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1.
晚喜山期以来四川盆地构造-热演化模拟   总被引:5,自引:4,他引:1       下载免费PDF全文
黄方  刘琼颖  何丽娟 《地球物理学报》2012,55(11):3742-3753
四川盆地位于扬子板块西缘,是我国重要的含油气盆地之一.25 Ma以来的晚喜山期是四川盆地构造-热演化的重要时期,此时,盆地大部分区域受到挤压处于隆升剥蚀的构造动力学环境.本文采用有限元数值模拟方法,基于二维瞬态热传导(含平流项)的基本方程,并引入修正的Airy均衡理论模型,通过覆盖全盆地的八条剖面模拟研究了晚喜山期以来四川盆地的构造-热演化特征,且利用现今大地热流对模拟结果进行了有效约束.模拟结果显示在晚喜山期(~25 Ma)川中地区地表热流较高,为60~64 mW/m2;川西南地区次之,为60~62 mW/m2;川东北地区最低,为50~54 mW/m2.该期基底热流,也是川中隆起区热流高,川东北强烈剥蚀区热流低.热流的空间分布特征揭示了四川盆地深部动力学机制.四川盆地晚喜山期以来,抬升剥蚀作用降低了其地表热流和基底热流,其降低幅度与对应的剥蚀速率相关,即剥蚀速率越大,这种降低作用越明显.  相似文献   

2.
通过对磷灰石裂变径迹(AFT)数据系统的对比,本文从整体上分析了中、上扬子区块各地质单元在晚中生代、新生带抬升冷却特征,并初步构建了区域上中-新生代构造活动与内陆变形的时空关系.它们的构造活动在空间上具有分区性和连续性特征,在时间上具有幕式性特征.空间上的分区性与连续性主要表现在各地质单元隆升特征的差异性,即中扬子北缘江汉盆地、黄陵隆起最早开始冷却到大巴山逆冲带、米仓山-汉南隆起晚侏罗世自北(东)向南(西)的隆升与江南-雪峰山隆起、湘鄂西褶皱带、川东褶皱带及川东北地区自南东向北西依次递进逆冲褶皱变形的差异;构造活动时间上的幕式特征主要表现在阶段性的快速冷却及其相间的缓慢冷却过程.中、上扬子北缘大巴山逆冲带、米仓山-汉南隆起磷灰石裂变径迹年龄从北(东)向南(西)逐渐变小,它们在晚中生代、新生代处于秦岭-大别造山带向扬子地块逆冲挤压变形的动力学背景;而湘鄂西褶皱带、川东褶皱带及川东北地区磷灰石裂变径迹年龄自南东向北西方向减小的趋势主要受控于太平洋板块的俯冲挤压效应.中、上扬子喜山晚期的快速冷却主要是青藏高原隆升及其向东与南东方向构造逃逸挤压作用及亚洲季风等气候变化的响应.磷灰石裂变径迹的系统分析为中、上扬子递进扩展构造变形提供了年代学约束.  相似文献   

3.
磷灰石裂变径迹(AFT)分析表明松辽盆地晚期构造活动在空间上具有分区性, 在时间上具有幕式性. 空间上的分区性表现在晚期构造活动始于盆地东部, 并逐渐向西部迁移. 盆地东部裂变径迹年龄大, 表明进入抬升剥蚀作用的时间早, 而西部裂变径迹年龄小, 表明进入抬升剥蚀作用的时间晚. 盆地的抬升剥蚀量与主要构造单元关系密切, 但是东部的抬升剥蚀量明显大于中央隆起带和西部斜坡带. 时间的幕式性表现在盆地的热演化历史经历了两幕快速冷却和紧随快速冷却之后的缓慢冷却过程, 磷灰石裂变径迹的蒙特卡罗随机模拟进一步限定不同热演化的转折时间为65, 43.5, 28和15 Ma. 结合盆地所处的区域构造背景认为松辽盆地晚期热事件是对太平洋板块向欧亚板块俯冲的响应. 其中第一幕快速冷却与紧随其后的缓慢冷却过程是对燕山运动主幕构造运动的响应, 抬升剥蚀的时间可能始于嫩江组末期, 并持续到始新世末期. 盆地的抬升剥蚀速率与板块汇聚速率密切相关, 板块汇聚速率高, 抬升剥蚀速率高, 反之抬升剥蚀速率低. 第二幕快速冷却和紧随其后的缓慢冷却是对日本海的拉张与闭合的响应. 日本海的拉张导致地幔热流向日本海汇聚, 使盆地快速冷却, 相反, 日本海的闭合使盆地进入进一步的缓慢沉降阶段, 盆地的冷却速率下降.  相似文献   

