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31.
PEI FangRegional Geological Survey Party Henan Bureau of Geology Mineral Exploration Development Pingdingshan Henan 《《地质学报》英文版》2000,74(2):137-142
The Ordovician conodont faunal provinces were previously divided into the Midcontinent and Atlantic Faunal Regions situated respectively in low and high latitudes, where warm- and cold-water type conodont faunas flourished respectively. According to the international correlation this paper proposes the third Ordovician conodont faunal region-Qinling Faunal Region, in which cold-water conodont faunas were well developed in the Early to middle Middle Ordovician and warm-water conodont faunas were well developed in the late Middle and Late Ordovician, indicating that the Qinling Region was situated in high latitudes earlier and in low latitudes later. The origin was only due to plate movement In the Qinling Region the time interval of the change of the conodont fauna from the cold- to warm-water type was 4 Ma (from 474 to 470 Ma), during which the fauna geographically spanned 40° of latitudes, with a movement velocity of nearly 1.12 m/a, indicating that the high-latitude plates were divorced and reduced i 相似文献
32.
摘 要 结构逻辑法是一种提取航空物探局部弱信息的新的解释方法。在介绍该方法原理的
基础上探讨了利用这种方法提取航空物探局部弱信息的效果及其在矿产资源快速勘查评价
中的作用。 相似文献
33.
东北地区前中生代构造演化及其与晚中生代盆地发育的关系 总被引:5,自引:1,他引:5
摘 要 东北地区前中生代构造演化可大致分为如下阶段:(1) 中、新元古代阶段;(2) 早古
生代加里东阶段;(3) 泥盆纪—早石炭世早华力西阶段;(4) 晚石炭世—三叠纪晚华力西—印
支阶段。多旋回构造演化使该区形成由多期褶皱带和多中间或边缘地块组成的 “镶嵌构造
区”并为晚中生代大型含油气盆地的发育奠定了基础。 相似文献
34.
晋南地穹列煤层气赋存区构造应力分析 总被引:2,自引:0,他引:2
根据晋南地穹列构造型相分析,恢复了4期应力场:①地洼初动期(印支期)近S-N水平挤压;②地洼激烈期(燕山期)NWW-SEE水平挤压;③地洼余动期(喜山早期)NNE-SSW水平挤压;④地洼余动期(喜山中期)NW-SE、NWW-SEE近水平伸展。其现代构造应力场以NW-SE向伸展应力场为主,但在沁水地穹则表现为NEE-SWW向近水平挤压应力场。有限元模拟分析证实:此局部挤压应力场的动力来源于挽近地质时期太行山和霍山的隆起与抬升,临汾地洼和太原地洼中的伸展应力场则与地洼壳体下部慢源物质逸散所导致的侧向拉伸有关。区内应力降的分布特点与晋南地穹列断裂构造发育程度具有良好的对应相关性,在高应力降区,单位体积煤层气含量显著高于其它地区。模拟主应力差等值线图中两个高主应力差值区恰好与东部沁水地穹中两个高含气量区相对应,充分说明地洼余动期构造应力场中高压应力区是煤层气富集的有利地区。 相似文献
35.
论述了不同的地质构造因素对坑透的影响,总结了不同形态坑透综合曲线所反映的构造特征,并就资料解释谈了几点体会. 相似文献
36.
The analysis of sand samples by x-ray fluorescent spectroscopy (XRF) gives the ratio of the geochemical elements to construct the sand samples. The x-ray analysis therefore shows the geochemical characteristics of sand in the sampled area. In this study, sand is sampled on coasts and rivers of the Noto Peninsula to determine the geochemical elements and to show the geological characteristics that occur, especially iron and calcium. The experiments show the effect of rivers and Kotogahama beach on iron and calcium, respectively. Applying the method of ratio matching to the measured data of the geochemical elements, the direction of movement of sand on the coast is determined by considering the correlation matrix and the ratio of geochemical elements between sand samples at two locations. The predominant longshore direction movement of sand offshore in the study area is from south to north. Sand in rivers is not directly transported to adjacent beaches; however, offshore sand is transported to beaches. The estimated direction of movement of sand longshore near coastal structures agrees with observations. The proposed method to predict the direction of movement of sand gives the correct one in comparison with the observed data in rivers. 相似文献
37.
