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1.
岷江水系流域地貌特征及其构造指示意义*   总被引:14,自引:11,他引:14       下载免费PDF全文
晚新生代以来发育岷山构造带内部的岷江水系流域盆地,无论是流域盆地内的新生代沉积记录,还是其流域地貌所呈现的典型特征,都深刻指示了青藏高原东缘地区的新构造活动。文章基于数字高程模型(DEM)数据空间分析技术,利用最新获取的高精度SRTM-DEM数据,系统提取了岷江水系中上游流域汇水盆地以及67个亚流域盆地的典型地貌参数,如流域面积、河流长度、分支比等。通过对流域地貌参数以及纵向河道高程剖面等的统计分析,认为岷江水系东西两侧具有截然不同的地貌特征,东侧流域盆地主要表现为面积小、河流长度短、分支比低以及河流梯度大等特征。由于岷江水系东西两侧地层岩性的对称发育以及整个岷江流域盆地对气候因素具有同一的响应特征,所以亚流域盆地典型参数特征指示了岷江水系两侧晚新生代构造活动的差异性,反映并印证了岷江断裂东西两侧晚新生代以来的不均衡抬升。晚新生代以来岷山构造带的快速隆起以及龙门山构造带内部差异活动是造成岷江水系东侧各支流发育程度低,东西两侧亚流域差异地貌特征形成的主要原因。  相似文献   

2.
祁连山西段党河流域地貌特征及其构造指示意义   总被引:1,自引:0,他引:1  
党河流域位于祁连山西段,流域内发育有三危山断裂、阿尔金断裂、野马河断裂和党河南山断裂等.这些断裂晚第四纪新活动性明显,控制着区内的构造变形、山体隆升与河流水系地貌发育.流域地貌参数指标能够很好地反映区域构造变形特征,因而党河流域地貌的发育和演化过程也记录了该区构造活动的重要信息.本文基于GIS空间分析技术,利用SRTM-DEM数据,系统提取了研究区内水系网络并对其进行Strahler分级后,获取党河流域各级亚流域盆地共计554个,进而计算了各亚流域盆地的面积-高程积分(HI)值,并对HI值进行空间插值,获取党河流域HI值空间分布特征.通过对比区内各个地貌参数指标,发现其与构造活动具有很好的相关性和同步性,表明构造活动对于流域地形地貌发育具有强烈的控制作用.区内亚流域盆地的面积-高程积分值分布特征表明,HI低值区与第四纪断陷盆地的范围相一致,而HI高值区则与晚更新世以来主干断裂的逆冲活动山体隆升范围相一致,反映了该区山体隆升和盆地沉降作用的总体面貌.  相似文献   

3.
滇中地块位于青藏高原东南缘,是研究青藏高原东南缘新生代晚期构造变形机制的理想场所. 滇中地块新生代晚期的变形机制主要有“下地壳流”和“刚性块体挤出”两种模式,前者认为地块构造活动分布较为均匀,后者认为构造活动沿断裂带更为强烈. 由于地貌指数对构造活动非常敏感,为厘定研究区新生代晚期的变形机制,基于30 m分辨率的SRTM?3数字高程模型(DEM)提取了滇中地区319个(亚)流域盆地,通过分析获得了面积高程积分曲线及面积高程积分(HI)、流域形状指数(BS)、流域盆地不对称度(AF)、标准化河流阶梯指数(SLK)、谷底宽度与谷间高度比(VF)这5种地貌指数,综合这五种指数得出相对活动构造指数(Iat),并利用构造地貌指数(Iat)揭示了研究区的相对构造活动分布特征. 研究表明丽江-小金河断裂带、则木河-小江断裂带、红河断裂带及金沙江两侧的Iat值相对较小,其他部位相对较高,这表明滇中地区的构造活动性强的区域主要集中发育在断裂带附近,与“刚性块体挤出”模式相一致. 滇中地块中部的金沙江两侧Iat值相对较低,表明其地貌活动性较强. 这是由于新生代晚期青藏高原东南缘的隆升及河流重组,导致的金沙江及其支流切割力增强,从而造成金沙江两侧HI值、BS值、SLK值增高和VF值降低,使得金沙江两侧Iat值相对较低.   相似文献   

