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1.
将大孔径闪烁仪(LAS)观测数据应用在陆面模式验证中对更好地认识和描述陆面过程在气候变化中的作用有着重要意义.以中国北方2个LAS观测站--密云和阿柔为例,分别设定一个公里尺度(1 km2)的研究区域,采用陆面模式SiB2,综合利用站点观测数据、实地调查数据及卫星遥感数据,对陆面过程进行了模拟,并利用LAS和涡动相关仪(EC)观测的显热通量对模拟结果进行了评估,结果表明:SiB2模式能够对阿柔和密云显热通量的总体情况、日变化情况及季节变化情况进行较好的模拟;利用LAS显热通量进行较大尺度模拟验证,能够在很大程度上避免EC能量不闭合及其观测尺度与模式模拟尺度不匹配在验证中所造成的偏差,验证效果更好.  相似文献   

2.
海洋拖缆地震资料中鬼波会影响地震子波的形态,不同工区之间由于炮点、检点沉放深度不一致引起的鬼波周期和形态不一致,使得不同工区子波特征存在较大差异;由于常规拼接匹配技术没有考虑鬼波差异,解决不了鬼波的周期不一致问题,拼接处往往会存在明显的拼接痕迹,达不到理想的拼接效果.这里提出基于复杂海况鬼波压制(CSDG)的不同工区间...  相似文献   

3.
青藏高原是第四纪古冰川研究的理想区域也是宇宙成因核素(terrestrial cosmogenic nuclides,TCN)暴露测年技术应用的天然实验场所。然而,现有的TCN测年数据与先前学者基于其他测年手段的研究结果不一致,显得相对年轻。为了探索其原因,本文尝试对青藏高原1594个TCN测年数据进行统计分析。研究结果表明:1测年样品中97%的样品是漂砾样品,测年数据中约有93%的年代数据小于130 ka;2 280组(n≥3)漂砾样品年代数据中大约76%的漂砾组数据变异系数大于10%,而基岩和羊背石样品组测年数据变异系数较低、相对集中;3冰碛垄表面漂砾样品的不等时暴露与后期侵蚀可能是造成TCN年代数据结果偏年轻的主要原因。本研究可为青藏高原地区冰川地貌TCN暴露年代研究提供重要启示。  相似文献   

4.
为评估最新一代TRMM 3B42-V7卫星降水反演数据产品在珠江流域的精度和适用性,选取位于珠江流域下游的东江和北江流域为研究区域,基于地面雨量站点数据评估了该产品的精度和适用性,并结合可变下渗容量(Variable Infiltration Capacity,VIC)水文模型进行了水文模拟验证。对比分析结果表明,在网格尺度上,大多数网格日尺度相关系数达到0.60以上,月尺度相关系数达到0.90以上,3B42-V7产品表现出较好的精度,在区域尺度上精度得到了进一步提高;水文模拟验证分两种情景下进行,情景Ⅰ的结果表明,当水文模型由地面雨量站点数据率定时,3B42-V7产品数据的水文模拟效果不佳,个别区间内存在对洪峰流量明显的低估;情景Ⅱ的结果表明,由3B42-V7产品数据重新率定水文模型时径流模拟效果有了较大改善,说明该产品可在一定程度上作为资料缺乏地区的降水数据来源。  相似文献   

5.
正一、来稿要求1.文稿要求论点明确,数据、资料可靠,文字简练。论文必须包括:1)题目、作者姓名、作者单位、邮政编码;2)文首的中文摘要(约500字),关键词3—8个;3)首页脚注处的第一作者简介(姓名、性别、出生年月、学历、职称、从事专业和E-mail地址)、资助来源(注明编号);4)文末的参考文献;5)文后所附英文摘要与中文摘要对应一致。2.文稿篇幅(含图表)一般不超过20 000字。文中的量符号一律采用斜体字母;计量单位一律按《中  相似文献   

