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101.
内蒙古西部狼山地区的构造归属争议较大,一直以来没有直接证据证明狼山地区属于华北陆块。本文对内蒙古狼山巴音前达门地区(含石榴子石)黑云斜长片麻岩进行了年代学研究,利用LA- ICP- MS方法进行U- Pb同位素测年,所测试锆石均为岩浆锆石,锆石年龄为1946±9 Ma和1940±12 Ma,代表其原岩的形成年龄,说明狼山地区存在古元古代晚期岩浆作用。从锆石Hf同位素来看,εHf(t) 从-1.3~6.4,其Hf同位素源区既有当时华北克拉通基底物质,又有地幔的贡献,2442Ma的模式年龄指示源岩来源于早元古代地壳增生事件,可能与华北克拉通基底的形成有关。这进一步表明狼山地区同华北陆块中部地区一样,该地区存在有早元古代岩体。对宝音图群碎屑锆石的研究同样说明了狼山地区宝音图群与华北克拉通更具亲缘性,狼山地区在构造属性上可能属于华北陆块一部分。  相似文献   
102.
作为中国北方主要产煤铀盆地之一,松辽盆地西南缘开鲁盆地一直是铀矿找矿工作的重点区域。基于开鲁盆地陆西凹陷绍根地区煤田勘探过程中发现的大量伽马异常信息,对该区展开煤田资料的铀矿二次开发,并钻探发现了铀矿化显示。在此背景下,对绍根地区早白垩世裂陷期晚期至今沉积地层展开地层精细对比划分、沉积环境和构造演化分析、铀成矿类型和赋矿规律探讨。综合分析认为:1)绍根地区自早白垩世阜新期以来发育阜新组、姚家组、嫩江组、四方台组和泰康组,泉头-青山口组、明水组缺失。2)绍根地区阜新期为断陷期末期深湖-湖沼相沉积,发育多层煤;之后受燕山运动影响,阜新期末发生构造反转,泉头-姚家期早期处于构造隆升的欠补偿时期,阜新组顶部遭受剥蚀,泉头-姚家早期未接受沉积;姚家晚期-嫩江期为热沉降坳陷阶段,发育冲积扇相和滨浅湖-半深湖相沉积;四方台期为挤压反转期,地层快速隆升,发育冲洪积扇沉积。3)嫩江组和四方台组为绍根地区主要赋矿层,其中嫩江组发育泥岩型铀矿体,四方台组发育砂岩型铀矿体。4)泥岩型铀矿体顺层呈中心向下凹的薄板状发育,为典型的同生沉积成岩成矿;砂岩型铀矿体呈板状,主要赋存于四方台组底部红褐色与灰绿色交界部位的灰绿色砂砾岩中,其成矿类型可能为潜水氧化型。上述成果认识与钱家店等邻区有较大差异,对绍根地区下一步的铀矿找矿工作具有较好的指导意义。  相似文献   
103.
采用逻辑回归模型和确定性系数CF建立概率模型,使用收集到的22个边坡实例,将重度、内聚力、坡角、坡高、内摩擦角和孔隙压力比六个影响因子作为自变量,边坡状态作为因变量,应用SPSS取不同的滑坡概率P与不滑坡概率1-P的比值的自然对数Z进行回归分析。将获得的滑坡概率拟合模型反馈到样本参数上,对比其误差,选取Z=±10时的函数模型对另外8组边坡进行验证,证明预测模型的合理性。  相似文献   
104.
近年来,RTG(Real Time Gipsy)技术的发展比较迅速,并且在一些行业中得到应用。本文阐述了GPS相对定位与RTG定位原理,并就GPS相对定位与RTG进行误差对比分析。根据行业标准与精度,对GPS相对定位与RTG在控制测量中联合作业的可行性进行探讨,提出联合作业的概念,主要为测绘人员布设控制网时提供参考,从而提高了工作效率,降低了项目成本。  相似文献   
105.
