Shyok Suture Zone, N Pakistan: late Mesozoic-Tertiary evolution of a critical suture separating the oceanic Ladakh Arc from the Asian continental margin

被引:76
作者
Robertson, AHF
Collins, AS
机构
[1] Univ Edinburgh, Dept Geol & Geophys, Edinburgh EH9 3JW, Midlothian, Scotland
[2] Curtin Univ Technol, Dept Appl Geol, Tecton Special Res Ctr, Perth, WA 6845, Australia
关键词
North Pakistan; Shyok suture zone; magmatic arch; Cretaceous; Kohistan;
D O I
10.1016/S1367-9120(01)00041-4
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The Shyok Suture Zone (Northern Suture) of North Pakistan is an important Cretaceous-Tertiary suture separating the Asian continent (Karakoram) from the Cretaceous Kohistan-Ladakh oceanic arc to the south. In previously published interpretations, the Shyok Suture Zone marks either the site of subduction of a wide Tethyan ocean, or represents an Early Cretaceous intra-continental marginal basin along the southern margin of Asia. To shed light on alternative hypotheses a sedimentological, structural and igneous geochemical study was made of a well-exposed traverse in North Pakistan, in the Skardu area: (Baltistan). To the south of the Shyok Suture Zone in this area is the Ladakh Arc and its Late Cretaceous, mainly volcanogenic, sedimentary cover (Burje-La Formation). The Shyok Suture Zone extends northwards (ca. 30 km) to the late Tertiary Main Karakoram Thrust that transported Asian, mainly high-grade metamorphic, rocks southwards over the suture zone. The Shyok Suture Zone is dominated by four contrasting units separated by thrusts, as follows: (1). The lowermost, Askore amphibolite, is mainly amphibolite facies meta-basites and turbiditic meta-sediments interpreted as early marginal basin rift products, or trapped Tethyan oceanic crust, metamorphosed during later arc rifting. (2). The overlying Pakora Formation is a very thick (ca. 7 km in outcrop) succession of greenschist facies volcaniclastic sandstones, redeposited limestones and subordinate basaltic-andesitic extrusives and flow breccias of at least partly Early Cretaceous age. The Pakora Formation lacks terrigenous continental detritus and is interpreted as a proximal base-of-slope apron related to rifting of the oceanic Ladakh Arc; (3). The Tectonic, Melange (< 300 m thick) includes serpentinised ultramafic rocks, near mid-ocean ridge-type volcanics and recrystallised radiolarian cherts, interpreted as accreted oceanic crust. (4). The Bauma-Harel Group (structurally highest) is a thick succession (several km) of Ordovician and Carboniferous to Permian-Triassic, low-grade, mixed carbonate/siliciclastic sedimentary rocks that accumulated on the south-Asian continental margin. A structurally associated turbiditic slope/basinal succession records rifting of the Karakoram continent (part of Mega-Lhasa) from Gondwana. Red clastics of inferred fluvial origin ('molasse') unconformably overlie the Late Palaeozoic-Triassic-succession and are also intersliced with other units in the suture zone. Reconnaissance further east (north of the Shyok River) indicates the presence of redeposited volcaniclastic sediments and thick acid tuffs, derived from nearby volcanic centres, presumed to lie within the Ladakh Arc. In addition, comparison with Lower Cretaceous elastic sediments (Maium Unit) within the Northern Suture Zone, west of the Nanga Parbat syntaxis (Hunza River) reveals notable differences, including the presence of terrigenous quartz-rich conglomerates, serpentinite debris-flow deposits and a contrasting structural history. The Shyok Suture Zone in the Skardu area is interpreted to preserve the remnants of a rifted oceanic back-arc basin and components of the Asian continental margin. In the west (Hunza River), a mixed volcanogenic and terrigenous succession (Maium. Unit) is interpreted to record syn-deformational infilling of a remnant back-arc basin/foreland basin prior to suturing of the Kohistan Arc with Asia (75-90 Ma). (C) 2002 Elsevier Science Ltd. All rights reserved.
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页码:309 / 351
页数:43
相关论文
共 108 条
[1]  
AHMAD MN, 1999, TERRA NOSTRA SCHRIFT, P2
[2]  
AHMAD MN, 1997, GEOMAGNETISM ROCK MA, V1, P1
[3]   Remnants of a Cretaceous intra-oceanic subduction system within the Yarlung-Zangbo suture (southern Tibet) [J].
Aitchison, JC ;
Badengzhu ;
Davis, AM ;
Liu, JB ;
Luo, H ;
Malpas, JG ;
McDermid, IRC ;
Wu, HY ;
Ziabrev, SV ;
Zhou, MF .
EARTH AND PLANETARY SCIENCE LETTERS, 2000, 183 (1-2) :231-244
[4]   METAMORPHIC EVIDENCE FOR AN INVERTED CRUSTAL SECTION, WITH CONSTRAINTS ON THE MAIN KARAKORAM THRUST, BALTISTAN, NORTHERN PAKISTAN [J].
ALLEN, T ;
CHAMBERLAIN, CP .
JOURNAL OF METAMORPHIC GEOLOGY, 1991, 9 (04) :403-418
[5]  
BARD JP, 1980, GEOL B U PESHAWAR, V13, P87
[6]   STRUCTURE AND METAMORPHISM OF THE KARAKORUM GNEISSES IN THE BRALDU-BALTORO VALLEY (NORTH-PAKISTAN) [J].
BERTRAND, JM ;
KIENAST, JR ;
PINARDON, JL .
GEODINAMICA ACTA, 1988, 2 (03) :135-150
[7]  
BIGNOLD SM, 1999, 14 HIM KAR TIB WORKS, P15
[8]  
Binns R.A., 1987, P PACIFIC RIM C, V87, P525
[9]  
Bloomer S. H., 1995, AM GEOPHYSICAL UNION, V88, P1, DOI DOI 10.1029/GM088P0001
[10]  
Bouma A.H., 1962, Sedimentology of some flysch deposits: A graphical approach to facies interpretation