6.
正一、来稿要求1.文稿要求论点明确,数据、资料可靠,文字简练。论文必须包括:1)题目、作者姓名、作者单位、邮政编码;2)文首的中文摘要(约500字),关键词3—8个;3)首页地脚处的第一作者简介(姓名、性别、出生年月、学历、职称、从事专业和E-mail地址)、资助来源(注明编号);4)文末的参考文献;5)文后所附英文摘要与中文摘要对应一致。2.文稿篇幅(含图表)一般不超过20 000字。文中的量符号一律采用斜体字母;矢量、张量符号一律  相似文献   

7.
王建其  柳小明 《岩矿测试》2016,35(2):145-151
以28个不同类型岩石标样作外标,用玻璃熔片法制样,采用经验系数法进行基体校正,建立了X射线荧光光谱法(XRF)测定不同类型岩石中硅铝钙镁等10种主量元素的分析方法。该方法被用于参与GeoPT分析测试能力验证,15年来分析了23个不同类型的岩石验证样品。经验证该方法对SiO_2、Al_2O_3、K_2O和CaO具有非常好的分析效果(所有测定结果的|Z|2);对于MgO、MnO、TiO_2和Na_2O四个元素,尽管各有一个样品的分析结果的|Z|2,这主要是样品与标样的基体差异较大造成了低含量样品测定结果超差,但依然可获得好的分析效果;当TFe_2O_31.0%,P_2O_5含量在0.08%~0.80%区间时,分析结果的|Z|2,满足分析期望。总体上所建立的XRF分析方法稳定,可满足应用地球化学实验室测试不同类型岩石中10种主量元素的分析期望。  相似文献   

8.
Xu等[1] 提出基于膨润土表面分形模型的膨胀变形计算方法 Vw/Vm=kPDs-3(式1),并得到了Tsukinuno膨润土、Wyoming膨润土和MX-80膨润土的膨胀变形和膨胀压力(统称膨胀变形)的膨胀试验数据的验证。当时由于条件限制,存在两个问题:(1)膨润土的表面分维一般采用氮吸附法测量,由膨胀变形试验数据反算得到的膨润土表面分维没有得到氮吸附试验数据的验证; (2)在归一化吸水体积与压力的分形模型(式1)中,K是膨润土的物性常数,没有给出理论表达式,只是经验系数。本文采用氮吸附方法测量了高庙子Na基膨润土、高庙子Ca基膨润土、商用膨润土和Tsukinuno膨润土的表面分维,根据式(1)由表面分维计算膨胀变形,并与膨胀试验数据比较,验证膨胀变形的分形模型; 根据双电层理论,导出用双电层参数表示式(1)中K值的理论表达式,用于膨胀变形的计算,并与膨胀变形试验结果进行比较验证。  相似文献   

9.
罗周全  陈杰  谢承煜  汪伟  刘晓明 《岩土力学》2015,36(6):1744-1751
为准确判断溜井受矿石冲击的损伤情况,基于影响溜井的损伤因素,构建了溜井受矿石冲击的损伤理论模型,并据此运用MATLAB计算获得矿石对溜井冲击的冲量分布。采用MADIS-FLAC3D数据耦合技术建立溜井冲击损伤数值模型,揭示了溜井冲击损伤的分布规律。综合运用空区激光探测系统(CMS)和大型矿床三维软件SURPAC,实现了对溜井垮塌三维信息的准确获取及可视化,并对所建立模型的计算分析结果进行了验证。结果表明:(1)根据溜井冲击损伤模型计算得到溜井受冲击的范围标高为-265.83~-292.28 m,冲量在此区间呈现先增大后减小的规律,在标高为-272.88 m处达到最大,为13.52 kN?S;(2)通过数值模型分析得到溜井受矿石冲击一侧在标高为-264.12~-294.88 m区间段发生了位移变化,并在相应区间段形成一定范围的塑性区,说明矿石冲击破坏了此处溜井围岩的稳定性;(3)数值分析得出的最大位移监测值出现的位置与探测模型垮塌区域的最大断面标高一致,实际探测获得的溜井垮塌最严重区域形态与数值模拟确定的塑性区相吻合。  相似文献   