Predicting the future response of ice sheets to climate warming and rising global sea level is important but difficult. This is especially so when fast-flowing glaciers or ice streams, buffered by ice shelves, are grounded on beds below sea level. What happens when these ice shelves are removed? And how do the ice stream and the surrounding ice sheet respond to the abruptly altered boundary conditions? To address these questions and others we present new geological, geomorphological, geophysical and geochronological data from the ice-stream-dominated NW sector of the last British–Irish Ice Sheet (BIIS). The study area covers around 45 000 km2 of NW Scotland and the surrounding continental shelf. Alongside seabed geomorphological mapping and Quaternary sediment analysis, we use a suite of over 100 new absolute ages (including cosmogenic-nuclide exposure ages, optically stimulated luminescence ages and radiocarbon dates) collected from onshore and offshore, to build a sector-wide ice-sheet reconstruction combining all available evidence with Bayesian chronosequence modelling. Using this information we present a detailed assessment of ice-sheet advance/retreat history, and the glaciological connections between different areas of the NW BIIS sector, at different times during the last glacial cycle. The results show a highly dynamic, partly marine, partly terrestrial, ice-sheet sector undergoing large size variations in response to sub-millennial-scale climatic (Dansgaard–Oeschger) cycles over the last 45 000 years. Superimposed on these trends we identify internally driven instabilities, operating at higher frequency, conditioned by local topographic factors, tidewater dynamics and glaciological feedbacks during deglaciation. Specifically, our new evidence indicates extensive marine-terminating ice-sheet glaciation of the NW BIIS sector during Greenland Stadials 12 to 9 – prior to the main ‘Late Weichselian’ ice-sheet glaciation. After a period of restricted glaciation, in Greenland Interstadials 8 to 6, we find good evidence for rapid renewed ice-sheet build-up in NW Scotland, with the Minch ice-stream terminus reaching the continental shelf edge in Greenland Stadial 5, perhaps only briefly. Deglaciation of the NW sector took place in numerous stages. Several grounding-zone wedges and moraines on the mid- and inner continental shelf attest to significant stabilizations of the ice-sheet grounding line, or ice margin, during overall retreat in Greenland Stadials 3 and 2, and to the development of ice shelves. NW Lewis was the first substantial present-day land area to deglaciate, in the first half of Greenland Stadial 3 at a time of globally reduced sea-level c. 26 kabp , followed by Cape Wrath at c. 24 kabp. The topographic confinement of the Minch straits probably promoted ice-shelf development in early Greenland Stadial 2, providing the ice stream with additional support and buffering it somewhat from external drivers. However, c. 20–19 kabp , as the grounding-line migrated into shoreward deepening water, coinciding with a marked change in marine geology and bed strength, the ice stream became unstable. We find that, once underway, grounding-line retreat proceeded in an uninterrupted fashion with the rapid loss of fronting ice shelves – first in the west, then the east troughs – before eventual glacier stabilization at fjord mouths in NW Scotland by ~17 kabp. Around the same time, ~19–17 kabp , ice-sheet lobes readvanced into the East Minch – possibly a glaciological response to the marine-instability-triggered loss of adjacent ice stream (and/or ice shelf) support in the Minch trough. An independent ice cap on Lewis also experienced margin oscillations during mid-Greenland Stadial 2, with an ice-accumulation centre in West Lewis existing into the latter part of Heinrich Stadial 1. Final ice-sheet deglaciation of NW mainland Scotland was punctuated by at least one other coherent readvance at c. 15.5 kabp , before significant ice-mass losses thereafter. At the glacial termination, c. 14.5 kabp , glaciers fed outwash sediment to now-abandoned coastal deltas in NW mainland Scotland around the time of global Meltwater Pulse 1A. Overall, this work on the BIIS NW sector reconstructs a highly dynamic ice-sheet oscillating in extent and volume for much of the last 45 000 years. Periods of expansive ice-sheet glaciation dominated by ice-streaming were interspersed with periods of much more restricted ice-cap or tidewater/fjordic glaciation. Finally, this work indicates that the role of ice streams in ice-sheet evolution is complex but mechanistically important throughout the lifetime of an ice sheet – with ice streams contributing to the regulation of ice-sheet health but also to the acceleration of ice-sheet demise via marine ice-sheet instabilities.  相似文献   
106.
浅水三角洲沉积体系与储层岩石学特征   总被引:1,自引:1,他引:0  
浅水三角洲已经成为当前沉积学研究和油气勘探的重点领域,浅水三角洲常规和非常规砂岩储层中发现了丰富的油气资源。鄂尔多斯盆地中—古生界发育大型浅水三角洲沉积,结合岩芯、测井、分析化验等资料,对盆地西部地区山1—盒8段浅水三角洲的母岩特征、沉积充填、砂体展布与储层岩石学特征进行研究,为研究区常规砂岩储层和致密砂岩油气勘探提供地质依据。分析表明,研究区南部和北部砂岩重矿物组合相似,以锆石和白钛矿为主。综合La/Yb-REE与Dickinson三角图解、稀土元素配分模式和碎屑锆石定年分析认为,北部物源主要来自盆地西北部阿拉善古陆太古界和元古界花岗岩、片麻岩、石英砂岩,向南影响到陇东地区北部;南部物源主要来自盆地南部北秦岭地区太古界、元古界花岗岩、片麻岩和片岩,向北影响陇东地区中南部。山1段发育曲流河三角洲,盒8段发育辫状河三角洲,孤立型与垂向叠置型水下分支河道砂体是主要的砂体类型。盒8段沉积时期,古湖泊可能萎缩;南北物源形成的三角洲在研究区中部环县东南一带交汇混合。砂岩类型主要为岩屑质石英砂岩、石英砂岩和岩屑砂岩,结构成熟度中等—较差。砂岩成岩改造强烈,水—岩反应复杂,压实作用是储层致密化的主因,多期胶结作用使砂岩的孔喉结构变得十分复杂。孔隙类型以微米—纳米级的岩屑溶蚀孔、剩余粒间孔和高岭石晶间孔为主,整体上属于非常规致密砂岩储层。砂体分布与“甜点”预测是研究区致密油气勘探的关键。  相似文献   
107.
