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1.
玉龙山西麓更新世冰川作用及其与金沙江河谷发育的关系   总被引:18,自引:5,他引:18  
在玉龙山东麓更新世冰川作用研究的基础上,对其西麓和金沙江河谷中的古冰川与冰水沉积物的分布和特征进行了调查.结合ESR测年,划分出4次冰期,即0.7~0.6MaB.P.的玉龙冰期,0.53~0.45MaB.P.的干海子冰期,0.31~0.13MaB.P.的丽江冰期和晚更新世中晚期的大理冰期,其中玉龙冰期为规模较大的山麓冰川,丽江和大理冰期为山谷冰川,干海子冰期则为山麓冰川与山谷冰川的过渡类型.来自玉龙山西坡的玉龙冰期冰碛物充填于现今金沙江谷底的事实和大具金沙江下渡口西岸早更新世金沙江砾石层的发现表明,金沙江在早更新世早期即已存在,也说明了在该段金沙江河谷中多处发现的湖相沉积物是冰川沉积堰塞河谷而成石鼓古湖的结果.在该段金沙江河谷中仅发现拔河50m左右以内的4级河流阶地,且往往以这些湖相沉积为基座的现象,则是石鼓古湖被外泄后金沙江现代河谷形成的结果.  相似文献   

2.
通过对西藏札达盆地及其周缘的野外地质调查,填绘出了大面积分布的早更新世早期香孜组冰缘区河湖相沉积。对该河湖相沉积的岩石、结构构造、沉积环境、所含化石特征和形成时代等的研究表明,它是第四纪冰期冰缘区的最早沉积记录,也是第四纪冰期的下限。为青藏高原建立气候地层层序、第四纪冰期划分对比提供了重要的实际资料和依据。  相似文献   

3.
在对唐古拉山口现代冰川和古冰川考察研究的基础上,结合定位观测资料和TL、^10B-^26Al-^21Ne及^14C测年数据,对区内第四纪冰川遗迹进行了深入讨论,划分出二次冰期(即中更新世晚期的倒数第二次冰期、晚更新世中一晚期的末次冰期)和二次全新世冰进(即新冰期和小冰期)。提出在早更新世时,由于山体未达到当时冰川发育的雪线高度,所以未发育冰川。但在唐古拉山口地区,截止目前还未找到中更新世早期的倒数第三次冰期的冰川遗迹,由于高原隆升的滞后性和冰川发育的延滞效应及“亚洲干极”的耦合,推测仍只发育局部冰川作用。进一步研究表明,古今雪线由高原边缘向腹地升高,唐古拉山地区高出边缘1500m左右,生动表现了“亚洲干极”的作用;广泛分布的湖群说明羌塘地区是一个大江大河尚未伸入的内流地区,意味着青藏高原是个年青的高原。由于青藏高原的隆升,对高原腹地引起的干旱化过程和水分严重不足,使唐古拉山地区的冰川自倒数第二次冰期以来,冰川规模一次比一次明显地减小。  相似文献   

4.
根据湖相沉积碳氧同位素估算青藏高原古海拔高度   总被引:18,自引:0,他引:18       下载免费PDF全文
青藏高原湖相沉积碳氧同位素、海拔高度与年均气温存在函数关系。对青藏高原南部14个不同海拔高度的第四纪湖相沉积露头,在剖面不同部位采集了35个湖相沉积样品,结合海拔高度与年均气温的相关分析,建立了湖相沉积碳氧同位素古海拔高度计。再对青藏高原南部、青藏高原北部、东昆仑南部和柴达木盆地不同地点出露的渐新世、中新世早中期、上新世—早更新世湖相沉积地层,分别取样进行碳氧同位素分析,计算不同时期的古年均气温和古海拔高度。结果表明,青藏高原大部分地区中新世早中期整体隆升至海拔约4000m高度,五道梁—东昆仑南部中新世早中期整体隆升至海拔约3500m高度,柴达木盆地中新世早中期隆升至海拔约2500m高度。这些资料对认识青藏高原隆升时代和气候环境演化具有重要意义。  相似文献   

