 10.1016/S0301-9268(03)00183-9 Osozawa, 1994, Plate reconstruction based upon age data of Japanese accretionary complexes, Geology, 22, 1135, 10.1130/0091-7613(1994)022<1135:PRBUAD>2.3.CO;2 Pollard, 1993, Stress inversion methods: are they based on faulty assumptions?, Journal of Structural Geology, 15, 1045, 10.1016/0191-8141(93)90176-B Qi, 1993, Geology and genesis of vein rock group in Western Junggar, Xinjiang, Acta Petrologica Sinica, 9, 287 Qian, 2010, Formation of high-Mg diorites through assimilation of peridotite by monzodiorite magma at crustal depths, Journal of Petrology, 51, 1381, 10.1093/petrology/egq023 Rapp, 1995, Dehydration melting of metabasalt at 8–32kbar: implications for continental growth and crust–mantle recycling, Journal of Petrology, 36, 891, 10.1093/petrology/36.4.891 Rapp, 1999, Reaction between slab-derived melts and peridotite in the mantle wedge: experimental constraints at 3.8 GPa, Chemical Geology, 160, 335, 10.1016/S0009-2541(99)00106-0 Rapp, 2010, Continent formation in the Archean and chemical evolution of the cratonic lithosphere: melt–rock reaction experiments at 3–4GPa and petrogenesis of Archean Mg-diorites (Sanukitoids), Journal of Petrology, 51, 1237, 10.1093/petrology/egq017 Rehkämper, 1997, Recycled ocean crust and sediment in Indian Ocean MORB, Earth and Planetary Science Letters, 147, 93, 10.1016/S0012-821X(97)00009-5 Sano, 2002, Ion microprobe U–Pb dating of Quaternary zircon: implication for magma cooling and residence time, Journal of Volcanology and Geothermal Research, 117, 285, 10.1016/S0377-0273(02)00297-4 Şengör, 1993, Evolution of the Altaid tectonic collage and Palaeozoic crustal growth in Eurasia, Nature, 364, 299, 10.1038/364299a0 Shen, 2009, Geochemical signature of porphyries in the Baogutu porphyry copper belt, western Junggar, NW China, Gondwana Research, 16, 227, 10.1016/j.gr.2009.04.004 Shirey, 1984, Mantle-derived Archaean monozodiorites and trachyandesites, Nature, 310, 222, 10.1038/310222a0 Sisson, 2003, Introduction: an overview of ridge–trench interactions in modern and ancient settings, 1 Stern, 2002, Subduction zones, Reviews of Geophysics, 40, 1012, 10.1029/2001RG000108 Stern, 1992, Subduction zone infancy: examples from the Eocene Izu–Bonin–Mariana and Jurassic California arcs, Geological Society of America Bulletin, 104, 1621, 10.1130/0016-7606(1992)104<1621:SZIEFT>2.3.CO;2 Su, 2006, Geochemistry of aluminous A-type granites along Darabut tectonic belt in West Junggar, Xinjiang, Geochimica, 35, 55 Sun, 1989, Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes, Geological Society of London, Special Publications, 42, 313, 10.1144/GSL.SP.1989.042.01.19 Tang, 2010, Ridge subduction and crustal growth in the Central Asian Orogenic Belt: evidence from Late Carboniferous adakites and high-Mg diorites in the western Junggar region, northern Xinjiang (west China), Chemical Geology, 277, 281, 10.1016/j.chemgeo.2010.08.012 Tang, 2012, Recycling oceanic crust for continental crustal growth: Sr–Nd–Hf isotope evidence from granitoids in the western Junggar region, NW China, Lithos, 128–131, 73, 10.1016/j.lithos.2011.11.003 Tatsumi, 1982, Origin of high-magnesian andesites in the Setouchi volcanic belt, southwest Japan, II. Melting phase relations at high pressures, Earth and Planetary Science Letters, 60, 305, 10.1016/0012-821X(82)90009-7 Tatsumi, 1982, Origin of high-magnesian andesites in the Setouchi volcanic belt, southwest Japan, I. Petrographical and chemical characteristics, Earth and Planetary Science Letters, 60, 293, 10.1016/0012-821X(82)90008-5 Tatsumi, 2003, The petrology and geochemistry of high-magnesium andesites at the western tip of the Setouchi Volcanic Belt, SW Japan, Journal of Petrology, 44, 1561, 10.1093/petrology/egg049 Thorkelson, 1996, Subduction of diverging plates and the principles of slab window formation, Tectonophysics, 255, 47, 10.1016/0040-1951(95)00106-9 Thorkelson, 2011, Mantle flow through the Northern Cordilleran slab window revealed by volcanic geochemistry, Geology, 39, 267, 10.1130/G31522.1 Tiepolo, 2008, Petrology and U–Pb zircon geochronology of amphibole-rich cumulates with sanukitic affinity from Husky Ridge (Northern Victoria Land, Antarctica): insights