4.
施炜 《第四纪研究》2008,28(2):288-298
晋陕峡谷以南北走向穿越鄂尔多斯高原东缘,形成黄土高原上独特的峡谷地貌。本文基于数字高程模型,结合野外调查,提取了峡谷区的一系列相关流域地貌特征参数,详细分析了晋陕峡谷内流域特征。研究结果表明峡谷流域内水系和亚盆地表现出显著的东西分异特征,峡谷西侧水系和亚盆地的发育相对于其东侧较为成熟。其成因分析反映晚新生代以来,鄂尔多斯高原东缘可能存在多期强烈构造差异隆升事件,吕梁山相对于鄂尔多斯高原发生多期快速隆升,三门古湖消亡,导致峡谷内黄河强烈的不均匀下切,水系和亚盆地发育发生东西分异。晋陕峡谷的形成主要是晚新生代以来青藏高原发生多期向东快速构造挤出,导致鄂尔多斯高原东缘发生差异构造隆升的结果。  相似文献   

5.
秦川  李敬波  郑立龙  白赟 《地质论评》2023,69(5):1649-1660
笔者等基于ASTER GDEM数据,提取莲峰、昭通—鲁甸断裂带集水区,计算该区亚流域盆地的面积—高程积分值,并结合野外剖面特征、历史地震、断裂构造特征及活动特征等,初步探讨了莲峰、昭通—鲁甸断裂带的构造地貌特征及其动力学机制。得到以下几点认识:(1)研究区除鲁甸盆地外,大部分地区的地貌发育阶段为壮年期;(2)研究区面积—高程积分值(HI)主要受控于构造活动,岩性的抗侵蚀性和水系侵蚀发挥局部或次要作用;(3)面积—高程积分值(HI)对研究区不同构造抬升强度地区的响应方式不同:构造强烈抬升区,HI值反映了集水流域受到强烈的构造抬升和侵蚀的共同作用;构造抬升减弱区,HI值反映了缓慢的构造隆升和沉积作用的共同结果。  相似文献   

6.
秦川  李敬波  郑立龙  白赟 《地质论评》2023,69(3):2023030007-2023030007
笔者等基于ASTER GDEM数据,提取莲峰、昭通—鲁甸断裂带集水区,计算该区亚流域盆地的面积—高程积分值,并结合野外剖面特征、历史地震、断裂构造特征及活动特征等,初步探讨了莲峰、昭通—鲁甸断裂带的构造地貌特征及其动力学机制。得到以下几点认识:① 研究区除鲁甸盆地外,大部分地区的地貌发育阶段为壮年期;② 研究区面积—高程积分值(HI)主要受控于构造活动,岩性的抗侵蚀性和水系侵蚀发挥局部或次要作用;③ 面积—高程积分值(HI)对研究区不同构造抬升强度地区的响应方式不同:构造强烈抬升区,HI值反映了集水流域受到强烈的构造抬升和侵蚀的共同作用;构造抬升减弱区,HI值反映了缓慢的构造隆升和沉积作用的共同结果。  相似文献   

7.
岱海流域地貌演化及其对断裂活动性的指示意义   总被引:2,自引:1,他引:2       下载免费PDF全文
以戴维斯的地貌侵蚀循环学说为基础,运用SRTM-DEM数据、高程-面积分析法和水系分支比研究流域地貌发育。首先运用R ivertools软件平台从DEM数据中提取岱海流域内独立的11个小流域,其中7个位于蛮汉山山前断裂北侧的山地中,另外4个位于盆地南缘断裂南侧的山地中;然后计算每一个流域单元的高程-面积积分值和水系分支比。北侧7个小流域积分值为0.567~0.324,从西向东总体上呈现减小的趋势;南侧4个小流域积分值为0.373~0.425,数值之间比较接近。北侧7个小流域水系分支比的为2.079~2.628,从西向东总体上呈现增大的趋势;南侧4个小流域的水系分支比为2.066~2.138,数值之间比较接近。高程-面积分析法和水系分支比分析表明,北侧7个小流域均反映蛮汉山山前断裂的活动性从西向东逐渐减弱的趋势;南侧的4个小流域均反映岱海南缘断裂沿由西向东的活动性没有明显的变化。北侧7个流域高程-面积积分值与水系分支比之间存在明显的负线性相关;两种指标综合成的主因子的变化范围是1.337~-1.699,从西向东呈现出明显降低的趋势。多种分析方法均表明,蛮汉山山前断裂从西向东活动性有减弱的趋势,而岱海南缘断裂从西向东活动性变化不大。  相似文献   