5.
六盘山构造带夹持于青藏高原与鄂尔多斯地块之间,记录了青藏高原抬升向东北方向推挤的远程效应。关于六盘山抬升过程的研究主要集中在白垩纪及新生代早期,而与人类活动密切相关的晚更新世的研究很少涉及。以盆山响应关系理论为指导,立足于与六盘山相邻的清水河盆地,开展系统的沉积学研究,查明清水河盆地晚更新世的地层序列、沉积充填过程,演绎了六盘山盆地晚更新世以来抬升的过程及其产生的环境效应。研究认为,清水河盆地晚更新世早中期发育2期古湖,以温暖湿润的气候环境为主,晚期由于相邻六盘山的快速抬升,湖水彻底退出了清水河流域,环境逐步开始恶化。晚更新世—全新世清水河流域发育了巨大的六盘山山前冲积扇,该扇体不断沿清水河河谷向东推移,有进一步阻隔清水河形成巨大堰塞湖的趋势。研究成果将为六盘山晚更新世抬升过程研究提供重要依据,为清水河流域的综合治理提供基础地质参考。移动阅读   相似文献   

6.
西藏阿里阿伊拉日居山脉第四纪冰川作用   总被引:3,自引:1,他引:3       下载免费PDF全文
在西藏阿里阿伊拉日居山脉南北两麓及切割山脉的各沟谷中,分布着4套早更新世以来的冰川沉积物。根据这些冰川沉积物的地层层序和冰川沉积物的电子自旋共振(ESR)年龄测定结果,将阿伊拉日居山脉南北两麓所发生的4次早更新世以来的冰川作用,分别命名为札达冰期(1161-952 ka BP)、阿伊拉日居冰期(762-730 ka BP)、学朗冰期(336-211 ka BP)和弄穷冰期(105-15 ka BP),并与青藏高原及其他地区冰期进行了对比。各次冰期的冰川性质分别为大型山岳冰川、冰帽、山麓冰川和中小型山谷冰川。全新世时期,现代冰川有过冰川推进。近期冰川则发生了明显的后退。  相似文献   

7.
错那-沃卡裂谷是青藏高原南部的众多新生代南北向裂谷之一,该裂谷中段的邱多江盆地沉积了大面积的第四纪湖相沉积物。此前由于地质调查程度较低,古湖积物的地表调查工作基本属于空白。本次调查对洛村-邛多江盆地古湖积物进行了详细研究,在洛村地区发现了完整的古湖积物的连续沉积,测制了地层剖面,开展了精确的光释光定年分析,结果显示其沉积时代为上更新世。鉴于区域上该套更新世地层出露面积广、厚度大,故新建地层单元,定名为洛村组(Qp 3 lc);并推测邱多江-洛村古湖可能是雅鲁藏布江中部超大古堰塞湖的一部分,洛村组是由藏南地区错那-沃卡裂谷和古大湖共同作用形成,初步计算了古湖出水口、湖面高度、湖水面积等参数。  相似文献   

8.
论长江三峡形成与中更新世大姑冰期的关系   总被引:10,自引:1,他引:10  
通过长江三峡地区新构造运动,中更新世大姑冰期冰川作用及其后河流袭夺作用的研究,提出长江三峡发育前后历时70 ̄100万年,大体经历三个阶段:(1)早更新世鄂西期夷平及其抬升解体;(2)中更新世大姑冰期来临并覆盖了所有超出当时雪线以上的山原和山谷,形成巨大的冰盖和山谷冰川;(3)冰川溯源刨蚀,使位於东西两侧的峡江冰川和川江冰川之间的分水岭齐岳山-巫山山原冰盖日益缩小,最终打通分水岭并袭夺了西部河流水系  相似文献   