into the role of amphibole in the petrogenesis of subduction-related magmas, Journal of Petrology, 49, 937, 10.1093/petrology/egn012 Wakabayashi, 2004, Tectonic mechanisms associated with P–T paths of regional metamorphism: alternatives to single-cycle thrusting and heating, Tectonophysics, 392, 193, 10.1016/j.tecto.2004.04.012 Wilson, 2005, Implications of volcanism in coastal California for the Neogene deformation history of western North America, Tectonics, 24, TC3008, 10.1029/2003TC001621 Windley, 1993, Uniformitarianism today: plate tectonics is the key to the past, Journal of the Geological Society, 150, 7, 10.1144/gsjgs.150.1.0007 Windley, 2007, Tectonic models for accretion of the Central Asian Orogenic Belt, Journal of the Geological Society of London, 164, 31, 10.1144/0016-76492006-022 Wu, 1990, Paleozoic sedimentary sequences around ophiolitic melange belts of Western Junggar, 121 XBGMR, 1966. Introduction of geological map of Karamay region. Map scale at 1:200000. Xinjiang Bureau of Geology and Mineral Resources, pp. 54 (in Chinese). XBGMR, 1983. Introduction of geological map of Baiyanghe region. Map scale at 1:200000. Xinjiang Bureau of Geology and Mineral Resources, pp. 296 (in Chinese). Xiao, 2008, Middle Cambrian to Permian subduction-related accretionary orogenesis of Northern Xinjiang, NW China: implications for the tectonic evolution of central Asia, Journal of Asian Earth Sciences, 32, 102, 10.1016/j.jseaes.2007.10.008 Xiao, 2009, Paleozoic multiple subduction–accretion processes of the southern Altaids, American Journal of Science, 309, 221, 10.2475/03.2009.02 Xiao, 2010, A review of the western part of the Altaids: a key to understanding the architecture of accretionary orogens, Gondwana Research, 18, 253, 10.1016/j.gr.2010.01.007 Xu, 2006, Basic characteristics of the Karamay ophiolitic melange, Xinjiang, and its zircon SHRIMP dating, Geology in China, 33, 470 Xu, 2008, Petrology, geochemistry and geochronology of the intermediate to mafic dykes in northern Xinjiang since Late Paleozoic, Acta Petrologica Sinica, 24, 977 Yang, G.X., Li, Y.J., Gu, P.Y., Yang, B.K., Tong, L.L., Zhang, H.W., in press. Geochronological and geochemical study of the Darbut Ophiolitic Complex in the West Junggar (NW China): implications for petrogenesis and tectonic evolution. Gondwana Research, doi: 10.1016/j.gr.2011.1007.1029. Yin, 2010, Late Carboniferous high-Mg dioritic dikes in western Junggar, NW China: geochemical features, petrogenesis and tectonic implications, Gondwana Research, 17, 145, 10.1016/j.gr.2009.05.011 Yogodzinski, 1995, Magnesian andesite in the western Aleutian Komandorsky region: implications for slab melting and processes in the mantle wedge, Geological Society of America Bulletin, 107, 505, 10.1130/0016-7606(1995)107<0505:MAITWA>2.3.CO;2 Zhang, 1992, Ages and tectonic setting of ophiolites in Western Junggar, Xinjiang, Geological Review, 38, 509 Zhang, 1993, Implications of Palaeozoic ophiolites from western Junggar, NW China, for the tectonics of Central Asia, Journal of the Geological Society of London, 150, 551, 10.1144/gsjgs.150.3.0551 Zhang, 1995, The geological characteristics, tectonic settings and ages of ophiolites in Western Junggar, Xinjiang, 8, 165 Zhang, 2004, Petrogenesis of charnockites from western Junggar, Xinjiang, China. Xinjiang Geology, 22, 36 Zhang, 2006, Characteristics and geological significance of adakitic rocks in copper-bearing porphyry in Baogutu, western Junggar, Geology in China, 33, 626 Zhang, 2009, Features and meaing of mafic microgranular enclave in Xiaerpu granite in West Junggar, Xinjiang. Xinjiang Geology, 27, 207 Zhang, 2010, Magmatism of mid-oceanic ridge subduction during Carboniferous in Western Junggar: evidence from Maliya ophiolite, Acta Petrologica Sinica, 26, 3272 Zhang, 2011, A Devonian to Carboniferous intra-oceanic subduction system in western Junggar, NW China, Lithos, 125, 592, 10.1016/j.lithos.2011.03.013 Zhang, 2011, Kinematics and age constraints of deformation in a Late Carboniferous accretionary complex in western Junggar, NW China, Gondwana Research, 19, 958, 10.1016/j.gr.2010.10.003 Zhao, 2006, Two types of adakites in North Xinjiang, China, Acta Petrologica Sinica, 22, 1249