4.
川东弧形带三维构造扩展的AFT记录   总被引:3,自引:1,他引:2       下载免费PDF全文
对川东弧形褶皱带北段、中段和南段的三条剖面,进行了7件样品的磷灰石裂变径迹(AFT)测试,结合前人已发表的4件样品,分析模拟了主要背斜的隆升-剥露热历史.结果表明川东弧形带主体构造变形时间为135→65 Ma,即早白垩世早期到晚白垩世晚期.进而建立并对比了三条剖面的构造变形时序,揭示出川东弧形带的三维构造扩展历史:(1) 平行于构造线走向,表现为从中心向两翼的构造扩展,弧形带中段的构造变形最早,起始时间为早白垩世早期(约135 Ma),北段和南段的变形较晚,起始时间为早白垩世晚期(约100 Ma);(2) 垂直于构造线走向,在弧形带北段和中段均表现为由东向西的构造扩展,而在弧形带南段,由于受到前缘华蓥山断裂的影响,表现为自西向东的变形时序.川东弧形带的三维构造扩展历史暗示了"弯山构造"的成因模式,以及华蓥山先存断裂对弧形构造的限制作用.  相似文献   

5.
川东褶皱带作为华南板块中部的“侏罗山式”褶皱,开始形成于晚古生代.自白垩纪晚期开始,受太平洋板块和印度板块对欧亚大陆挤压的影响,这一构造带乃至华南板块中部又叠加了新的构造变形.但是,目前对于川东褶皱带白垩纪以来的构造演化缺乏足够的认识.位于川东褶皱带东侧、雪峰造山带西麓的沅麻盆地形成于早白垩世.晚白垩世以来,沅麻盆地与川东褶皱带处于同一构造应力场中,因此对盆地内早白垩世红层的古地磁研究对于解释川东褶皱带中生代晚期以来的构造演化有着重要的意义.该研究在沅麻盆地早白垩世红层中开展的古地磁学研究获得了可靠的原生剩磁分量:Ds=15.6°,Is=42.9°,k=118.6,α95=2.6°,表明沅麻盆地自早白垩世以来发生了4.1°±3.0°的顺时针构造转动.对川东褶皱带周缘白垩纪古地磁数据所揭示的地壳旋转变形,与断裂和褶皱轴组成的构造线迹变化之间的线性相关性分析,表明川东褶皱带位于齐岳山断裂带东南侧的部分,受印度板块-欧亚大陆、太平洋板块-华南板块间的挤压作用,自晚白垩世以来累积了约50~93 km的右旋错断量.  相似文献   

