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1.
滇东,滇西地区主要河流低阶地地貌面的年代研究   总被引:9,自引:1,他引:8       下载免费PDF全文
计凤桔  郑荣章 《地震地质》2000,22(3):265-276
在流水沉积物热释光测年适用性和测年数据可靠性研究的基础上,对滇东、滇西地区几条主要河流的价阶地进行了系统采样和多方法的综合测年,获得了区主要河流低 地沉积物的堆积年代及其阶地面的形成时代,该区I级支流T1阶地堆积于4500~11000aP.B.,其阶地地貌面形成于4500~5000a.B.P.;T2阶地积于9000~22a.B.P.,该级地貌面形成于9000~1000a.B.P.;主流T1阶地的堆  相似文献   

2.
海南岛北西部新构造特征及其演化研究   总被引:3,自引:1,他引:2  
利用DGPS系统测量海南岛西部阶地,绘制地质地貌综合剖面,将西部阶地分为海成阶地和河流阶地两种。其中海成地貌包括一条砂堤和四级阶地:砂堤宽2~10m,高程约10m,形成于5ka以来;海成一级阶地发育较好,阶地面高程21~22m,形成于晚更新世至全新世之间;海成二级阶地顶面高程约32m左右,形成于晚更新世晚期;海成三级阶地较为发育,阶地面高程40~42m,形成于121.8ka;海成四级阶地零星分布,阶地面高程约57m,形成于中更新世晚期。河流阶地也可分出四级:一级阶地高程约20m,局部发育,形成于11.4ka;二级阶地高程约34m,形成于47.2ka;三级阶地高约50m,其基座顶面标高约41m,形成于晚更新世早期;四级阶地高程约71m,基座面标高约60m,形成于中更新世晚期。这些阶地中均以二级最为发育。晚更新世以来全区处于整体加速抬升的状态。依据阶地面的综合剖面特征,认为王五-文教断裂晚更新世以来的活动性较弱。  相似文献   

3.
植物孢子和花粉是理想的恢复环境变化的有机指标,对于第四纪地层划分和区域古气候的对比具有重要意义。本文在川西冕宁泸沽镇附近选取安宁河Ⅰ~Ⅲ级阶地剖面进行年代学测量和孢粉采样分析。结果表明:安宁河Ⅰ级阶形成时期为全新世,气候温和较湿或轻湿;Ⅱ级阶地沉积时期在晚更新世晚期或全新世早期,温度及湿度均比Ⅰ级阶地时低,在该时期无论植被和气候曾出现过两次以上比较明显的变化及波动;Ⅲ级阶地沉积时期为晚更新世中期,气候温和较湿或轻湿,堆积时期之温度及湿度均比Ⅱ级阶地时高,但又均比Ⅰ级阶地时低。同时探讨了安宁河阶地形成时期构造、气候的变化规律。根据河流的下切速率可以间接的推断晚更新世构造隆升速率大于晚更新世末期-全新世。  相似文献   

4.
通过对河曲县城一带出露较好的黄河阶地剖面进行研究,认为河曲一带黄河三、四级阶地形成于中更新世时期,晚更新世早期形成二级阶地,全新世形成一级阶地。本区中更新世抬升速率为0.14mm/a,晚更新世抬升速率为0.18mm/a,全新世抬升速率为0.70mm/a,晚更新世和全新世抬升速率的突然加大,可能与黄河下游三门湖的贯通、区域侵蚀基准面突然降低、河流侵蚀加大有关。  相似文献   

5.
老虎山地区的第四系以山麓洪积与山区河流阶地沉积为主, ̄14C法、TL法和扩散方程法测定的近40个年代样品表明:Ⅰ级阶地为全新统,阶地形成年龄为4086±100a—4578±60a;Ⅱ级阶地为晚更新世晚期沉积,阶地形成年龄为23Ka;Ⅲ级阶地为晚更新世早中期沉积,阶地形成年龄为72Ka;Ⅳ级阶地和Ⅴ级阶地为中更新世沉积,其阶地形成年龄分别为217±35Ka和378±60Ka;早更新统仅在局部出露,可能属早更新世早期的沉积。通过与兰州九洲台黄土剖面对比,发现Ⅰ—Ⅴ级阶地的形成年龄与标准剖面中的So、S_2、S_4等层古土壤形成年龄相一致。这说明河流层状地貌的形成。除了与构造抬升有关外,还与全球冷暖交替的大气候背景有着十分密切的内在联系  相似文献   

