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1.
黄河在宁夏沙坡头形成了"几"字形河曲地貌,并在河曲凸岸发育了3级河流阶地。本文针对沙坡头大弯河流阶地特征、阶地年龄,以及大拐弯的成因进行了分析,探讨本区地貌发育的机制。结果表明:(1)沙坡头大弯3级河流阶地形成的主要原因是构造抬升作用,气候变化对此处阶地形成的作用不明显。在区域新构造活动强烈的背景下,约中更新世末期中卫盆地开始抬升,黄河河道被固定,河流下切形成本区的最高阶地T3;约在70kaB.P.、8kaB.P.形成T2、T1阶地。(2)沙坡头黄河大拐弯是由香山—天景山断裂左旋走滑位错,以及水流受地球自转偏向力的河流内生动力共同作用的结果,并且河流的内生动力作用远大于前者的贡献。  相似文献   

2.
山西太原西山地区汾河河谷地貌   总被引:2,自引:0,他引:2  
论述了汾河上游六家河-中兰村峡谷段6级河流阶地的特征及形成时代,并在此基础上分析了汾河河谷的发育历史及山西太原西山和太原盆地的新构造差异升降运动的特征。  相似文献   

3.
麻阳河国家级自然保护区位于贵州省北部的沿河、务川两县境内,总面积31113公顷。地处乌江上游,武陵山脉抬升造就了保护区所在地区的高山峡谷地貌。山顶为缓坡,缓坡包含有丰富的土壤和植被,山顶缓坡成为当地村民的住所和紧挨在房前屋后的耕地。峡谷中段为地形抬升形成的悬崖峭壁和石块崩塌形成的岩洞,峡谷的谷底是河流。  相似文献   

4.
应用“构造-气候旋回”年代学方法确定了祁连山地区河流阶地形成时代和抬升速率,探讨了应用该方法确定阶地形成时代的可能性,结果表明:应用该方法确定河流阶地形成时代基本可行,只是对于低级阶地形成时代的拟合结果需用实测值来校正,第四纪以来祁连山地区的构造抬升呈间歇性,经历了4个较强烈的构造抬升期。  相似文献   

5.
广东深圳断裂带活动性的第四纪地质和地貌研究   总被引:4,自引:0,他引:4  
卢演俦  孙建中 《地震地质》1991,13(2):138-146
深圳断裂带分布着一系列第四纪盆地,发育了以晚更新世河流相为主的沉积物,其厚度一般小于10—15米。它们的出现与断裂破碎带、岩溶地层分布及断裂早期活动有关。但是,未见错动了第四纪沉积物的断层。从约180万年以来,断裂带内发育了四级夷平面和三级河流阶地。不同时期地壳相对升降平均速率估计为约0.04毫米/年至0.2毫米/年。 在第四纪地质时期,深圳断裂带总体处于区域性的间歇性抬升过程,断裂活动不明显  相似文献   

6.
兰州及邻近地区河流阶地变形特征   总被引:1,自引:2,他引:1       下载免费PDF全文
根据兰州及邻区黄河及其次级河流阶地纵剖面研究,分析了横穿活动断裂的河流阶地的变形特征,利用横穿黄河的兴隆山—马衔山断裂、海原断裂和穿越庄浪河的NWW向断裂附近阶地发育和变形特征确定了相应地区的构造抬升幅度及速率。  相似文献   

7.
最近14 Ma青藏高原东北缘阶段性隆升的地貌证据   总被引:33,自引:2,他引:33  
对青藏高原东北缘代表性的河流阶地-风成堆积序列进行了沉积学、地貌学和年代学的综合调查研究, 获得了最近14 Ma以来高原东北缘阶段性隆升的新证据和新认识. 湟水流域西宁-互助地区至少发育了11级典型的河流阶地(除第1级阶地T1外, 全部为基座阶地). 测试了阶地上覆风成黄土-红粘土序列的1030块古地磁样品、16块释光样品和4000多个粉末样品, 结合地貌发育和地层结构分析表明, T11, T10, T8, T7, T3, T2和T1分别形成于距今约14, 11.3, 1.55, 1.2, 0.15, 0.07和0.01 Ma. 基于沉积物分析和地貌发育过程的研究证实, 这里的河流阶地以构造抬升驱动为主, 以气候变化对河流阶地发育的影响为辅. 因此, 西宁盆地的阶地序列指示了14 Ma以来高原东北缘的多次阶段性抬升, 其中, 在距今14, 11.3, 1.2和0.15 Ma的构造抬升是明显的. 青藏高原东北缘西宁-互助地区的河流在中新世数百万年时间内(T11到T9)下切不到100 m, 而在更新世1.2 Ma以来(T7以来)下切了432 m, 指示了该地区在晚新生代后期加速隆升的事实. 湟水流域在1.55~1.2 Ma之间有一次大的水系格局调整. 在此之前, 古河流流向是西偏南, 之后流向为东偏南, 这次水系调整与构造活动有关.  相似文献   