10.
杨静波  文宏展  杨岚 《水文》2024,44(1):37-43
无实测资料河流逐月水量估算是最严格水资源管理制度考核的重要支撑。基于流域水文相似性原理和水量平衡原理,选用径流模数法、径流系数法、区域水量平衡法,研究提出其逐月水量估算适用范围和估算成果合理性分析标准。以现有水文站为假设断面,采用参证水文站资料进行假设断面水量估算,对三种方法的适用范围和估算成果合理性分析标准进行验证。结果表明,径流模数法适用于集水面积相差不超过20%情形和考虑区间蓄泄水变量情况的集水面积相差在20%至1倍之间情形;径流系数法适用于集水面积相差在20%至1.5倍之间且估算时段有洪水过程情形;区间水量平衡法适用于上下游参证水文站面积比在3倍以内情形;“两种方法相对偏差小于18%”的估算成果合理性分析标准可行。  相似文献   

11.
The thick, Eocene to Pliocene, sedimentary sequence in Qaidam Basin at the northern margin of the Tibetan Plateau records the surface uplift history of the northeastern Tibetan plateau. In this study, we present detailed geochemistry, heavy mineral, and clay mineralogy data of the well preserved sedimentary record in the Dahongou section in the northeast of the Qaidam Basin. The results suggest that the sedimentary sequence recorded a 30 Ma young uplift/unroofing event in the northern edge of the Qaidam Basin, which is characterized by high ZTR index value and chlorite content, and low CIW`. The results are consistent with previous sedimentological studies of the Qaidam Basin, which indicated rapid increase of the accumulation rates around 30 Ma. Based on past thermochronological data from the mountains around the Qaidam Basin and the accumulation rates of the Cenozoic basins in the northeastern Tibetan Plateau, we infer a regional uplift and denudation event along the northeastern Tibetan Plateau during early Oligocene (~30 Ma), indicating that the Tibetan Plateau had expanded north-eastward of the study area at that time.  相似文献   

12.
柴达木盆地是青藏高原北部的一个中新生代山间陆相含油气盆地,盆地内新生代地层的构造变形记录了青藏高原北部生长、地壳缩短及其形成过程的重要信息.本文运用高精度卫星影像资料、地球物理资料剖面和磁性地层年代学数据等多种学科资料的综合研究,重点对柴达木盆地西部逆冲-褶皱构造带的形成机制和演化过程进行了详细的解析.研究结果表明:(1)由北向南依次发育分布的红三旱、尖顶山-黑梁子、南翼山和油砂山褶皱构造带均由不对称的直立褶皱或同斜褶皱构成,并且显示出背斜相对紧闭、向斜宽缓的”侏罗山式”褶皱特征,表明其下部滑脱构造带的存在;(2)红三旱、尖顶山-黑梁子逆冲-褶皱构造SW翼缓NE翼陡的不对称褶皱形态显示出是由南向北的逆冲作用形成的;两翼相对较对称的南翼山褶皱形态是由NE-SW向双向逆冲作用形成的;SW翼陡(或地层倒转)NE翼缓的油砂山褶皱带是由NE-SW向双向逆冲挤出作用形成的反映出由北向南的逆冲作用的存在;(3)红三旱、尖顶山-黑梁子和南翼山褶皱构造带的初始生长地层依次为始新统下干柴沟组、上新统狮子沟组和更新统七个泉组,高精度磁性地层限定其沉积时代依次为~39.5Ma、~8.2Ma和~2.5Ma,这不仅代表了这些褶皱的初始形成时代,而且代表了其逆冲断裂的形成时代;油砂山褶皱构造带中七个泉组初始生长地层以及上地表发育的一系列现代水系发生了弯曲,表明该逆冲-褶皱构造带从~2.5Ma形成以来一直持续到现在迄今仍在生长;红山旱地区近SN向的直立褶皱以及柴西地区似穹窿状的叠加褶皱,反映出阿尔金断裂带走滑过程中伴随的近EW向挤压的结果;(4)综合柴西地区逆冲-褶皱带构造地貌、生长地层、地球物理剖面、磁性地层年代学等证据,表明柴西存在的一系列逆冲-褶皱带是由南向北的滑脱构造产生,具有后退式生长演化特征,表明印度/欧亚板块碰撞以来,~40Ma其远程效应已到达柴达木盆地北部,并形成红山旱逆冲-褶皱构造带,随后的持续挤压,高原北部呈现出局部向南后退生长特征,依次形成尖顶山、南翼山和油砂山逆冲-褶皱带,其中~2.5Ma以来强烈的近南北向挤压作用产生的南翼山和油砂山逆冲-褶皱带构成了现今的”英雄岭”;~ 8Ma以来的阿尔金断裂带的强烈走滑活动波及到了柴达木盆地.  相似文献   