6.
博格达山北麓山前断裂西段全长140 km ,由5 条雁列状排列的逆断裂组成。全新世时期,古牧地断裂的最新活动发生在6.82±0.54~4.87±0.39 Ka B.P.之间;四工河口断裂切割Ⅱ级河流阶地,最新活动时间与古牧地断裂大体相同;泉泉子断裂切割Ⅰ级河流阶地,最新活动发生在3.75±0.41 Ka B.P.;热水河断裂及东风牧场断裂由于缺乏断代年龄实测数据,无法对其最新活动时间作出判断,但是推断它们也是全新世活断裂  相似文献   

7.
详细研究了离石北部一带阶地的地层地貌特征,并尝试对吕梁山山体的隆升进行分析探讨。结果表明,晚更新世以来该区有过三次间歇性隆升,并且三级阶地形成以来即晚更新世早期山体隆升相对快速强烈,二级阶地形成以来即晚更新世晚期至全新世时期山体隆升处于相对缓慢的过程。  相似文献   

8.
新疆古牧地断裂全新世的断错活动   总被引:5,自引:1,他引:4  
新疆古牧地断裂是一条全新世活动断裂,全新世以来有4 次明显的断错活动,历次活动的TL时间分别为11.03±0.89 kaB.P.,9.73±0.79 kaB.P.,8.32±0.67 kaB.P.和6.82±0.54~4.87±0.39 kaB.P.,断错活动间隔为1.3±0.1~2.0±0.15 ka。全新世时期累积垂直断距大于5.03m ,平均活动速率大于0.41 m m /a  相似文献   

9.
在流水沉积物热释光测年适用性和测年数据可靠性研究的基础上 ,对滇东、滇西地区几条主要河流的低阶地进行了系统采样和多方法的综合测年 ,获得了该区主要河流低阶地沉积物的堆积年代及其阶地面的形成时代 ,该区I级支流T1阶地堆积于 4 50 0~ 110 0 0aB .P .,其阶地地貌面形成于 4 50 0~ 50 0 0aB .P .;T2 阶地堆积于 90 0 0~ 2 2 0 0 0aB .P .,该级地貌面形成于 90 0 0~ 10 0 0 0aB .P .;主流T1阶地的堆积年龄为 90 0 0~ 170 0 0aB .P .,阶地面形成于 90 0 0~ 10 0 0 0aB .P .;T2 阶地的沉积年龄为 150 0 0~ 4 50 0 0aB .P .,阶地地貌面形成于 150 0 0aB .P .左右。同时 ,通过阶地堆积时期古气候、古环境的分析 ,探讨了该区低阶地地貌面的成因  相似文献   

10.
罗云山山前断裂带阶地调查研究及其构造意义   总被引:2,自引:1,他引:1  
罗云山山前断裂带位于山西临汾盆地西侧,控制着盆地的西界.对罗云山山前断裂带8条冲沟的阶地测量资料的研究表明:该断裂带冲沟发育T1~T5五级阶地.T1 阶地拔沟3m左右,T2 阶地拔沟8~10m,T3 阶地拔沟20m左右,T4 阶地拔沟30m左右,T5 阶地拔沟40~50m.阶地测年数据及断错地貌调查表明:罗云山山前断裂带在晚第四纪以来有过多次活动.晚更新世中晚期以来阶地的抬升速率为0.41 mm/a,全新世以来抬升速率为0.75mm/a.罗云山山前断裂带冲沟阶地从晚更新世中晚期到全新世抬升速率有逐渐增大的趋势,反映该断裂带自晚第四纪以来构造抬升作用逐渐加强,这与临汾盆地从晚更新世晚期到全新世沉降速率也有增大的趋势比较一致.  相似文献   

11.
Two sediment cores, one 396 cm long from west Taihu Lake, another 246 cm long from east Taihu Lake, are interpreted from the analysis of their magnetic susceptibility, total organic carbon, total nitrogen, total pigments, organic carbon isotope, hydrogen index, saturated hydrocarbons, 14C dating and surficial sediment conditions. The west Taihu Lake core is the longest one studied in this lake so far, and has provided us the most complete environmental and climatic information for this lake. The results from the west Taihu lake core indicate that Taihu Lake has undergone the following stages:from ca.14 300 to 13 300 aB.P. Taihu Lake was in low lake-level, and there existed exposed features from the proxies reflecting arid paleoclimate. From ca.13 300 to 12 400 aB.P. an arid transitional stages occurred with a slightly warmer and wetter climate. From ca. 12 400 to 10 900 aB.P. a period of large climatic fluctuation occurred and from 10900-10 000 aB.P. a warm period developed with deep water and strongly reducing sediments. During ca.10 000-7 200aB.P., a cool transitional period alternating with a warm climate occurred. It was warm and wet during 7 200-5 700aB.P.; some proxies changed violently in 5 050aB.P., reflecting obvious changes in material source and a probable interruption of sedimentation. The east Taihu Lake history from ca. 6 550 to 6 450 aBP, the climate was cold and dry, and gradually turned warm and wet in ca. 6 450-6 050 aBP. It was warm and wet in ca. 6 050-5 800 aBP and had a cold tendency in 5 800-ca. 5 000 aBP. An abrupt change occurred at ca. 5 000 aBP, and the lake sediment in the uppmost part was disturbed by wave action indicating shallow water conditions.  相似文献   