8.
对涪江上游流域盆地地貌特征及成因进行研究,有助于揭示青藏高原东缘晚新生代以来新构造活动的差异性。本文以ArcGIS水文分析模块为技术平台,在研究区域内系统提取涪江上游流域盆地地表水系网络和涪江干流东西两侧36个亚流域盆地,并对亚流域盆地面积、周长、水系总长度、水系分支比、流域盆地演化阶段进行统计分析,结果表明,涪江干流河道东西两侧典型地貌参数存在显著差异。通过对该区域构造运动、岩石抗侵蚀能力、降水特征等几方面因素与河流下切过程相关性的分析可知,降水条件和岩性差异并不是涪江上游亚流域盆地不对称发育的主要影响因素,该区域断裂活动导致的地形不对称分布格局及岩层破碎程度的差异是涪江上游流域地貌差异演化的主控因素。另外,涪江上游干流展布呈现出两个特征:涪江干流河道因雪山断裂、北川-映秀断裂、彭县-灌县断裂的右旋(或左旋)走滑作用而沿断裂发生同步弯曲;涪江干流河道在北川-映秀断裂北侧由西北-东南流向转变为近正南流向,究其原因,主要是龙门山断裂带3条主干断裂的区域性右旋走滑活动驱动该区域物质产生相应右旋运动,从而使长期处于断层右旋作用控制之下的涪江干流河道发生转向。  相似文献   

9.
祁连山洪水坝河流域地貌特征及其构造指示意义   总被引:1,自引:0,他引:1  
晚新生代以来,伴随祁连山强烈隆起而塑造的水系流域地貌,其典型特征指示了该区域的最新构造活动.以发源于祁连山中部的洪水坝河为研究对象,利用GIS空间分析工具,提取了整体流域与5个亚流域的河网分支比、地势起伏、平均高程等地貌参数,并对整个流域地形做坡谱分析,获得了洪水坝河水系流域地貌特征.研究表明,洪水坝河流域整体地形起伏大、坡度陡、水系发育程度低,并且流域内部从南向北,河网分支比和地势起伏显著增大.在分析地层岩性和冰川作用等相关因素的基础上,认为这种变化表明流域所受构造活动的影响从南向北显著增强:南部受构造活动的影响微弱,地势平坦,可能是残存的古侵蚀面,亦或是受山间盆地的沉积作用影响;中部区域由于被昌马断裂东段切穿,断裂带附近区域较弱的抗侵蚀能力与河流的快速下切共同造成了地势起伏的增加;北部区域受佛洞庙-红崖子断裂西段逆冲活动的影响,坡度及地势起伏大幅增加,表现为地势起伏骤增和强烈的河流下切等地貌特征.上述地貌分析研究,为认识和理解祁连山造山带地貌演化以及控制因素提供了基础数据和思路.  相似文献   

10.
2013年4月20日发生在四川芦山的7.0级地震位于龙门山断裂带南段,文中通过分析震区青衣江上游流域地貌的构造响应与典型的震灾特征,研究此次地震的发震构造机理。对穿越龙门山断裂带南段的青衣江上游水系地貌特征及流域盆地面积高程积分的分析结果表明:该地区流域地貌发育对龙门山断裂带的新活动具有明显的反馈作用。在芦山地震中,遭受严重破坏的建筑物呈条带状分布,并产生大量次生地表张性地裂缝、串珠状砂土液化等地表破坏现象,其展布方向均与震区中的主断裂和背斜隆起相平行。余震分布表明,芦山地震与本区的双石-大川断裂、新开店断裂和大邑断裂的新活动有关。龙门山断裂带为典型的逆冲推覆构造,具有前展式发育特征,芦山地震的发震构造就具有该特征。综合龙门山南段的地貌响应过程、芦山地震的地表破坏及余震分布特征,认为芦山7.0级地震应为龙门山断裂带持续向SE逆冲扩展、地壳挤压缩短的产物。  相似文献   