8.
河流阶地作为构造和气候作用的载体,记录了活动造山带地区的构造活动和气候变化之间的相对变化信息。文中以穿过祁连山北缘活动断裂带的洪水坝河和马营河为例,探讨河流地貌发育与构造和气候之间的关系。基于遥感影像解译识别出8—9级河流阶地,并对其期次进行划分。根据洪水坝河T5和马营河T6阶地的相对拔河高度和年龄,分别计算出2条河流15ka和11ka以来的平均下切速率为(10.2±2.0)mm/a和(12.2±2.8)mm/a。再利用差分GPS分别对2条河流的T5和T6阶地面上的断层陡坎进行精确测量,结合测年结果,计算出佛洞庙-红崖子活动断裂的垂直滑移速率比河流下切速率低1个量级。对比研究区内活动断裂两侧阶地发育序列的差异性,构造抬升和河流下切速率数量级的差别,并结合祁连山北缘区域上已发表的研究结果,初步认为构造活动与气候变化共同影响祁连山北缘河流阶地的发育,其中气候变化是控制该区全新世河流阶地发育的主要因素。更深入的活动构造调查和阶地年龄约束有助于更好地揭示祁连山北缘的活动构造特征和河流演化历史。  相似文献   

9.
涉县断裂为太行山隆起区内涉县盆地的控盆构造,走向由NE转为近EW向,倾向NW/N,中部在井店东被EW向断裂错断,是控制涉县盆地的一组断裂。本文采用地质地貌调查、河流阶地分析和地质测年等方法,研究了涉县断裂晚第四纪活动特征。研究发现,涉县断裂带由多组断裂构成,带宽约200m,在清漳河两侧表现为山前的陡崖地貌、基岩破碎变形带,具有正断兼走滑特征,在基岩变形带上部发育走向NNE向和NWW向次级滑动面,次级滑动面错断第四系黄土,最新活动到晚更新世;断裂在盆地区通过,地表形成低缓陡坎,断裂错断Q2-3地层,表现为上陡下缓的正断层。通过对涉县断裂两侧清漳河河流阶地、夷平面和地层年龄综合分析,估算涉县断裂晚更新世以来平均垂直滑动速率为0.06~0.08mm/a,中更新世以来平均垂直滑动速率为0.22~0.34mm/a,垂直差异活动主要发生于中更新世期间。  相似文献   

10.
利用2D/3D地震数据及钻井资料,详细解剖了晚中新世以来构造-沉积背景对琼东南盆地大型轴向峡谷体系形成和演化的控制.晚中新世以来的大规模海平面下降导致了陆坡区的沉积物易发生失稳,从而为中央峡谷体系沉积充填提供了物源.峡谷内部的2套沉积物:浊流沉积体和块体搬运复合体,分别来自西北部物源和北部物源,不同部位沉积物供给能力的差异,导致峡谷内部表现出不同的充填结构和样式.11.6 Ma时期构造变革事件为峡谷的形成提供了构造背景,盆地东部形成的轴向"限制型"小型盆地可视为中央峡谷体系的雏形.5.7 Ma时期红河断裂带右旋走滑的活动,将增强莺-琼盆地交界处沉积物的水动力条件,并向浊流发生演变,形成深水浊积水道.南部隆起的存在对峡谷内部充填沉积物起到了"遮挡"的作用.更新世以来的气候因素所引起的强烈沉积物供给和盆地东部特殊的地貌特征,引起了中央峡谷体系的"回春",大量垮塌沉积体的发育将进一步加剧峡谷的"负地形"特征.研究表明,琼东南盆地中央峡谷体系自西向东不同区段的主控因素存在差异:西北部物源的供给和红河断裂带在5.7 Ma时期的构造活动控制了头部区域浊积水道的形成和发育;西北部物源、北部陆坡的沉积物供给、构造地貌特征等,控制了峡谷自西向东的运动,并影响了峡谷内部的充填结构;盆地东部11.6 Ma时期的构造变革和长昌凹陷有限的沉积物供给能力是盆地东段中央峡谷体系的主控因素.  相似文献   