9.
宁夏红寺堡盆地萨拉乌苏组地层时代重新厘定及意义   总被引:1,自引:1,他引:0  
以沉积旋回划分为基础,采用光释光和碳十四测年技术手段,将宁夏红寺堡盆地上更新统地层时代进行了重新划分与厘定。研究结果将红寺堡盆地原定为萨拉乌苏组的湖相沉积解体为上下两套,下部湖相沉积即为传统意义上的萨拉乌苏组,上部湖相沉积结合区域地层对比结果将其重新划归为水洞沟组,总体上反映了晚更新世青藏高原东北缘发育的两期重要的古大湖事件。在深海大洋氧同位素曲线上这两期古大湖事件分别相当于MIS3与MIS5段,代表了区域上两期温暖湿润的气候环境,也与该时期全球古气候环境的变迁基本一致。同时,在这两期古大湖发育期间,存在一期重要的构造隆升事件,表现为两套地层之间存在明显的区域不整合接触,可能是青藏高原晚更新世强烈隆升的响应。因此,针对青藏高原东北缘上更新统萨拉乌苏组湖相沉积层开展系统的年代学研究,对其地层时代进行重新划分与厘定,对于研究晚更新世古大湖形成与演化、古气候变迁以及青藏高原的隆升提供了重要的地质背景资料。   相似文献   

10.
迭山西北部位于青藏高原的东缘, 属西秦岭山脉的西段. 在海拔3 700 m以上保存有类型较为齐全的冰蚀地形(冰斗、刃脊、U形谷、悬谷、粒雪盆、鲸背岩与基岩磨光面等)与冰碛地形(侧碛垄与终碛垄). 采用野外考察、遥感影像解译与填图等方法对该区的冰川地貌分布及其特征进行了探讨. 基于研究区冰川地形分布与特征, 结合青藏高原现代的抬升速率、邻近山地冰川地形的年代学资料以及其他古环境研究成果进行综合分析得出: 该区的古冰川发育于末次冰期, 末次冰期最盛期是其最主要的形成期. 冰川最盛时面积约38 km2, 为具有暖底性质的冰帽冰川.  相似文献   

11.
Benxing Zheng 《GeoJournal》1988,17(4):525-543
The uplift of the Himalaya and Qinghai-Xizang plateau began at the end of Pliocene to the beginning of Early Pleistocene, changing the atmospheric circulation in Asia, enhancing the South Asian monsoon and enormously effecting the climatic conditions and glacial development.According to the evidence of glacial deposits, geomorphology, paleobiology, paleopedology, etc., at least four glaciations can be recognized. The uplift of the Himalayas was earlier than that of other mountains, so that the glaciation occurred in Early Pleistocene, forming small piedmont glaciers on the N slope, whilst at the same time there were wide short valley glaciers on the S slope. During the Middle Pleistocene, the height of Himalaya was about 4000 m a s l, the monsoon was strong, and much water vapour reached the interior of the plateau, the most favourable period for glacial development. Great piedmont glaciers and small ice caps formed on the mountains N of Himalayas and great valley glaciers occurred on the S slope, but no great ice sheet covered the plateau.During the early Late Pleistocene, the Himalayas had risen to over 5000 m asl, forming a barrier against the incursion of the Indian monsoon, so that the precipitation decreased sharply on the plateau N of Himalayas, thus diminishing the extent of the glaciation. But on the high mountains of the S part of Xizang and on several high mountains of the S slope of the Great Himalaya, the precipitation increased and the extent of glaciation reached a maximum. Since Last Glaciation, the precipitation of the alpine zone has decreased more sharply, the climate has become drier and colder, becoming unfavourable for glacial development.During the Holocene, three stages may be distinguished, i.e. the recession in Early Holocene (10,000-8000 BP); the disappearance of most glaciers in the Hypsithermal period in Middle Holocene, (8000-3000 BP); and the neoglacial fluctuations in Late Holocene (3000 BP up to present). The glaciers of the Neoglaciation advanced several hundred meters or even 3–5 km farther than existing glaciers.  相似文献   