13.
利用物理测井曲线分析古气候变化,是近年发展起来的新领域。本文在对取芯井涩中6井多种气候指标分析的基础上,建立了涩中6井GR曲线古气候反演模式,将该模式引进到盆地东部唯一贯穿第四纪的钻孔---达参1井,利用该井高分辨率自然伽玛曲线建立了盆地东部地区2.85Ma以来的时间标尺,据此讨论盆地东部地区2.85Ma以来的古气候变化,表明盆地气候变化在大阶段上明显受到天文轨道周期的控制,但也具有明显的区域性特征。此外还与盆地西部大浪滩ZK-336孔进行了对比。表明柴达木盆地同时包含了高原隆升与全球性气候变化的信息,是古环境变迁的良好的信息载体。也证明了自然伽玛曲线是反映内陆干旱盆地气候与环境变化良好的代用指标。  相似文献   

14.
The eastern margin of the Qaidam Basin lies in the key tectonic location connecting the Qinling, Qilian and East Kunlun orogens. The paper presents an investigation and analysis of the geologic structures of the area and LA-ICP MS zircon U-Pb dating of Paleozoic and Mesozoic magmatisms of granitoids in the basement of the eastern Qaidam Basin on the basis of 16 granitoid samples collected from the South Qilian Mountains, the Qaidam Basin basement and the East Kunlun Mountains. According to the results in this paper, the basement of the basin, from the northern margin of the Qaidam Basin to the East Kunlun Mountains, has experienced at least three periods of intrusive activities of granitoids since the Early Paleozoic, i.e. the magmatisms occurring in the Late Cambrian (493.1±4.9 Ma), the Silurian (422.9±8.0 Ma-420.4±4.6 Ma) and the Late Permian-Middle Triassic (257.8±4.0 Ma-228.8±1.5 Ma), respectively. Among them, the Late Permian - Middle Triassic granitoids form the main components of the basement of the basin. The statistics of dated zircons in this paper shows the intrusive magmatic activities in the basement of the basin have three peak ages of 244 Ma (main), 418 Ma, and 493 Ma respectively. The dating results reveal that the Early Paleozoic magmatism of granitoids mainly occurred on the northern margin of the Qaidam Basin and the southern margin of the Qilian Mountains, with only weak indications in the East Kunlun Mountains. However, the distribution of Permo-Triassic (P-T) granitoids occupied across the whole basement of the eastern Qaidam Basin from the southern margin of the Qilian Mountains to the East Kunlun Mountains. An integrated analysis of the age distribution of P-T granitoids in the Qaidam Basin and its surrounding mountains shows that the earliest P-T magmatism (293.6-270 Ma) occurred in the northwestern part of the basin and expanded eastwards and southwards, resulting in the P-T intrusive magmatism that ran through the whole basin basement. As the Cenozoic basement thrust system developed in the eastern Qaidam Basin, the nearly N-S-trending shortening and deformation in the basement of the basin tended to intensify from west to east, which went contrary to the distribution trend of N-S-trending shortening and deformation in the Cenozoic cover of the basin, reflecting that there was a transformation of shortening and thickening of Cenozoic crust between the eastern and western parts of the Qaidam Basin, i.e., the crustal shortening of eastern Qaidam was dominated by the basement deformation (triggered at the middle and lower crust), whereas that of western Qaidam was mainly by folding and thrusting of the sedimentary cover (the upper crust).  相似文献   

