Abstract:Yuyao-Lishui fault zone is a NE-NEE fault zone with the characteristics of long activity time, far extension and wide development in the southeast of Zhejiang Province. The structural features of the fault zone are very obvious in Moshishan Group of Upper Volcanic Series and Yongkang Group of Lower Volcanic Series, which are located in Shengzhou area of Zhejiang. The Yuyao-Lishui fault zone is composed of a series of NE-NNE normal faults, NE-NNE thrust faults and the folds with NE-NNE axial trace. The normal faults control the formation and development of Cretaceous basin in the study area, and the thrust faults are multi-level imbricate from NW to SE. Through the research of structural activity characteristics and time series of controlling new and old strata, combining with the comprehensive analysis of regional structural activity regularity and temporal and spatial evolution relationship, the authors considered that the normal faults, controlling the formation and development of Cretaceous basin, have formed in earlier times and are closely related to the lithosphere extension in Early Cretaceous, the imbricate thrust faults combined with the fold structure (as inclined folds and closed homoclinal folds) after Late Cretaceous, may be related to the transformation from the Paleo-Pacific tectonic domain to the Pacific tectonic domain. The results could provide the new data for investigating the evolution of Yanshanian tectonics in East Zhejiang.
[1] 浙江省地质矿产局.浙江省区域地质志[M].北京:地质出版社,1989:1-688. [2] 方炳兴,马武平,周建华,等.浙江省岩石地层[M].武汉:中国地质大学出版社,1996:1-236. [3] 王存智,邢光福,陈荣,等.浙江嵊州地区陈蔡岩群变质岩的锆石年代学研究:江绍结合带对华南印支期造山运动的响应[J].中国地质,2015,42(6):1700-1714. [4] 曾剑威,陈荣,禇平利,等.浙江永康盆地朝川组泥灰岩段沉积特征及其古气候意义[J].资源调查与环境,2014,35(1):39-45. [5] 于津海,赵蕾,徐夕生.中国东南新生代玄武岩中麻粒岩相捕虏体的新发现及其意义[J].高校地质学报,2002,8(3):280-292. [6] 张彦杰,周效华,廖圣兵,等.江南造山带北缘鄣公山地区逆冲-推覆构造特征[J].资源调查与环境,2013,34(2):71-79. [7] 孔祥儒,熊绍伯,周文星.浙江省深部地球物理研究新进展——屯溪—温州、诸暨—临海地学断面及区域重力研究成果[J].浙江地质,1995,11(1):50-62. [8] Carter A,Roques D,Bristow C,et al.Understanding Mesozoic accretion in southeast Asia: Significance of Triassic-thermotectonism (Indosinian orogeny) in Vietnam[J].Geology,2001,29(3):211-214. [9] Lepvrier C,Maluski H,Van Tich V,et al.The Early Triassic Indosinian Orogeny in Vietnam (Truong Son Belt and Kontum Massif):Implications for the geodynamic evolution of Indochina[J].Tectonophysics,2004,393(1/2/3/4):87-118. [10] Ames L,Tilton G R,Zhou G Z.Timing of collision of the Sino-Korean and Yangtse cratons:U-Pb zircon dating of coesite-bearing eclogites[J].Geology,1993,21(4):339-342. [11] Li S G,Xiao Y L,Liou D,et al.Collision of the North China and Yangtse blocks and formation of coesite-bearing eclogites:Timing and processes[J].Chem Geol,1993,109(1/2/3/4):89-111. [12] Jahn B M.Geochemical and isotopic characteristics of UHP eclogites and ultramafic rocks of the Dabie orogen:implications for continental subduction and collisional tectonics[M]//Hacker B R,Liou J G.When Continents Collide:Geodynamics and Geochemistry of Ultrahigh-Pressure Rocks.Dordrecht:Springer,1998:203-239. [13] Zheng J P,Griffin W L,O’Reilly S Y, et al. Zircons in mantle xenoliths record the Triassic Yangtze-North China continental collision[J].Earth Planet Sci Lett,2006,247(1/2):130-142. [14] Li Z X,Li X H.Formation of the 1300-km-wide intracontinental orogen and postorogenic magmatic province in Mesozoic South China:A flat-slab subduction model[J].Geology,2007,35(2):179-182. [15] Xia Y,Xu X S, Zhu K Y. Paleoproterozoic S-and A-type grani-tes in southwestern Zhejiang:Magmatism,metamorphism and implications for the crustal evolution of the Cathaysia basement[J].Precambrian Res,2012,216-219:177-207. [16] 蓝善先,谢家莹,张德宝,等.浙江1:5万谷来镇、三界镇幅区域地质调查报告[R].南京:南京地质矿产研究所,2000. [17] 徐岩,胡艳华,顾明光,等.浙江东南印支晚期的构造伸展事件:来自诸暨大爽岩体的证据[J].岩石学报,2013,29(9):3131-3141. [18] 高万里,王宗秀,李春麟,等.浙东南印支期花岗岩的锆石U-Pb年代学、地球化学及构造意义[J].地质学报,2014,88(6):1055-1067. [19] Mao J R,Ye H M,Liu K,et al. The Indosinian collision-extension event between the South China Block and the Palaeo-Pacific plate:Evidence from Indosinian alkaline granitic rocks in Dashuang,eastern Zhejiang,South China[J].Lithos,2013,172/173:81-97. [20] 王德滋,周新民.中国东南部晚中生代花岗质火山-侵入杂岩成因与地壳演化[M].北京:科学出版社,2002. [21] 廖圣兵,陈荣,褚平利,等.浙江长乐绿溪花岗岩体U-Pb年代学及地球化学研究[J].矿物岩石地球化学通报,2016,35(1):87-98. [22] 邢光福,陈荣,杨祝良,等.东南沿海晚白垩世火山岩浆活动特征及其构造背景[J].岩石学报,2009,25(1):77-91. [23] 宋鸿林. 燕山式板内造山带基本特征与动力学探讨[J].地学前缘,1999,6(4):309-316. [24] Wallis S R,Anczkiewicz R,Endo S,et al.Plate movements,ductile deformation and geochronology of the Sanbagawa belt,SW Japan:Tectonic significance of 89-88 Ma Lu-Hf eclogite ages[J].J Metam Geol,2009,27(2):93-105. [25] 葛荣峰,张庆龙,王良书,等.松辽盆地构造演化与中国东部构造体制转换[J].地质论评,2010,56(2):180-195. [26] 索艳慧,李三忠,曹现志,等.中国东部中新生代反转构造及其记录的大洋板块俯冲过程[J].地学前缘,2017,24(4):249-267.