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西昆仑山前冲断带断裂特征及构造单元划分
引用本文:程晓敢,黄智斌,陈汉林,杜治利,李康,师骏.西昆仑山前冲断带断裂特征及构造单元划分[J].岩石学报,2012,28(8):2591-2601.
作者姓名:程晓敢  黄智斌  陈汉林  杜治利  李康  师骏
作者单位:1. 浙江大学地球科学系,杭州310027;教育部含油气盆地构造研究中心,杭州310027
2. 塔里木油田公司勘探开发研究院,库尔勒,841000
基金项目:本文受国家自然科学基金(41072154、40972138)和国家科技重大专项(2011ZX05009-001)联合资助
摘    要:受新生代帕米尔构造结大幅度向北推移、旋转的影响,形成了弧形的西昆仑山前冲断带.本文主要通过野外地质调查、地震反射剖面的精细解释,对西昆仑山前冲断带最基本的组成部分-断裂进行系统研究.西昆仑山前冲断带内以发育与其弧形形态一致的逆冲断裂为主,但弧形冲断带中段的断裂具有挤压逆冲的同时兼有右行走滑性质.冲断带内还发育了NE 向和近EW向的走滑断裂,它们的发育时间和成因不尽相同,它们控制了冲断带内的变形,调节和改造了早期形成的构造.在对断裂系统研究的基础上,结合冲断带各个部位的结构特征和变形时间,将冲断带划分为9个次级构造单元.西昆仑山前冲断带开始发育于中新世中晚期,此后经历了上新世早期、上新世中晚期、早更新世早中期以及早更新世晚期四个演化阶段.

关 键 词:西昆仑山  冲断带  断裂特征  走滑断裂  构造单元  形成过程
收稿时间:2011/12/11 0:00:00
修稿时间:4/6/2012 12:00:00 AM

Fault characteristics and division of tectonic units of the thrust belt in the front of the West Kunlun Mountains
CHENG XiaoGan,HUANG ZhiBin,CHEN HanLin,DU ZhiLi,LI Kang and SHI Jun.Fault characteristics and division of tectonic units of the thrust belt in the front of the West Kunlun Mountains[J].Acta Petrologica Sinica,2012,28(8):2591-2601.
Authors:CHENG XiaoGan  HUANG ZhiBin  CHEN HanLin  DU ZhiLi  LI Kang and SHI Jun
Institution:Department of Earth Sciences, Zhejiang University, Hangzhou 310027, China;Structural Research Center of Oil & Gas Bearing Basin, Ministry of Education, Hangzhou 310027, China;Exploration and Development Research Institute of Tarim Oil field, Kuerle 841000, China;Department of Earth Sciences, Zhejiang University, Hangzhou 310027, China;Structural Research Center of Oil & Gas Bearing Basin, Ministry of Education, Hangzhou 310027, China;Exploration and Development Research Institute of Tarim Oil field, Kuerle 841000, China;Department of Earth Sciences, Zhejiang University, Hangzhou 310027, China;Structural Research Center of Oil & Gas Bearing Basin, Ministry of Education, Hangzhou 310027, China;Exploration and Development Research Institute of Tarim Oil field, Kuerle 841000, China
Abstract:The arc-shaped thrust belt in the front of West Kunlun Mountains formed in Cenozoic with the northward thrust and lateral rotation of Pamir syntax. We here present our new field investigation and seismic profile interpretation data to study the fault system, which provides the basis to understand the complex arc-shaped foreland thrust belt. The results indicate that the thrust belt mainly consists of thrust faults with consistent striking to the arc shape of the thrust belt, but in the middle portion occur some thrust fault holding dextral strike-slip component. Also occur NE-SW and E-W trending strike-slip faults, which differs in their active timing and mechanisms. These NE-SW and E-W trending faults control the deformation of the thrust belt and accommodate and reconstruct previous existing structures. Based on the study of fault system, determination of deformation time and structural characteristics of different portions, the arc-shaped thrust belt has been divided into 9 tectonic units. After formed in Middle-Late Miocene, the thrust belt experienced four evolution stages: Early Pliocene, Middle-Late Pliocene, early-middle Early Pleistocene and late Early Pleistocene.
Keywords:West Kunlun Mountains  Thrust belt  Fault characteristics  Strike-slip faults  Tectonic units  Forming process
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