Collisional orogene between north and south China and its eastern extension in the Korean Peninsula

Edmund Z. Chang
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引用次数: 92

Abstract

The relative movement between the north China block (Sino-Korean craton) and the south China block (Yangtze-Cathaysian craton) had been right-lateral along a transform fault during the Late Paleozoic. Devonian deep-water deposits on oceanic crust existed only in the east Qinling and Tongbuo areas where subduction of ocean crust is evidenced by metamorphism, magmatism and deformation. Carboniferous and Permian clastics and minor carbonates of shallow marine and terrestrial facies were deposited in a series of narrow basins with general east-west trending, and were controlled by the transform fault. The biota of the basins were communicated with the contemporary sedimentary basins in south China, north China and west China. There has been no wide Mesozoic oceanic crust between the north and south China blocks. Tectonic framework of central China during the Late Paleozoic is quite similar to that of western North America during the Cenozoic.

Amalgamation of Sino-Korean craton with Siberian craton at the end of Paleozoic changed the moving direction of the former to the southeast and contraction was prevailing between the already juxtaposed north and south China blocks and the intervening Dabie-Su-Lu microcontinent. The southeast corner of north China block was slipped into the concave of the microcontinent, and enabled the latter to be underthrusted to a depth of more than 80 km to form a ultra-high pressure metamorphic complex in Early and Middle Triassic time. Down-going oceanic crust is not a prerequisite of A-type subduction such as the case in Pamir. The Tan-Lu fault, primarily a hinge fault, took place at the climax of contraction between north and south China blocks in the Late Triassic. Differential uplifting and the consequent erosion of Dobie and Su-Lu terranes, which are constituted by piles of subhorizontal thrust sheets, led to an apparent left-lateral offset. Su-Lu was uplifted higher and unroofed deeper than Dabie. An ancient river system along the east-west trending suture had been drained off into Songpan-Ganzi ocean to the west. Collision of the Indian plate with the Eurasian plate shifted the relative movement between the north and south China blocks to the left-lateral and initiated the Fen-Wei graben since Paleogene.

The Imjingang belt between North and South Korea connects to the suture zone in the Dabie-Su-Lu area. To the east, an active continental margin along the southern margin of the Hida belt of Japanese islands prevailed in the Late Paleozoic. The Ogcheon belt in South Korea is an Early Paleozoic rift zone which is the extension of the Huanan aulacogen in south China. The Gyeonggi and Ryeongnam massifs of South Korea recorrelated to Yangtze and Cathaysian massifs in the mainland of China.

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中国南北碰撞造山带及其在朝鲜半岛的东延
华北地块(中朝克拉通)和华南地块(扬子-华夏克拉通)在晚古生代沿一条转换断层发生了右旋相对运动。大洋地壳上的泥盆纪深水矿床仅存在于东秦岭和铜埠地区,在这些地区,大洋地壳的俯冲作用可通过变质作用、岩浆作用和变形来证明。石炭系和二叠纪浅海相和陆相碎屑岩和少量碳酸盐岩沉积在一系列东西走向的狭窄盆地中,受转换断层控制。盆地生物区系与华南、华北、西部的现代沉积盆地相连通。在中国北部和南部地块之间,没有广泛的中生代海洋地壳。中国中部晚古生代的构造格局与北美西部新生代的构造格局十分相似。古生代末中朝克拉通与西伯利亚克拉通的合并使中朝克拉通的运动方向向东南移动,已经并置的华北和华南地块与其间的大别-苏鲁微大陆之间普遍存在收缩。华北地块东南角滑入微大陆的凹部,使微大陆在早、中三叠世被低冲至80千米以上,形成超高压变质杂岩。向下的海洋地壳并不是像帕米尔那样的a型俯冲的先决条件。郯庐断裂主要是一条铰链断裂,发生在晚三叠世中国南北地块的收缩高潮。多比地体和苏鲁地体由亚水平逆冲片堆组成,其差异抬升和随后的侵蚀导致了明显的左侧偏移。苏鲁比大别山隆起得更高,也没有隆起得更深。沿东西走向缝合线的一个古老水系已向西排入松潘-甘孜洋。印度板块与欧亚板块的碰撞使中国南北地块之间的相对运动向左侧移动,并启动了古近系以来的汾渭地堑。南北韩金港带与大别苏鲁地区缝合带相连。在东部,晚古生代,日本岛屿Hida带南缘的活跃大陆边缘盛行。韩国奥川断裂带是华南华南地区华南坳陷的延伸,为早古生代裂谷带。韩国的京畿道和龙南地块与中国大陆的扬子地块和华夏地块相似。
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