6.
滇西临沧花岗岩基新生代剥蚀冷却的裂变径迹证据   总被引:13,自引:0,他引:13       下载免费PDF全文
为揭示临沧花岗岩基的剥蚀冷却历史,探讨印藏碰撞对滇西的影响,对6块临沧花岗岩基样品进行锆石和磷灰石裂变径迹测定,并利用模拟退火法对其中5块样品的磷灰石裂变径迹数据进行非线性热史反演,估算了不同时期的剥蚀量和抬升量. 结果表明,岩基自印藏陆陆碰撞以来经历了两期冷却事件,早期冷却速率仅5~10 ℃/Ma,晚期冷却速率明显增高,特别是近3 Ma以来的冷却速率达到16~20 ℃/Ma;两期总剥蚀厚度可达3300~3500 m. 分析表明冷却事件与印藏碰撞关系密切,早期冷却是在印藏碰撞影响下,临沧岩基卷入逆冲推覆运动而遭遇抬升、剥蚀的结果;晚期冷却则是上新世以来,特别是3Ma以来岩基经受整体的强烈抬升、剥蚀的结果,该期构造抬升量约为672~1263 m;裂变径迹资料还揭示印藏碰撞先影响南部岩体,随后才波及到岩基中北段.  相似文献   

7.
本文通过峨眉山基底卷入构造带低温热年代学(磷灰石和锆石裂变径迹、锆石(U-Th)/He)研究,结合典型构造-热结构特征诠释峨眉山晚中-新生代冲断扩展变形与热年代学耦合性.峨眉山磷灰石裂变径迹(AFT)和锆石(U-Th)/He(ZHe)年龄值分别为4~30Ma和16~118Ma.ZHe年龄与海拔高程关系揭示出ZHe系统抬升剥蚀残存的部分滞留带(PRZ).低温热年代学年龄与峨眉山构造分带性具有明显相关性特征:万年寺逆断层上盘基底卷入构造带AFT年龄普遍小于10Ma,万年寺逆断层下盘扩展变形带AFT年龄普遍大于10 Ma;且空间上AFT年龄与断裂带具有明显相关性,它揭示出峨眉山扩展变形带中新世晚期以来断层冲断缩短构造活动.低温热年代学热史模拟揭示峨眉山构造带晚白垩世以来的多阶段性加速抬升剥蚀过程,基底卷入构造带岩石隆升幅度大约达到7~8km,渐新世以来抬升剥蚀速率达0.2~0.4mm·a-1,其新生代多阶段性构造隆升动力学与青藏高原多板块间碰撞过程及其始新世大规模物质东向扩展过程密切相关.  相似文献   

8.
鄂尔多斯盆地东南缘处于渭北隆起、晋西挠褶带和东秦岭造山带的转折地带,构造位置独特,演化历史复杂.本文选取东缘韩城地区和南缘东秦岭洛南地区上三叠统延长组为研究对象,采集6件砂岩样品进行锆石、磷灰石裂变径迹分析,对关键构造-热事件提供热年代学约束,恢复盆地东南缘不同构造带的热演化史,深化对盆地东南部油气资源赋存条件的认识,以期实现油气勘探的新突破.研究表明韩城和洛南地区的抬升冷却史存在明显差异.磷灰石裂变径迹年龄表现为从南到北减小的趋势.东缘韩城剖面磷灰石裂变径迹记录51.6~66.3 Ma、33 Ma两次抬升冷却的峰值年龄.南缘洛南剖面锆石裂变径迹年龄和磷灰石裂变径迹年龄分别记录89~106 Ma和59~66 Ma的冷却抬升年龄.洛南地区抬升冷却时间较早,剥蚀速率(106m/Ma)大于韩城地区(68m/Ma),且持续时间长.磷灰石裂变径迹(Apatite Fission Track,AFT)热史模拟显示,晚中生代,受燕山运动的影响,东秦岭地区发生强烈的构造岩浆事件,洛南地区热演化程度明显高于韩城地区.洛南剖面的热演化主要受岩浆活动的控制,韩城剖面为埋藏增温型.鄂尔多斯盆地东南缘的裂变径迹年龄格局基本受控于白垩纪以来的抬升冷却事件.  相似文献   