12.
焉耆盆地北缘和静逆断裂-褶皱带中晚第四纪变形速率   总被引:4,自引:4,他引:0  
焉耆盆地为南天山内部的一个山间盆地,盆地北缘发育1排第四纪新生褶皱带,即和静逆断裂-褶皱带。中晚第四纪以来,由于和静逆断裂-褶皱带的持续活动使得在褶皱生长过程中形成的多期洪积地貌面发生反向掀斜变形。利用高精度差分GPS,对褶皱带中部哈尔莫敦背斜区内的多期变形地貌面的地形形态进行了测绘,判定背斜的生长主要以翼旋转为主。利用背斜北翼不同地貌面的反向掀斜角度,分别计算了不同期次地貌面的隆升和缩短变形量。结合原地宇宙成因核素深度剖面法和光释光测年法,对背斜区内的F4,F3b,F2洪积台地面和T1阶地面的形成年龄进行了测定,发现背斜在距今约550ka、428.3+57.6-47.2ka和354.3+34.2-34.8ka不同时段的平均隆升速率从0.31±0.24mm/a下降至0.15±0.02mm/a,同时背斜北翼的翼旋转速度也呈逐渐减小的趋势。但背斜自起始变形开始,缩短速率却大致保持恒定为约0.3mm/a。而这一恒定的缩短速率与现今横跨和静逆断裂-褶皱带所观测的GPS速率具有很好的一致性,说明在天山内部的哈尔莫敦背斜区,短尺度的GPS速率可以代表长尺度的地壳应变速率,同时反映出山体内部一系列断层和褶皱构造在吸收和调节整体变形量时也起到一定的作用。  相似文献   

13.
The I ingwu fault is in the eastern boundary of the southern section of Yinchuan graben. It hasa close relation to seismicity in the Lingwu-Wuzhong region.Few researches have been done.In this Paper,on the basis of tee data obtained from field investigation,the activity features inLate Quaternary have been discussed.The vertical displacement and its slip rate have been alsoestimated.The fault is 48km in length,being divided into 3 segments according to geologicaland topographical characteristics.The last rupture along its northern and middle segments wasoccurred in late of Late Pleistocene or early Holocene while that along the southern segmentwas occurred in midle Holocene.The vertical slip rate is estimated as 0.23~025mm/a sinceabout 66ka B.P.based on the vertical displacements of terracesⅠ,Ⅱ and Ⅲ and their ages.  相似文献   

14.
Geomorphological investigations in the Russian Altai Mountains provide evidence for the extent and timing of Late Quaternary glaciations and aeolian sediments. Infrared optically stimulated luminescence (IR-OSL) and thermoluminescence (TL) dating of aeolian sediments from the central part of the Russian Altai were carried out on silty and sandy sediments that cover fluvial and glacio-fluvial terraces. Most samples from loess, loess-like sediments and sandy loess taken from different terrace sequences within the Altai Mountains provide IRSL ages suggesting a main aeolian deposition period between 25 and 15 ka. These data are consistent with those from the adjacent Mongolian Altai. Sand and silt layers within moraines yielded IRSL age estimates between 22 and 19 ka and correlate to the ice margins of the Last Glacial Maximum. Aeolian dune sands overlying or neighbouring the loess-like sediments and the fluvial terraces at some places provide evidence for Late Glacial (around 15 ka) and Early Holocene (around 9 ka) aeolian activity. The youngest sand sheets gave deposition ages of about 1.5 ka. These sediments covered graves and are related to overgrazing. They provide evidence for the significant human impact on the environment. Fluvial sediments, including silt and sandy gravel intermingled with charcoal, yielded contradicting radiocarbon and luminescence ages. IRSL age estimates obtained for the silty layers range from 19 to 18 ka and are significantly older than the radiocarbon ages, which gave sub-recent ages between 1170 and 910 BP. These data indicate fluvial sedimentation of debris and mudflows in a period of deforestation and strong soil erosion related to mining activities during the 9th and 10th century.  相似文献   