15.
Geologists agree that the collision of the Indian and Asian plates caused uplift of the Tibet Plateau.However,controversy still exists regarding the modes and mechanisms of the Tibetan Plateau uplift.Geology has recorded this uplift well in the Qaidam Basin.This paper analyzes the tectonic and sedimentary evolution of the western Qaidam Basin using sub-surface seismic and drill data. The Cenozoic intensity and history of deformation in the Qaidam Basin have been reconstructed based on the tectonic developments,faults growth index,sedimentary facies variations,and the migration of the depositional depressions.The changes in the sedimentary facies show that lakes in the western Qaidam Basin had gone from inflow to still water deposition to withdrawal.Tectonic movements controlled deposition in various depressions,and the depressions gradually shifted southeastward.In addition,the morphology of the surface structures in the western Qaidam Basin shows that the Cenozoic tectonic movements controlled the evolution of the Basin and divided it into(a) the southern fault terrace zone, (b) a central Yingxiongling orogenic belt,and(c) the northern fold-thrust belt;divided by the XI fault (Youshi fault) and Youbei fault,respectively.The field data indicate that the western Qaidam Basin formed in a Cenozoic compressive tectonic environment caused by the India—Asia plate collision. Further,the Basin experienced two phases of intensive tectonic deformation.The first phase occurred during the Middle Eocene—Early Miocene(Xia Ganchaigou Fm.and Shang Ganchaigou Fm.,43.8—22 Ma),and peaked in the Early Oligocene(Upper Xia Ganchaigou Fm.,31.5 Ma).The second phase occurred between the Middle Miocene and the Present(Shang Youshashan Fm.and Qigequan Fm., 14.9—0 Ma),and was stronger than the first phase.The tectonic—sedimentary evolution and the orientation of surface structures in the western Qaidam Basin resulted from the Tibetan Plateau uplift,and recorded the periodic northward growth of the Plateau.Recognizing this early tectonic—sedimentary evolution supports the previous conclusion that northern Tibet responded to the collision between India and Asia shortly after its initiation.However,the current results reveal that northern Tibet also experienced another phase of uplift during the late Neogene.The effects of these two stages of tectonic activity combined to produce the current Tibetan Plateau.  相似文献   

16.
测试并分析了柴北缘各油气田的14个天然气样品的氦、氩稀有气体同位素比值,并进行了气源对比。研究发现,柴北缘天然气40Ar/36Ar值分布在951~1712,平均1098,多数样品40Ar/36Ar较通常认为源于侏罗系的天然气40Ar/36Ar明显偏高,研究认为本区不存在幔源高40Ar/36Ar流体的介入,储层年代效应也不可能造成天然气40Ar/36Ar明显偏高,因此柴北缘天然气40Ar/36Ar明显偏高,主要是由于源岩年代积累效应引起的。据估算,气源岩年龄分布范围为164.7~460.8Ma,平均为345.1Ma,可能多数来源于石炭系。这一认识得到了柴北缘广泛分布有石炭系源岩和已发现源于石炭系原油的支持。柴北缘石炭系天然气的发现预示了柴北缘石炭系是一个新的油气勘探层系,从而拓展了柴北缘天然气勘探领域。  相似文献   

17.
山间盆地中的碎屑沉积是周围山脉隆升信息的记录载体。本文对柴达木盆地中北部大红沟剖面砂岩中的碎屑含量进行了详细的分析。结果显示在34~8.5 Ma大红沟剖面的物源区性质没有发生改变,均为前陆隆升物源(foreland uplift provenance)。但是,砂岩中的石英、长石、岩屑含量均呈现了两阶段的演化特征,在12 Ma发生了快速的大幅变化。这些现象与以前通过沉积学、沉积速率、磁化率等分析获得的结果是一致的。成因上,这可能与12 Ma大红沟剖面北部的柴北缘褶皱逆冲带的构造复活有关。  相似文献   