9.
江南隆起位于扬子与华夏地块的碰撞汇聚带,是研究华南大地构造演化的关键地质单元.本文采用磷灰石裂变径迹及(U-Th-Sm)/He年龄分布特征定性分析与径迹长度分布数据定量模拟相结合,主要研究了幕阜山岩体新生代的隆升与剥蚀过程,并在此基础上结合区域构造背景, 对其构造-热演化之间的关系进行了探讨.自晚白垩世持续隆升以来,幕阜山岩体经历的平均剥蚀厚度约4800 m.在不同岩体间,隆升过程及幅度存在差异,空间上具有非均匀性.热史结果显示幕阜山岩体经历了3期剥蚀, 其中两期快速剥蚀分别发生在晚白垩世-古近纪(80~50 Ma)和10 Ma以来,而这之间为一期缓慢剥蚀过程.研究区古近纪的快速剥蚀反映了中-下扬子喜山期大规模伸展断陷作用造成的肩部块体快速剥蚀事件; 约10 Ma以来的快速剥蚀是对太平洋板块向西运动的响应.幕阜山岩体自燕山晚期以来的隆升剥蚀作用具有良好的盆地沉积响应, 三期隆升剥蚀事件与研究区构造演化的动力学背景相吻合.  相似文献   

10.
渤海湾盆地区燕山期构造特征与盆地转型   总被引:2,自引:0,他引:2  
以各种地震资料的分析解释、构造解析为基础,对燕山期渤海湾盆地区构造特征与盆地转型过程进行了研究.结果表明:燕山早期渤海湾盆地区以挤压褶皱及逆冲断裂发育为主,在太行山以东、盐山-歧口-兰聊断裂以西地区主要展布方向为NE和NNE向,整体具有西强东弱的特征,在盐山-歧口-兰聊断裂以东的济阳坳陷区,以NW(W)向的逆冲断层发育为主;燕山中期研究区以伸展构造发育为主,在太行山以东、盐山-歧口-兰聊断裂带以西地区断层展布方向主要为N(N)E向,盐山-歧口-兰聊断裂带以东、郯庐断裂带以西、张家口-蓬莱断裂带以南地区主要发育NW(W)向负反转断层,张家口-蓬莱断裂带以北地区以N(N)E向断裂发育为主;燕山晚期以正反转断层及新生逆冲断层发育为主.燕山期渤海湾盆地区发生了三次重要的盆地转型,燕山早期由印支期的挤压隆升剥蚀转型为山间坳陷盆地,燕山中期由山间坳陷转型为强烈的陆内断陷盆地,燕山晚期由陆内断陷盆地转为隆起区遭受剥蚀.区域构造背景的转变是燕山期渤海湾盆地区转型的主控因素,不同构造期盆地的叠加改造造成了研究区前第三系油气地质条件的复杂性和多样性.  相似文献   

11.
五台山新生代隆升剥露的磷灰石裂变径迹研究   总被引:5,自引:1,他引:4       下载免费PDF全文
五台山是中国三级地貌重要分界线之一太行山脉海拔最高的山,其隆升历史的研究对中国三级地貌形成时代的确定具有重要意义.沿五台山最高峰北台顶向北自上而下至山根和阜平县境内长城岭地区海拔最高点向东自上而下至山根两条剖面,分别采集一系列岩石样品,最后挑选16个样品进行磷灰石裂变径迹研究.通过对封闭径迹长度分布直方图的分析,表明五台山样品自晚白垩纪末以来一直在单调冷却,即五台山在持续地隆升;通过对样品径迹年龄-高程图的分析,同时结合热史模拟及Excel数据拟合,表明晚白垩纪末以来五台山的隆升为分阶段幕式过程,共经历了三期快速隆升:74~58 Ma、46~31 Ma及15 Ma左右.五台山晚白垩纪末以来的隆升与太行山其他地区及周边张宣隆起、泰山等其他山系的隆升在时间上存在对应关系,所以,五台山新生代隆升为区域性构造演化的一部分.  相似文献   