12.
盛海洋  王飞跃 《地质科学》2009,44(1):281-313
以新构造运动为背景,以岩石地层特征为基础,以多种方法的测年数据为依据,以生物化石种属与产出层位和气候地层为参考,按照多重地层划分观点,本文首次对若尔盖盆地更新统及全新统的生物地层、气候地层和年代地层的划分做了深入研究,进而提出了若尔盖盆地晚新近纪地层的多重划分与对比方案.在以新构造运动为背景下沉积的更新统一全新统生物地层、气候地层等在不同发展阶段具有不同的特征,相同时期不同沉积物之间可以相互对比.利用植物、孢粉和测年数据,"阿坝砾石层"时代划归为早更新世.黄河干流、黑河和白河地层中所产古脊椎动物化石和介形类化石的地质时代为晚更新世.由泥炭孢粉剖面和RM孔孢粉资料揭示出晚冰期到冰后期以来,若尔盖地区的气候表现出极大的不稳定性,冷暖变化频繁,可与由冰期与间冰期或干旱期与湿润期交替演进的气候地层划分的中更新世4366高地冰期和尼格曲一公巴拉克冰期,晚更新世末次冰期早期的木哈隆冰阶、扎尔吉冰阶、羊拱海冰阶、希门错沟冰阶和末次冰期晚期的安纳尔冰阶、全新世冰后期气候地层单位,以及河流堆积阶地划分和风成堆积划分相对应.  相似文献   

13.
Many moraines formed between Daduka and Chibai in the Tsangpo River valley since Middle Pleistocene. A prominent set of lacustrine and alluvial terraces on the valley margin along both the Tsangpo and Nyang Rivers formed during Quaternary glacial epoch demonstrate lakes were created by damming of the river. Research was conducted on the geological environment, contained sediments, spatial distribution, timing, and formation and destruction of these paleolakes. The lacustrine sediments 14C (10537±268 aBP at Linzhi Brick and Tile Factory, 22510±580 aBP and 13925±204 aBP at Bengga, 21096±1466 aBP at Yusong) and a series of ESR (electron spin resonance) ages at Linzhi town and previous data by other experts, paleolakes persisted for 691~505 kaBP middle Pleistocene ice age, 75–40 kaBP the early stage of last glacier, 27–8 kaBP Last Glacier Maximum (LGM), existence time of lakes gradually shorten represents glacial scale and dam moraine supply potential gradually cut down, paleolakes and dam scale also gradually diminished. This article calculated the average lacustrine sedimentary rate of Gega paleolake in LGM was 12.5 mm/a, demonstrates Mount Namjagbarwa uplifted strongly at the same time, the sedimentary rate of Gega paleolake is more larger than that of enclosed lakes of plateau inland shows the climatic variation of Mount Namjagbarwa is more larger and plateau margin uplifted more quicker than plateau inland. This article analyzed formation and decay cause about the Zelunglung glacier on the west flank of Mount Namjagbarwa got into the Tsangpo River valley and blocked it for tectonic and climatic factors. There is a site of blocking the valley from Gega to Chibai. This article according to moraines and lacustrine sediments yielded paleolakes scale: the lowest lake base altitude 2850 m, the highest lake surface altitude 3585 m, 3240 m and 3180 m, area 2885 km2, 820 km2 and 810 km2, lake maximum depth of 735 m, 390 m and 330 m. We disclose the reason that previous experts discovered there were different age moraines dividing line of altitude 3180 m at the entrance of the Tsangpo Grand Canyon is dammed lake erosive decay under altitude 3180 m moraines in the last glacier era covering moraines in the early ice age of late Pleistocene, top 3180 m in the last glacier moraine remained because ancient dammed lakes didn’t erode it under 3180 m moraines in the early ice age of late Pleistocene exposed. The reason of the top elevation 3585 m moraines in the middle Pleistocene ice age likes that of altitude 3180 m. There were three times dammed lakes by glacier blocking the Tsangpo River during Quaternary glacial period. During other glacial and interglacial period the Zelunglung glacier often extended the valley but moraine supplemental speed of the dam was smaller than that of fluvial erosion and moraine movement, dam quickly disappeared and didn’t form stable lake.  相似文献   