燕山地区喜马拉雅期地壳运动划分及表现特征 总被引:4,自引:0,他引:4
摘要:在全面总结燕山地区新生代沉积相和厚度分析、地貌类型及特征、新生代岩浆活动、活动构造类型及特征、延(庆)涿(鹿)地堑盆地及其构造演化、地震地质分析以及大量的同位素年龄测试结果基础上,结合前人对邻区地壳运动划分的意见,系统地将燕山地区喜马拉雅期地壳运动划分为两期、三幕和三亚幕,为我国东部地区建立了一个比较完整的新生代地壳运动年表。 相似文献
38.
太阳系(携带地球)围绕银河系银心依椭圆形轨道公转.旋行1周,地球与银心之间有两次处于近距离,两次处于远距离.在靠近时两者之间引力增大,导致地仅柔流物质发生涨潮,远离时引力减小,地幔潮落.地幔的潮汐作用势必引起其上的固体地壳发生破裂、变形、运移和碰撞,即地壳构造运动.由于太阳公转具有200Ma年的周期性,故而地壳运动同样也具有与此相一致的周期性和等时性.因而说地幔的潮汐是导致地壳发生构造运动的主要原因. 相似文献
39.
40.
The earliest decipherable record of the Dharwar tectonic province is left in the 3.3 Ga old gneissic pebbles in some conglomerates
of the Dharwar Group, in addition to the 3.3–3.4 Ga old gneisses in some areas. A sialic crust as the basement for Dharwar
sedimentation is also indicated by the presence of quartz schists and quartzites throughout the Dharwar succession. Clean
quartzites and orthoquartzite-carbonate association in the lower part of the Dharwar sequence point to relatively stable platform
and shelf conditions. This is succeeded by sedimentation in a rapidly subsiding trough as indicated by the turbidite-volcanic
rock association. Although conglomerates in some places point to an erosional surface at the contact between the gneisses
and the Dharwar supracrustal rocks, extensive remobilization of the basement during the deformation of the cover rocks has
largely blurred this interface. This has also resulted in accordant style and sequence of structures in the basement and cover
rocks in a major part of the Dharwar tectonic province. Isoclinal folds with attendant axial planar schistosity, coaxial open
folds, followed in turn by non-coaxial upright folds on axial planes striking nearly N-S, are decipherable both in the “basement”
gneisses and the schistose cover rocks. The imprint of this sequence of superposed deformation is registered in some of the
charnockitic terranes also, particularly in the Biligirirangan Hills, Shivasamudram and Arakalgud areas. The Closepet Granite,
with alignment of feldspar megacrysts parallel to the axial planes of the latest folds in the adjacent schistose rocks, together
with discrete veins of Closepet Granite affinity emplaced parallel to the axial planes of late folds in the Peninsular Gneiss
enclaves, suggest that this granite is late-tectonic with reference to the last deformation in the Dharwar tectonic province.
Enclaves of tonalite and migmatized amphibolite a few metres across, with a fabric athwart to and overprinted by the earliest
structures traceable in the supracrustal rocks as well as in a major part of the Peninsular Gneiss, point to at least one
deformation, an episode of migmatization and one metamorphic event preceding the first folding in the Dharwar sequence. This
record of pre-Dharwar deformation and metamorphism is corroborated also by the pebbles of gneisses and schists in the conglomerates
of the Dharwar Group.
Volcanic rocks within the Dharwar succession as well as some of the components of the Peninsular Gneiss give ages of about
3.0 Ga. A still younger age of about 2.6 Ga is recorded in some volcanic rocks of the Dharwar sequence, a part of the Peninsular
Gneiss, Closepet Granite and some charnockites. These, together with the 3.3 Ga old gneisses and 3.4 Ga old ages of zircons
in some charnockites, furnish evidence for three major thermal events during the 700 million year history of the Archaean
Dharwar tectonic province. 相似文献