Tong  Xin  Illman  Walter A.  Berg  Steven J.  Luo  Ning 《Hydrogeology Journal》2021,29(5):1999-2000
Hydrogeology Journal - A Correction to this paper has been published: https://doi.org/10.1007/s10040-021-02351-x  相似文献   
108.
Turbidites from the Shiquanhe–Namco Ophiolite Mélange Zone(SNMZ) record critical information about the tectonic affinity of the SNMZ and the evolutionary history of the Meso-Tethys Ocean in Tibet.This paper reports sedimentologic,sandstone petrographic,zircon U-Pb geochronologic,and clastic rocks geochemical data of newly identified turbidites(Asa Formation) in the Asa Ophiolite Mélange.The youngest ages of detrital zircon from the turbiditic sandstone samples,together with ~115 Ma U-Pb concordant age from the tuff intercalation within the Asa Formation indicate an Early Cretaceous age.The sandstone mineral modal composition data show that the main component is quartz grains and the minor components are sedimentary and volcanic fragments,suggesting that the turbidites were mainly derived from a recycled orogen provenance with a minor addition of volcanic arc materials.The detrital U-Pb zircon ages of turbiditic sandstones yield main age populations of170–120 Ma,300–220 Ma,600–500 Ma,1000–700 Ma,1900–1500 Ma,and ~2500 Ma,similar to the ages of the Qiangtang Terrane(age peak of 600–500 Ma,1000–900 Ma,~1850 Ma and ~2500 Ma) and the accretionary complex in the Bangong–Nujiang Ophiolite Zone(BNMZ) rather than the age of the Central Lhasa Terrane(age peak of ~300 Ma,~550 Ma and ~1150 Ma).The mineral modal compositions,detrital U-Pb zircon ages,and geochemical data of clastic rocks suggest that the Asa Formation is composed of sediments primarily recycled from the Jurassic accretionary complex within the BNMZ with the secondary addition of intermediate-felsic island arc materials from the South Qiangtang Terrane.Based on our new results and previous studies,we infer that the SNMZ represents a part of the Meso-Tethys Suture Zone,rather than a southward tectonic klippe of the BNMZ or an isolated ophiolitic mélange zone within the Lhasa Terrane.The Meso-Tethys Suture Zone records the continuous evolutionary history of the northward subduction,accretion,arc-Lhasa collision,and Lhasa-Qiangtang collision of the Meso-Tethys Ocean from the Early Jurassic to the Early Cretaceous.  相似文献   
109.
通过对大兴安岭火山岩带中北部地区北岸林场一带中酸性火山岩进行地球化学、锆石U-Pb年代学特征研究,探讨其形成的年代及构造背景。LA-ICP-MS锆石U-Pb同位素测年表明,中酸性火山岩形成时代为(166±1) Ma,属于中侏罗世,岩性为粗面英安岩和粗安岩。在主量元素组成上,SiO_2含量为59.58%~68.34%,(Na_2O+K_2O)为7.78%~8.84%,K_2O/Na_2O值为0.73~0.82,MgO含量为0.75%~2.67%,Mg~#值为25.5~44.4,显示岩石相对富硅、富钠、低钾、碱含量偏高、镁含量偏低的特征。TAS分类图及铝饱和指数A/CNK(0.91~0.97)显示岩石具有准铝质偏碱性的特征。稀土元素总量中等,轻、重稀土分馏明显(La/Yb)_N=6.56~11.79,具有弱的Eu负异常(δEu=0.60~0.81);微量元素相对富集大离子亲石元素Rb、Th、U,贫高场强元素Nb、Ta、Hf、Ti。地质、地球化学分析表明中酸性火山岩为地壳物质部分熔融的产物。岩浆活动可能起源于早侏罗世蒙古—鄂霍茨克洋闭合过程中造山晚期构造环境,但在中侏罗世张性构造环境喷发成岩,提供了俯冲造山环境形成的岩浆在地壳中可能跨时、跨构造环境活动的范例。  相似文献   
110.
根据2005—2017年卫星遥感反演的太湖蓝藻水华信息,利用区域气象观测数据分析各类气象因子对太湖蓝藻深水华形成的影响,结果表明:①在日平均气温为0~35℃区间内会出现蓝藻聚集现象,其中最适宜气温区间为15.1~35℃,该区间内累计出现蓝藻水华的面积占比达90%、出现大面积蓝藻水华占比达93%;②在卫星观测到蓝藻前6h,平均风速为0.2~4.8m/s区间内能观测到蓝藻水华,其中最适宜的平均风速区间为0.5~3.4m/s,该区间内蓝藻水华累计出现次数占比达94.7%,大面积蓝藻水华主要出现在平均风速2.0m/s的情况下,占比89%;③降水总体上呈负效应,但在观测到有大面积蓝藻水华的情况下,前24h有小雨(10mm)的情形与总降水次数之比达88%,说明小雨的适度扰动有利于形成大面积蓝藻水华;④日照充足有利于蓝藻生长,但并非蓝藻水华形成的必要条件。在此基础上建立的多元回归综合气象指数模型,拟合结果较好,通过了0.001的显著性检验。  相似文献   
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