14.
Erratic clasts with a mass of up to 15 kg are described from preglacial shallow marine and coastal deposits (Wroxham Crag Formation) in northeast Norfolk. Detailed examination of their petrology has enabled them to be provenanced to northern Britain and southern Norway. Their clustered occurrence in coastal sediments in Norfolk is believed to be the product of ice-rafting from glacier incursions into the North Sea from eastern Scotland and southern Norway, and their subsequent grounding and melting within coastal areas of what is now north Norfolk. The precise timing of these restricted glaciations is difficult to determine. However, the relationship of the erratics to the biostratigraphic record and the first major expansion of ice into the North Sea suggest these events occurred during at least one glaciation between the late Early Pleistocene and early Middle Pleistocene (c. 1.1–0.6 Ma). In contrast to the late Middle (Anglian) and Late Pleistocene (Last Glacial Maximum) glaciations, where the North Sea was largely devoid of extensive marine conditions, the presence of far-travelled ice-rafted materials implies that earlier cold stage sea-levels were considerably higher.  相似文献   

15.
This is a synthesis of the glacial history of the northern Urals undertaken using published works and the results of geological surveys as well as recent geochronometric and remote sensing data. The conclusions differ from the classical model that considers the Urals as an important source of glacial ice and partly from the modern reconstructions. The principal supporting evidence for the conventional model – Uralian erratics found on the adjacent plains – is ambiguous because Uralian clasts were also delivered by a thick external ice sheet overriding the mountains during the Middle Pleistocene. Alternative evidence presented in this paper indicates that in the late Quaternary the Ural mountains produced only valley glaciers that partly coalesced in the western piedmont to form large piedmont lobes. The last maximum glaciation occurred in the Early Valdaian time at c. 70–90 ka when glacial ice from the Kara shelf invaded the lowlands and some montane valleys but an icecap over the mountains was not formed. The moraines of the alpine glaciation are preserved only beyond the limits of the Kara ice sheet and therefore cannot be younger than MIS 4. More limited glaciation during MIS 2 generated small alpine moraines around the cirques of the western Urals (Mangerud et al. 2008: Quaternary Science Reviews 27, 1047). The largest moraines of Transuralia were probably produced by the outlet glaciers of a Middle Pleistocene ice sheet that formed on the western plains and discharged across the Polar Urals. The resultant scheme of limited mountain glaciation is possibly also applicable as a model for older glacial cycles.  相似文献   

16.
青海扎陵湖和鄂陵湖盆地第四纪河湖相地层研究   总被引:2,自引:0,他引:2       下载免费PDF全文
通过对扎陵湖和鄂陵湖沿岸的湖积阶地中湖相沉积的野外地质调查和实测剖面,对分布于盆地内的第四纪早更新世-全新世湖相地层进行了详细的研究和划分、重新厘定了该区第四纪岩石地层单元,确立了生物地层和年代地层序列.建立了青海东南部地区第四纪早更新世-全新世湖相地层单位-黄河源群(QH),黄河源群是由第四系下更新统野生沟组(Qp~1γ)、中更新统鄂陵湖组(Qp~2e)、上更新统大野马岭组(Qp~3d)和全新统黑河乡组(Qhh)等4个组组成.为青藏高原湖泊演化、气候变化、古地理变迁研究,以及第四纪地层的划分与对比等提供了新资料.  相似文献   