11.
The Xiaojiang fault is a major active left-lateral fault along the southeastern margin of the Tibetan Plateau.The largest historical earthquake in Yunnan Province, with a magnitude 8 and a mean coseismic left-lateral displacement of ~ 6.9 m, occurred on the western branch of the Xiaojiang fault.Studying this fault is important in understanding current deformation and kinematic characteristics of the Tibetan Plateau.Activities and stretches have been well undertaken on the Xiaojiang fault, while paleoseismic research work is always the weak link on this fault.To investigate the paleoseismic history and large earthquake activity of the Xiaojiang fault, we opened a large trench at the northern edge of Caohaizi sag pond on the western branch of the Xiaojiang fault.Six paleoseismic events have been identified, and named E1 through E6 from the oldest to the youngest.Charcoal and woods are abundant, 20 samples were dated to constrain the ages of the paleoseismic events at 40 000–36 300 BC, 35 400–24 800 BC, 9 500 BC–AD 500, AD 390–720, AD 1120–1620 and AD 1750–present.We associate the youngest event E6 with the 1833 M8 earthquake.Events E4, E5 and E6 show a continuous record of the western strand of the Xiaojiang fault in the late Holocene, with a average recurrence interval of 370–480 yr.Large earthquake recurrence in the late Holocene is far less than the recurrence of 2000–4000 yr posed in previous studies.Thus, the seismic hazard on the Xiaojiang fault should be reevaluated.Furthermore, the irregular recurrence of large earthquakes on the Xiaojiang fault and other faults in the Xianshuihe-Xiaojiang system, indicates the uneven southeastward extrusion of the Sichuan-Yunnan block along the southeastern margin of the Tibetan Plateau.  相似文献   

12.
The north–south trending Xiaojiang fault system accommodates ~10–12 mm/yr sinistral motions between southeastern Tibet and south China. In the south segment, the fault system composes mainly of four parallel strike-slip faults, namely from west to east, the Luzhijiang fault, the Yimen fault, the Puduhe fault, and the Xiaojiang fault. Geological and Seismological observations have shown that these strike-slip faults are all of active, while the slip rates of the Luzhijiang, the Yimen, and the Puduhe faults are much less than that of the Xiaojiang fault. We use finite element modeling to explore the mechanical relation between crustal rheology, effective fault friction and long-term slip rate partitioning among the four parallel faults. The individual faults are simplified as vertical discontinuities embedded in the crust as geophysical explorations have predicted. A large number of models are tested, associating with variations of the crustal rheolohy and the effective fault friction of individual faults. Result shows that if crust bounding the faults trends to behave like rigid blocks and decoupled mechanically from underlying layer, the modeled result is hard to approximate slip rates of the individual faults. To better fit slip rates of the individual faults, viscous deformation of the lower crust should be included. With a heterogeneously viscous lower-crust model that is built upon thermal structure of the heat flow data, associating with relatively low effective friction of the Xiaojiang fault, the modeled results fit the geological slip rates well, with ~1–1.5 mm/yr for the Luzhijiang, the Yimen and the Puduhe faults, and ~6–6.5 mm/yr for the Xiaojiang fault. Thus, in the southward movement of the Tibetan plateau around the eastern Himalayan syntaxis, slip partitioning among the Xiaojiang fault system should be related to viscous deformation of the lower crust associated with different strength of the individual faults, highlighting that deformation of this fault system is coupled mechanically between the frictional upper crust and the viscous lower crust.  相似文献   