12.
合肥盆地构造热演化的裂变径迹证据   总被引:12,自引:0,他引:12       下载免费PDF全文
运用裂变径迹分析方法,探讨分析了合肥盆地中新生代的构造热演化特征. 上白垩统和古近系下段样品的磷灰石裂变径迹(AFT)数据主体表现为靠近部分退火带顶部温度(±65℃)有轻度退火,由此估算晚白垩世至古近纪早期合肥盆地断陷阶段的古地温梯度接近38℃/km,高于盆地现今地温梯度(275℃/km).下白垩统、侏罗系及二叠系样品的AFT年龄(975~25Ma)和锆石裂变径迹(ZFT)年龄(118~104Ma)均明显小于其相应的地层年龄,AFT年龄-深度分布呈现冷却型曲线形态,且由古部分退火带、冷却带或前完全退火带及其深部的今部分退火带组成,指示早白垩世的一次构造热事件和其随后的抬升冷却过程. 基于AFT曲线的温度分带模式和流体包裹体测温数据的综合约束,推算合肥盆地早白垩世走滑压陷阶段的古地温梯度接近67℃/km. 径迹年龄分布、AFT曲线拐点年龄和区域抬升剥蚀时间的对比分析结果表明,合肥盆地在早白垩世构造热事件之后的104Ma以来总体处于抬升冷却过程,后期快速抬升冷却事件主要发生在±55Ma.  相似文献   

13.
The mineralization ages reported in the past in the Tuwu-Yandong copper district not only are different,but also fall into the Hercynian epoch.This study has achieved 9 zircon and 7 apatite fission track analysis results.The zircon fission track ages range from 158 Ma to 289 Ma and the apatite ages are between 64 Ma and 140 Ma.The mineralization accords with the regional tectonics in the copper district.We consider that the zircon fission track age could reveal the mineralization age based on annealing zone temperature of 140―300℃ and retention temperature of ~250℃ for zircon fission track,and metallogenetic temperature of 120―350℃ in this ore district.Total three mineralization epochs have been identified,i.e.,289―276 Ma,232―200 Ma and 165―158 Ma,and indicate occurrence of the min-eralization in the Indosinian and Yanshan epochs.Corresponding to apatite fission track ages,the three tectonic-mineralizing epochs are 140―132 Ma,109―97 Ma and 64 Ma,which means age at about 100℃ after the mineralization.The three epochs lasted 146 Ma,108 Ma and about 100 Ma from ~250℃ to ~100℃ and trend decrease from early to late.It is shown by the fission track modeling that this district underwent three stages of geological thermal histories,stable in Cretaceous and cooling both before Cretaceous and after 20 Ma.  相似文献   

14.

Based on the analysis of apatite and zircon fission track (FT), the FT age distribution and the peck-ages of the Mesozoic tectonic events in the southwest margin of the Ordos Basin (OB) were discussed. (1) The early event mainly occurred at 213–194 Ma with a peck-age of 205 Ma, and corresponded to the tectonic uplift and the mega-clastic deposit in the southwest OB during the Late Triassic. (2) The middle event included at least two episodes. One was at 165–141 Ma with a peck-age of 150 Ma, and the other was at 115–113 Ma with a peck-age of 114 Ma, corresponding to the over-thrusting and the mega-clastic deposits in the southwest OB during the Late Jurassic to the Early Cretaceous. (3) The late event mainly demonstrated the regional uplifting and included at least two episodes. One was at 100–81 Ma with a peck-age of 90 Ma, and the other was at 66–59 Ma with a peck-age of 63 Ma. Additionally, the relationship analysis of the tectonic event and the mineralizing chronology revealed that the extreme environment of the peck-age event and the subsequent moderate activity could be the key factors of the multiple resources coupling and coexistence in the OB.