17.
青藏高原多期次隆升的环境效应   总被引:28,自引:0,他引:28  
青藏高原隆升对中国西部环境变迁起着决定性影响。通过对柴达木、吐鲁番—哈密、塔里木盆地的演化及其与青藏高原隆升的耦合研究,以柴达木盆地为时空坐标,认为高原隆升可分为三大阶段:(1)古近纪期间青藏高原隆升仅限于冈底斯山一带。当时,受行星纬向气候带控制,中国西北地区为干旱亚热带草原和热带雨林环境,大面积准平原化、泛盆地化,在构造上处于伸展-夷平的拉张环境,与现今亚洲大陆东部相似;(2)青藏高原整体的初次隆升发生在中新世早—中期(23~11·7Ma)。因青藏高原和大兴安岭的阻隔,古近纪的纬向气候带逐渐转变为中亚季候风,古黄土(22Ma)、三趾马动物群的发育,说明高原北缘当时为干旱的荒漠草原环境。同时,这次隆升引起中—晚中新世中国西部广袤地域古地形-构造面貌的变化;(3)形成现今高原面貌的末次快速隆升发生在0·9~0·8Ma。早更新世晚期,印度洋快速扩张,印度板块向中亚大陆脉冲式(A型)陆内俯冲,使得高原快速挤压隆升。这次隆升不仅使高原本身的环境骤变,出现第四纪以来最大的冰川,形成世界上最大的高寒草原,而且引起了全球气候的变化,促使北极圈冰盖的形成。同时,高原隆升使高原内部和周边出现强烈的挤压构造变形,如柴达木、河西走廊、塔里木、吐鲁番—哈密、准噶尔等诸盆地内几万米厚度中—新生界的构造变形与昆仑山、祁连山、天山、阿尔泰山的挤出式双向推覆隆升,形成了中国西北的盆-山地貌。现今,随着青藏高原的持续隆升,高寒草原开始退化,造成中国西北地区大面积的荒漠化,成为制约我国西部生态环境的重要因素。  相似文献   

18.
根据札达盆地河湖相剖面地层岩性、粒度、沉积构造、古生物等反映的沉积岩相,以及不整合面等沉积特征,可将札达盆地上新世—早更新世河湖相地层,初步划分为两个三级层序(Ⅰ、Ⅱ)。层序Ⅰ代表上新统地层层序,并进一步区分出退积准层序组和进积准层序组。对应上新世湖相沉积由低位体系域—湖泊扩张体系域—湖泊收缩体系域的演化,反映湖泊由源区水系冲积亚相—滨湖三角洲亚相—滨浅湖亚相—半深湖亚相—滨浅湖亚相的湖泊,由扩张到萎缩的一个完整的发展演化旋回。层序II代表下更新统地层层序,反映一个盆地受构造和气候(冰期—间冰期)双重控制的夭折型冰湖形成演化的由冰水冲积相到冰湖沉积相的不完整沉积旋回,为青藏高原新近系上新统与第四系的研究与划分提供了重要依据。  相似文献   

19.
西藏阿里札达盆地地质构造的基本特征及其演化   总被引:2,自引:0,他引:2  
通过对札达盆地及其周缘的野外地质调查和地层剖面的实测,确定了札达盆地的大地构造位置以及在喜马拉雅板块构造格局中的位置,并从基底构造、盆缘构造和盆内构造三个方面,论述了札达盆地的地质构造特征。从盆地类型、盆地的形成过程,对札达盆地的构造成因进行了探讨。尤其是札达盆地上新世—早更新世河湖相沉积中香孜组与古格组、古格组与托林组之间两个不整合面的发现,象泉运动与古格运动两次构造运动的确定,以及上新统褶皱的发现,为研究青藏高原喜马拉雅运动晚阶段(第Ⅲ幕)的表现形式及新近纪到第四纪时期高原隆升过程、方式等,提供了实际资料和重要依据。  相似文献   

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