13.
云南小江断裂中南段现今活动特征   总被引:7,自引:0,他引:7       下载免费PDF全文
小江断裂为川滇地块、华南地块的边界断裂,是一条重要活动断裂。本文利用GPS监测结果,综合处理得到了欧亚框架下的运动速度场,并以此为基础,采用刚性假设下最小二乘法,对小江断裂中南各段的运动速度进行计算。计算结果表明:断裂中段东支断裂运动速度为3.37±3.20mm/a,西支断裂为3.29±2.73mm/a;断裂南段为3.63±1.76mm/a。整个断裂表现为左行走滑为主兼有挤压活动的特征。这一结果与大的构造环境一致,表明在印度板块与青藏高原的挤压碰撞下,高原东部川滇地块受华南地块、印支地块的阻挡作用,小江断裂产生逆时针移动,呈左行走滑特征。  相似文献   

14.
《Geodinamica Acta》2001,14(5):265-287
In this paper we concentrate particularly on the geomorphological indicators left by active tectonics. In the central foothills of Taiwan, we used topography, drainage pattern and structural data to perform quantitative morphometric analysis and to determine relative age of fault-related anticlines. The Tiehchen, Tatu and Pakua ridge belt is a fault-related anticline system located in the hanging wall of the Changhua fault along the western thrust front of the foothills. Geomorphic systems are analysed with intent to detect the various responses of landforms and drainage pattern to late Quaternary deformation. Topography and drainage basin register uplift and are valuable tools to discriminate lateral propagation of an active frontal fold. Geomorphic field evidence and quantitative morphometric parameters are used to define the evolution of the rising anticline ridges and to infer tectonism style along an active front. Geometry of alluvial fans, formed along the frontal side of the anticlines, and weathered terrace deposits provide relevant information on neotectonics. Knowledge concerning these younger anticline ridges, makes this area a good example of an actively forming mountain front. We discuss in detail the origin of N045°, N095 and N120° trending oblique fault scarps which delimite numerous fault blocks. The fault scarps morphology is characterized by imbricate talus facets. Steeper topography accompanied by breaks in the slope along some transverse profiles, seems to correspond to the traces of successive uplifts.  相似文献   

15.
Abstract

In this paper we concentrate particularly on the geomorphological indicators left by active tectonics. In the central foothills of Taiwan, we used topography, drainage pattern and structural data to perform quantitative morphometric analysis and to determine relative age of fault-related anticlines. The Tiehchen, Tatu and Pakua ridge belt is a fault-related anticline system located in the hanging wall of the Changhua fault along the western thrust front of the foothills. Geomorphic systems are analysed with intent to detect the various responses of landforms and drainage pattern to late Quaternary deformation. Topography and drainage basin register uplift and are valuable tools to discriminate lateral propagation of an active frontal fold. Geomorphic field evidence and quantitative morphometric parameters are used to define the evolution of the rising anticline ridges and to infer tectonism style along an active front. Geometry of alluvial fans, formed along the frontal side of the anticlines, and weathered terrace deposits provide relevant information on neotectonics. Knowledge concerning these younger anticline ridges, makes this area a good example of an actively forming mountain front. We discuss in detail the origin of N045°, N095 and N120° trending oblique fault scarps which delimite numerous fault blocks. The fault scarps morphology is characterized by imbricate talus facets. Steeper topography accompanied by breaks in the slope along some transverse profiles, seems to correspond to the traces of successive uplifts. © 2001 Éditions scientifiques et médicales Elsevier SAS  相似文献   

16.
巧家地处小江断裂带与则木河断裂、五莲峰断裂相交地带, 地质构造复杂, 断裂与地震活动频繁, 崩滑流地质灾害极为发育。通过遥感解译与工程地质分析, 在小江断裂带巧家段东侧识别出一处巨型古滑坡。巧家古滑坡平面形态为筲箕形, 堆积体长5.5 km, 宽9 km, 平均厚度约250 m, 预测体积达到约 10亿m3。古滑坡后缘为典型的圈椅状地貌, 两侧边界多沿基岩地层中的次级断层发育, 并在地表呈阶梯式的台阶状地形。堆积体的岩性主要由二叠系阳新组灰岩组成, 局部存在二叠系峨眉山组玄武岩, 多具碎裂-松散结构。整体上看, 该滑坡体风化强烈, 中前部发育大型纵向冲沟, 暗示形成时代较老。综合分析认为, 巧家古滑坡成因极可能是由于小江断裂带强烈左旋走滑作用下, 导致巧家东侧山地发生持续性的构造抬升, 并在巨大地震活动触发下形成。关于小江断裂带巧家段在未来的大地震活动背景下, 是否可能导致古巨型滑坡复活, 或该区是否还存在发生类似巨型地震滑坡的风险等问题, 显然值得进一步深入研究。  相似文献   