11.
华北山地地貌面与新生代构造运动   总被引:6,自引:2,他引:6  
华北山地有三期山地夷平面,四期河流阶地面。表明新生代地壳运动具有垂直差异性质。以上升运动为主,平均升幅1700m,速度0.031mm/a。以第四纪为最大。全区新地壳构造形迹可划分为3大类,8亚类和32个小类。在新生代构造运动中,又划分出第四纪以来的新构造运动和晚更新世以来的最新构造运动。  相似文献   

12.
Where the Yellow River flows through the Haiyuan-Tongxin arc-form tectonic region on the northeastern side of the Qinghai-Xizang (Tibet) Plateau, as many as 10~21 basis and erosion terraces have been produced, among which the biggest altitude above river level is 401m and the formation age of the highest terrace is 1.57 Ma B.P. Based on comparative analysis of the Yellow River terraces located separately in the Mijiashan mountain, the Chemuxia gorge, the Heishanxia gorge and the other river terraces in the vast extent of the northern part of China, it has been found that the tectonic processes resulting in the formation of the terrace series is one of multi-gradational features, i.e., a terrace series can include the various terraces produced by tectonic uplifts of different scopes or scales and different ranks. The Yellow River terrace series in the study region can be divided into three grades. Among them, in the first grade there are 6 terraces which were formed separately at the same time in the vast extent of the northern part of China and represent the number and magnitude of uplift of the Qinghai-Xizang Plateau since 1.6 Ma B. P. ; in the second grade there are 5 terraces which were separately and simultaneously developed within the Haiyuan-Tianjingshan tectonic region and represent the number and magnitude of uplift of this tectonic region itself since 1.6Ma B. P.; in the third grade there are 10 terraces which developed on the eastern slope of the Mijiashan mountain and represent the number and amplitude of uplift of the Haiyuan tectonic belt itself since 1.6Ma B.P. Comparison of the terrace ages with loess-paleosoil sequence has also showed that the first grade terraces reflecting the vast scope uplifts of the Qinghai-Xizang Plateau are very comparable with climatic changes and their formation ages all correspond to the interglacial epochs during which paleosoils were formed. This implies that the vast extent tectonic uplifts resulting in river down-cutting are closely related to the warm-humid climatic periods which can also resnit in river downward erosion after strong dry and cold climatic periods, and they have jointly formed the tectonic-climatic cycles. There exists no unanimous and specific relationship between the formation ages of the second and third grade terraces and climatic changes and it is shown that the formation of those terraces was most mainly controlled by tectonic uplifts of the Tianjingshan block and the Haiyuan belt. The river terraces in the study region, therefore, may belong to 2 kinds of formation cause. One is a tectonic-climatic cyclical terrace produced jointly by vast extent tectonic uplifts and climatic changes, and the terraces of this kind are extensively distributed and can be well compared with each other among regions. Another is a pulse-tectonic cyclical terrace produced by local tectonic uplifts as dominant elements, and their distribution is restricted within an active belt and can not be compared with among regions.  相似文献   

13.
Located at the west of the Linfen basin, the Luoyunshan piedmont fault zone controls the western boundary of the basin. According to the measurements of the terraces in eight gullies along the Luoyunshan fault zone, five levels of terraces, namely T1~T5 have developed in these gullies. The heights of terraces T1, T2, T3, T4 and T5 are about 3m, 8~10m, about 20m, about 30m and 40~50m, respectively. The dating data of the terraces and investigation of the faulted landforms show that the Luoyunshan fault zone has experienced much activity since the Late Quaternary. The uplift rate of the terraces was 0.41mm/a since the Middle-Late Pleistocene, and 0.75mm/a since the Holocene. The increasing trend of uplift rate of the terraces along the Luoyunshan fault zone from the Middle-Late Pleistocene to Holocene indicates the tendency of gradual tectonic uplift of the fault zone since the late Quaternary. This is in good agreement with the increasing trend of subsidence rate of the Linfen basin from the Late Pleistocene to Holocene.  相似文献   