15.
The Qilianshan north-edge thrust (QNT)is located at the boundary between the northern margin of the Qilianshan mountain and Hexi Corridor, with a length over 700km. The Minle-Damaying fault (MDF), trending NWW, is part of the eastern section of the QNT, cutting through the Minle and Wuwei Basins. Hexi Corridor is a region of intense seismic activities, where many large earthquakes have been documented in history, such as the M7.5 Gaotai earthquake in 180, M8.5 Haiyuan earthquake in 1920, M8.0 Gulang earthquake in 1927 and the M7.6 Changma earthquake in 1932. While, there is no seismic record on the MDF. The Dongda River flows across the MDF from south to north. One of the tributary of the Dongda River, Xie River, has very well preserved terraces (T6-T1)which were offset by the MDF. On these terraces, there is clear trace of scarps, of which the height increases from terraces T3 to T6, indicating an accumulation of offset with time. In order to acquire the cross-section of scarps, unmanned aerial vehicle (UAV)scanning was implemented. With a digital camera mounted on, the UAV scanned an area of 0.52km2 and digital elevation model (DEM)was generated with an accuracy of 0.2m vertically. The Thompson's method was utilized to conduct linear regressions on both the hanging wall and foot wall of the fault. The difference between the intercepts of the regression lines with the vertical line going through the intersection of the scarp surface on the fault surface is considered as the vertical offset. Terraces from T6 to T3 are very well preserved where MFD intercepts the Xie river, while T2 and T1 are badly eroded at the same location. Utilizing the cross-sections extracted from high resolution DEM, we estimate that the vertical offsets of T6-T3 are 13.26~15.67m, 9.74~10.13m, 5.86~7.35m and 5.03~5.60m, respectively, with 95%confidence interval. From the offsets of terraces, at least 4 paleo-seismic events are indentified. Terraces were dated by the AMS 14 C dating, yielding ages (cal BP)of T6-T2 as (16 405±210)a, (111 975±21)a, (5 697.5±210)a, (4 470.5±54.5)a and (3 137.5±77.5)a. Liner regression was performed for the relation between the ages and the offsets of terraces, resulting in the average vertical slip rate of MDF since the formation of T6 as 0.91 average v. As the dip of MDF is about 35°, the shortening rate is estimated to be (1.3±0.13)mm/a. This study provides important parameters for the analysis of seismic activity in heavily populated Minle and Yongchang areas.  相似文献   

16.
天景山断裂带晚第四纪水平活动强度的分时,分段研究   总被引:12,自引:1,他引:12  
在野外实测工作基础上,统计归纳了天景山断裂带上的冲沟左旋错动资料,分析了各类冲沟形成年代,对断裂带晚第四纪以来的水平活动强度分布,分段进行了研究,结果表明,断裂带晚更新以来的总体活动强度不大,但从时间和空间分析,各段活动的差异比较明显,平均滑动速率为0.23~1.62mm/a。晚更新世早,中期,活动中心位于断裂带西段,平均速率为1.40mm/a,晚更新世晚期以来,活动中心东移到中段,平均速率为1.  相似文献   

17.
The island of Crete in the forearc of the Hellenic subduction zone has a rugged topography with local relief exceeding 2 km. Based on the elevation of marine shorelines, rates of rock uplift during the Late Holocene were previously estimated to range between 1 and 4 mm/a in different parts of the island. These rates may, however, not be representative for longer timescales, because subduction earthquakes with up to 9 m of vertical coseismic displacement have affected Crete in the Late Holocene. Here we use a well preserved sequence of marine terraces near Kato Zakros in eastern Crete to determine the rate of rock uplift over the last ∼600 ka. Field investigations and topographic profiles document a flight of more than 13 marine bedrock terraces that were carved into limestones of the Tripolitza unit. Preliminary age constraints for the terraces were obtained by 10Be exposure dating of rare quartz-bearing sandstone clasts, which are present on some terraces. The 10Be ages of these samples, which have been corrected for an inherited nuclide component, yielded exposure ages between ∼100 ka and zero. Combined with geomorphologic evidence the two oldest 10Be ages suggest that the terraces T4 and T5, with shoreline angles at an elevation of ∼68 and ∼76 m above sea level, respectively, formed during the marine isotope stage 5e about 120 ka ago. The correlation of the higher terraces (T6 to T13) with regional sea-level highstands indicates sustained rock uplift at a rate of ∼0.5 m/ka since at least ∼600 ka. As normal faulting has dominated the tectonics of Crete during the last several million years, upper crustal shortening can be ruled out as a cause for rock uplift. We argue that the sustained uplift of the island results from the continuous underplating of sediments, which are transferred from the subducting African plate to the base of the crust beneath Crete.  相似文献   

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