17.
On the eastern margin of the Tibetan Plateau, the Anninghe, Zemuhe and Xiaojiang faults comprise a N–S-trending active left-lateral fault system extending more than 700 km. The northernmost Anninghe Fault extends for ∼200 km, consisting of two sub-parallel N–S trending strands. Along the western strand, the fault traces occur almost strictly along the broad and flat Anninghe valley, displacing high terraces, alluvial fans and tributary channels of the Anninghe River. The eastern strand, on the other hand, cuts through the steep mountain slopes, with prominent rectilinear upslope-facing scarps and shutter ridges against pounded fluvial sediments from the east. The displacements along the eastern strand are much larger than that along the western strand, indicating the eastern strand is the major fault absorbing the E–W shortening. This study demonstrates that the Anninghe Fault is now acting as a relief-building boundary fault and absorbing the E–W compression under the eastwards motion of the Tibetan Plateau. Accordingly, the Anninghe region is a topographic transition area from steep relief to low gradient topography. The variation in topographic gradient is consistent with the differing tectonic regime between southern and northern parts of the Tibetan Plateau.  相似文献   

18.
付碧宏  时丕龙  贾营营 《地质科学》2009,44(4):1342-1363
大型走滑断裂带对调节印度板块和亚洲板块碰撞后产生的陆内构造变形和地貌生长起着非常重要作用。本文分析了沿青藏高原北缘主要大型左旋走滑断裂带:东昆仑、康西瓦和鲜水河-小江断裂带发育的错断地质体、大型错断水系或水系拐弯等新构造地貌特征,表明这些大型走滑断裂带在晚新生代以来发生了大规模的左旋走滑运动:前新生代地质体错位距离为80~120 km,大型水系累积的位移量可达80~90 km。根据这些走滑断裂带的长期走滑速率为8~12 mm/a,估算上述大型走滑断裂带的左旋走滑运动开始于中新世晚期:东昆仑和康西瓦断裂带左旋走滑运动开始于10±2 Ma; 鲜水河-小江断裂带甘孜-玉树段的左旋走滑运动的开始时间约为8~115 Ma。同样,如果大型水系的沿断裂带出现的大型错位或拐弯能够代表断裂带累积错位的上限,表明发源于青藏高原的黄河、金沙江、喀拉喀什河和玉龙喀什河等一级水系上游大致开始形成于9~7 Ma±。西昆仑山前盆地中河流相沉积的最早响应时间为8~6 Ma,与喀拉喀什河和玉龙喀什河等西昆仑山地区一级水系的形成时间基本一致,表明这些大型水系初始形成时间与左旋走滑构造运动的开始时间准同时。这表明中新世中晚期青藏高原构造演化发生了重要转变。  相似文献   

19.
小江断裂带北段为白鹤滩水电站库区内规模最大的断裂构造,其几何展布特征与活动性对库区移民及其就近安置规划有明显的制约作用。通过对小江断裂北段大比例尺调查、断裂带石英形貌扫描以及现场氡气测量等综合研究,重新界定了小江断裂带北段展布,即北起宁南县华弹镇,沿金沙江左岸经永乐村,鲁吉、溜姑延伸至蒙姑以南,断裂带总体向西陡倾。石英微形貌统计分析与应力痕迹微形貌观察结果表明,断层强烈活动时间在晚更新世,同一石英颗粒表面具有代表两种滑动方式(蠕滑和黏滑) 的应力痕迹组合,应力痕迹的溶蚀程度、叠加和切割关系表明,断层在晚更新世的滑动至少有3个亚期次,早期为蠕滑,中晚期为黏滑。小江断裂北段的潜在地震危险性评估表明,其可能发生强震的最大震级约在MS6.8级~MS7.1级左右,为未来仍有可能再次活动的强震地区。  相似文献   

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