14.
Fluvial terraces are important geomorphic markers for modern valley development.When coupled with numeric ages,terraces can provide abundant information about tectonic,climatic,paleohydrological and the paleoenvironmental changes.On the basis of the paleomagnetic,electron spin resonance(ESR) and optically stimulated luminescence(OSL) dating,in addition to an investigation of local loess-paleosol sequences,we confirmed that 13 fluvial terraces were formed,and then preserved,along the course of the Upper Weihe River in the Sanyangchuan Basin over the past 1.2 Ma.Analyses of the characteristics and genesis of these terraces indicate that they resulted from the response of this particular river system to climate change over an orbital scale.These changes can further be placed within the context of local and regional tectonic uplift,and represent an alternation between lateral migration and vertical incision,dependent upon the predominance of climatic and tectonic controls during different periods.Most of the terraces are strikingly similar in that they have several meters of paleosols which have developed directly on top of fluvial deposits located on the terrace treads,suggesting that the abandonment of terraces due to river incision occurred during the transitions from glacial to interglacial climates.The temporal and spatial differences in the distribution patterns of terraces located on either side of the river valley indicate that a tectonic inversion occurred in Sanyangchuan Basin at-0.62 Ma,and that this was characterized by a transition from overall uplift to depression induced by fault activity.Synthesized studies of the Basin's terraces indicate that formation of the modern valley of the Upper Weihe River may have begun in the late Early Pleistocene between1.4-1.2 Ma.  相似文献   

15.
The northeast margin of the Tibetan Plateau, a particularly important area to understand the mechanism of plateau formation, is characterized by large transpressional arcuate faults. There is debate on the amount of Quaternary sinistral displacement on the major Haiyuan Fault. Previously unrecognized systemic asymmetrical valleys have developed between the Haiyuan and Xiangshan faults. Southeast tilting and sinistral displacement on the northeast side of the Haiyuan Fault resulted in southeast migration of large rivers and asymmetrical widening of their valleys, leaving a systematic distribution of tilted strath terraces along their northwest sides. Where asymmetrical widening created by tilting kept pace with sinistral displacement, rivers have not been deflected, and the increase in valley width downstream from the fault should equate to total lateral displacement since river formation (e.g. Yuan River, a 7 km asymmetrical valley with a c. 2.2 Ma paleomagnetic age). Where river deflection and asymmetrical valley growth are coeval, valley width is less than total horizontal displacement (e.g. Hebao River, a c. 2.1 km asymmetrical valley with c. 2 km deflection). All rivers north of the Haiyuan Fault converge to cut across the Xiangshan Mountains as a gorge. Northeast thrusting of the upthrown side of the Xiangshan Fault has resulted in degradation and related strath terrace formation as the valleys asymmetrically widened. A probable earthquake‐induced landslide caused by movement on the Xiangshan Fault in latest Pleistocene blocked the gorge causing aggradation along all rivers and their tributaries. Deposition terraces were formed after the landslide dam was breached. Together with previous research on the Xiangshan Fault, it is concluded that there has been c. 7 km of Quaternary sinistral displacement on the Haiyuan and Xiangshan faults along the northeast margin of the Tibetan Plateau since the formation of rivers that intersect them. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

16.
Fluvial systems in uplifting terrain respond to tectonic, climatic, eustatic and local base‐level controls modified by specific local factors, such as river capture. The Rio Alias in southeast Spain is an ephemeral, transverse‐to‐structure fluvial system. The river drains two interconnected Neogene sedimentary basins, the Sorbas and Almeria basins, and crosses two major geological structures, the Sierras de Alhamilla/Cabrera and the Carboneras Fault Zone. Regional epeirogenic uplift resulted in sustained fluvial incision during the Quaternary, punctuated by major climatically driven periods of aggradation and dissection, which created a suite of five river terraces. The river terrace sequence was radically modified in the late Pleistocene by a major river capture (itself a response to regional tectonics), localized tectonic activity and eustatic base‐level change. The Rio Alias is defined by four reaches; within each the climatically‐generated, region‐wide, fluvial response was modified by tectonics, base‐level change or river capture to varying degrees. In the upper part of the basin (Lucainena reach), climate was the dominant control on river development, with limited modification of the sequence by uplift of the Sierra Alhamilla and local drainage reorganization by a local river capture. Downstream of the Sierra Alhamilla in the Polopus reach, the climatic signal is dominant, but its expression is radically modified by the response to a major river capture whereby the Alias system lost up to 70% of its pre‐capture drainage area. In the reach adjacent to the Carboneras Fault Zone (Argamason reach), modification of the terrace sequence by local tectonic activity and a resultant local base‐level fall led to a major local incisional event (propagating c. 3–4 km upstream from the area of tectonic disturbance). At the seaward end of the system (El Saltador reach) Quaternary sea‐level changes modified the patterns of erosion and incision and have resulted in steep incisional terrace profiles. The signals generated by regional tectonics and the Quaternary climate change can be identified throughout the basin but those generated by ongoing local tectonics, river capture and sea‐level change are spatially restricted and define the four reaches. The connectivity of the system from the headwaters to the coast decreased through time as incision progressed, resulting in changes in local coupling characteristics. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