18.
The Qaidam Basin is the one of the three major petroliferous basins in northeastern Tibetan Plateau, which has experienced multiphase superimposition and transformation. The study of thermal history not only plays an important role on revealing the tectonic origin of the Qaidam Basin and the forming mechanism and uplift history of the Tibetan Plateau,but also can provide scientific evidence for the assessment of oil and gas resources. This work used balanced cross-section technique and apatite fission track ages with modeling of fission track length distribution to infer that the eastern Qaidam Basin has experienced significant tectonic movement in the Early Jurassic movement(~200 Ma), which caused the carboniferous uplift and denudation, the geological movement in the Late Cretaceous, characterized by early stretching and late northeast-southwest extrusion; the Himalayan movement in multi-stage development in eastern Qaidam Basin, which can be divided into the early Himalayan movement(41.1–33.6 Ma) and the late Himalayan movement(9.6–7.1 Ma, 2.9–1.8 Ma), and large-scale orogeny caused pre-existing faults reactivated in late Himalayan movement. On the basis of burial history reconstruction, the thermal history of eastern Qaidam Basin was restored. The result shows that the thermal history in eastern Qaidam Basin shows slow cooling characteristics; the paleo-geothermal gradient of eastern Qaidam Basin was 38–41.5℃/km, with an average value of 39.0℃/km in the Late Paleozoic, 29–35.2℃/km, with an average value of 33.0℃/km in the Early Paleogene; the geothermal gradient of the Qaidam Basin increased in the Late Paleogene, which was similar to the present geothermal gradient in the Late Neogene. The characteristics of the tectono-thermal evolution since Paleozoic in the eastern Qaidam Basin are mainly controlled by magmatic thermal events in the study area.  相似文献   

19.
Cenozoic climatic and environmental changes in the arid Asian interior, and their possible relations with global climatic changes and the Tibetan Plateau uplift, have been intensively investigated and debated over past decades. Here we present 40-Myr (million years)-long n-alkane records from a continuous Cenozoic sediment sequence in the Dahonggou Section, Qaidam Basin, northern Tibetan Plateau, to infer environmental changes in the northern basin. A set of n-alkane indexes, including ACL, CPI and Paq, vary substantially and consistently throughout the records, which are interpreted to reflect relative contributions from terrestrial vascular plants vs. aquatic macrophytes, and thus indicate depositional environments. ACL values vary between 21 and 30; CP1 values range from 1.0 to 8.0; and Paq values change from 〈0.1 to 0.8 over the past 40-Myr. We have roughly identified two periods, at 25.8-21.0 Ma (million years ago) and 13.0-17.5 Ma, with higher ACL and CPI and lower Paq values indicating predominant lacustrine environments. Lower ACL and CPI values, together with higher Paq values, occurred at 〉25.8 Ma, 17.5-21.0 Ma, and 〈13.0 Ma, corresponding to alluvial fan/river deltaic deposits and shallow lacustrine settings, consistent with the observed features in sedimentological facies. The inferred Cenozoic environmental changes in the northern Qaidam Basin appear to correspond to global climatic changes.  相似文献   

20.
王瑜  万景林  李齐  王非  王二七 《地质学报》2002,76(2):191-198
阿尔金山北段阿克塞—当金山口一带的裂变径迹测年证据表明,该地区于9~7 Ma以来发生过快速抬升和剥蚀,并且一直持续形成了现今所见的阿尔金山。新生代以来至少经历了三次抬升:早期43.6~24.3Ma、中期19.6~13.6 Ma、晚期9~7 Ma。抬升速率先缓慢、后相对快速,9~7 Ma以来的抬升速率为0.94 mm/a。晚期的构造拾升可能与阿尔金断裂带左行走滑活动有关,而与相邻的柴达木盆地北缘地区的构造抬升并不一致。  相似文献   

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