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15.
While the high-temperature exhumation process in the Dabie Mountain has been well documented, the low-temperature exhumation of this area since Cretaceous, especially since Late Cretaceous, is relatively less studied. Low-temperature thermochronology provides one of the important approaches to solve this problem. Based on the data of fission track and (U-Th)/He analysis of apaptites and zircons from the granitoid and metamorphic rocks in the Dabie Mountain, this paper applies Mancktelow’s and Braun’s methods to estimating the exhumation rates and to drawing the regional differential exhumation pattern since Cretaceous, especially since Late Cretaceous by taking into consideration factors such as heat transport, heat advection, topography and heat production, which could influence geothermal field in the shallow crust. Since Cretaceous, the exhumation rate (0.08-0.10 km/Ma) in the region around Tiantangzhai and in the south of Tanlu fault zone is larger than the rate (0.04-0.07 km/Ma) in other areas of the Dabie Mountain. The regional differential exhumation pattern might be related to the push-up effect caused by differential strike-slip movement along NNE-trending faults.  相似文献   

16.
Based on the analysis of apatite and zircon fission track (FT), the FT age distribution and the peck-ages of the Mesozoic tectonic events in the southwest margin of the Ordos Basin (OB) were discussed. (1) The early event mainly occurred at 213-194 Ma with a peck-age of 205 Ma, and corresponded to the tectonic uplift and the mega-clastic deposit in the southwest OB during the Late Triassic. (2) The middle event included at least two episodes. One was at 165-141 Ma with a peck-age of 150 Ma, and the other was at 115-113 Ma with a peck-age of 114 Ma, corresponding to the over-thrusting and the mega- clastic deposits in the southwest OB during the Late Jurassic to the Early Cretaceous. (3) The late event mainly demonstrated the regional uplifting and included at least two episodes. One was at 100-81 Ma with a peck-age of 90 Ma, and the other was at 66-59 Ma with a peck-age of 63 Ma. Additionally, the relationship analysis of the tectonic event and the mineralizing chronology revealed that the extreme environment of the peck-age event and the subsequent moderate activity could be the key factors of the multiple resources coupling and coexistence in the OB.  相似文献   

17.
Based on the analysis of apatite and zircon fission track (FT), the FT age distribution and the peck-ages of the Mesozoic tectonic events in the southwest margin of the Ordos Basin (OB) were discussed. (1) The early event mainly occurred at 213–194 Ma with a peck-age of 205 Ma, and corresponded to the tectonic uplift and the mega-clastic deposit in the southwest OB during the Late Triassic. (2) The middle event included at least two episodes. One was at 165–141 Ma with a peck-age of 150 Ma, and the other was at 115–113 Ma with a peck-age of 114 Ma, corresponding to the over-thrusting and the mega-clastic deposits in the southwest OB during the Late Jurassic to the Early Cretaceous. (3) The late event mainly demonstrated the regional uplifting and included at least two episodes. One was at 100–81 Ma with a peck-age of 90 Ma, and the other was at 66–59 Ma with a peck-age of 63 Ma. Additionally, the relationship analysis of the tectonic event and the mineralizing chronology revealed that the extreme environment of the peck-age event and the subsequent moderate activity could be the key factors of the multiple resources coupling and coexistence in the OB.  相似文献   

18.

It is a new attempt to study thermal evolution related to mineralization using the fission track (FT) method. Apatite and zircon fission track data are reported for 6 samples collected from Jiama ore district as well as its periphery. The FT ages of apatites in the ore district are (16.1±0.9) Ma and (18.8±1.1) Ma and reflect the age of late period of hydrothermal mineralizing event. Apatite FT age of (22.0±4.3) Ma and zircon FT age of (20.9±2.0) Ma are related to the early period of mineralization. Another zircon FT age of (341.6±79.1) Ma, inheriting mineral source characteristic, has no connection with the mineralization. Based on the thermal history analysis, the mineralization began before 25–22 Ma. Cooling rate in the ore district is 5–6°C/Ma averagely, in which a slow cooling occurred at 90–80°C. About 2.7 km has been denuded and the denudation rate is higher than the uplifting rate.

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