17.
In tectonically active regions, geomorphic features such as fluvial terraces can be interpreted as the consequence of tectonic and climatic forcing. However, deciphering and distinguishing tectonic impacts and climate changes remain a challenge. In this study, we examine the terraces along the Hongshuiba river and Maying river, which flow across the Fudongmiao-Hongyazi fault in the northern margin of the Qilian Mountains. Our purpose is to analyze the relative roles of tectonics and climate in shaping orogenic topography in this area. 8~9 levels of river terraces were identified through field observations, interpretation of satellite images and using DEMs. According to relative heights and ages of T5 of the Hongshuiba river and T6 of the Maying river, the incision rates are calculated to be (10.2±2.0)mm/a and (12.2±2.8)mm/a, respectively. Furthermore, the thrust rate along the Fodongmiao-hongyazi fault was determined based on offset terraces and OSL dating, which are ten times less than river incision rates approximately. Comparing the uplift rate and incision rate in the northern margin of the Qilian Mountains and adjacent areas, we inferred that climate change is the most plausible controlling factor in the evolution of the river terraces, while tectonics plays a minor role in this process.  相似文献   

18.
Using quantitative geomorphic factors for regional active tectonic evolution is becoming more and more popular. Qilian Mountains-Hexi Corridor which locates in the northern edge of Qinghai-Tibet plateau is the most leading edge of the plateau's northward extension. The uplift rate of all segments and the intensity of influence from tectonic activity are the important evidences to understand the uplift and extension of the plateau. Heihe River Basin is located at the northern piedmont of the western segment of Qilian Mountains, the development of the rivers is influenced by the tectonic activity of the Qilian Mountains, and the unique river morphology is important carriers of the regional tectonic uplift. Geomorphologic indexes such as hypsometric integral, geomorphologic comentropy and river longitudinal profiles were extracted by GIS tools with free access to the Shuttle Radar Topography Mission(SRTM)DEMs, and according to the different expression of the geomorphological indexes in the Heihe River Basin, we divided the drainage basin into two parts and further compared them to each other. Recent studies reveal that obvious differences exist in the landscape factors(hypsometric integral, geomorphology entropy and river profiles)in the east and west part of the Heihe Basin. The structural intensity of the west part is stronger than that of the east, for example, in areas above the main planation surface on the western part, the average HI value is 0.337 8, and on the eastern part the HI value is 0.355. Accordingly, areas under the main planation surface are just on the contrary, indicating different structural strength on both sides. Similar phenomenon exists in the whole drainage basins. Furthermore, by comparing the fitting river profiles with the real river profiles, differential uplift is derived, which indicates a difference between west and east(with 754m on the western part and 219m on the east). Comprehensive comparison and analysis show that the lithologic factors and precipitation conditions are less influencing on the geomorphic factors of the study area, and the tectonic activities, indicated by field investigation and GPS inversion, are the most important element for geomorphic evolution and development. The variation of the geomorphologic indexes indicates different tectonic strength derived from regional structures of the Qilian Shan.  相似文献   

19.
怒江断裂带南段道街盆地第四纪构造活动特征   总被引:2,自引:0,他引:2  
程理  陈国星  苏刚  李光涛  高战武 《地震》2011,31(2):97-105
上新世末以来滇西地区发生大面积掀斜隆升构造运动, 同时伴随块体的差异性升降运动。 在这种构造背景下, 怒江断裂带南段形成了一系列断陷盆地, 其中道街盆地是面积最大的一个盆地。 本文利用野外地质考察、 钻探和后差分GPS实测剖面等方法对该盆地第四纪地层和控盆断裂进行研究, 认为道街盆地控盆断裂最新活动时代为中—晚更新世之间, 而盆地内部断层晚更新世以来仍有活动表现。  相似文献   

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