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31.
新疆哈拉奇地区地球化学分区特征及地质意义 总被引:1,自引:0,他引:1
水系沉积物测量是勘查地球化学一种重要方法。随着勘查地球化学的深入发展,有关地球化学异常圈定的方法已成为人们关注的焦点。采用R型因子分析方法,对哈拉奇地区水系沉积物测量所取得的数据进行统计处理,提取了具有代表性的5种因子组合类型,同时以因子得分为综合指标,绘制了因子得分等值线图并制作了元素组合分区图。通过综合分析,地球化学分区图反映了不同地段中以相应的元素组合类型为主的地球化学异常及地质成因信息,同时与主要控矿因素的空间分布比较一致,为研究区地质找矿提供新方向。 相似文献
32.
基于事件的土地划拨时空数据库若干思考 总被引:19,自引:2,他引:17
业务化运行的图文办公系统给土地划拨时空数据库的设计提出了新的要求,即不但要记录时空地块状态的变化,还必须描述表达引起变化的原因(审批事件)与变化过程。本文针对这一问题分析了土地提事件及其与时空地块状态因果关系的方法,并借鉴主动数据库领域的研究成果对土地划拨事件及其发生过程进行形式化表达。该方法还为此类系统流程控制的实现提供了新的思路,并为其数据库CASE工具的设计与实现提供了基础。 相似文献
33.
黄土高原一个连续的晚新生代剖面及其划分与对比 总被引:14,自引:3,他引:14
陕西旬邑地区一个地层厚约 2 30 m的晚新生代剖面 ,全为土状堆积。岩性划分、古地磁测年、古生物研究及其他一些手段的分析测定表明 ,该剖面记录了距今 6 .8Ma到现代的沉积 ,其中第四系厚 141.2 m,全为黄土—古土壤沉积序列 ;新近系厚约 90 m,全为红土沉积 ,底部不整合面之上有 6— 7m红土层被覆盖 ,无法取样 ,其上实测厚度83.4m,将每层红土层及紧接其下的钙质结核层称为一个成土—成壤组合 ,新近系约含 80个明显的成土—成壤组合。 N/Q岩性界线在剖面深度的 141.2 m处 ,但古地磁 M/G界线在相当于剖面深度的 137.6 m处 ,即 L43 顶界之上0 .4m处 ,古地磁极性的转移滞后于岩性的变化。多层生物化石的发现对各段地层时代的确定及古气候环境的分析起了积极的作用 相似文献
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36.
It has long been debated that the Dabie orogenic belt belongs to the North China or Yangtze craton. In recent years, eastern
China has been suggested, based on the Pb isotopic compositions of Phanerozoic ore and Mesozoic granitoid K-feldspar (revealing
the crust Pb) in combination with Meso-Cenozoic basalts (revealing the mantle Pb), being divided into the North China and
Yangtze Pb isotopic provinces, where the crust and mantle of the Yangtze craton are characterized by more radiogenic Pb. In
this sense, previous researchers suggested that the pro-EW-trending Dabie crogenic belt with less radiogenic Pb in the crust
was part of the North China craton. In this paper, however, the Late Cretaceous basalts in the central and southern parts
of the Dabie orogenic belt are characterized by some more radiogenic Pb (206Pb/204Pb=17.936−18.349,207Pb/204Pb=15.500−15.688,208Pb/204Pb=38.399−38.775) and a unique U-Th-Pb trace element system similar to those of the Yangtze craton, showing that the Mesozoic
mantle is of the Yangtze type. In addition, the decoupled Pb isotopic compositions between crust and mantle were considerably
derived from their rheological inhomogeneity, implying a complicated evolution of the Dabie orogenic belt.
The study was funded by the National Natural Science Foundation of China (No. 49794043) and the Open Laboratory of Constitution,
Interaction and Dynamics of the Crust-Mantle System, China. 相似文献
37.
球面菱形格网因其几何结构简单、方向一致、径向对称等特性,在空间操作和数据集成方面有着广泛的应用。本文基于“纬线环法”构建了球面四元三角剖分模型,分析了该方法带来的格网单元面积变形及其位置分布,发现该模型的三角单元面积变形具有“锯齿状”分布特征,即相邻的上下两个格网单元总是一大一小交替分布,而且变形方向一致。据此通过合并上下两个相邻三角形格网单元,构建了一种近似等面积的菱形剖分模型。结果表明,相比较于其他球面菱形格网生成方法,该方法计算简单、格网单元方向一致(长轴沿南北向分布);同时,格网单元的面积变形更小、分布更加均匀。 相似文献
38.
MIKE WALKER Martin J. Head John Lowe Max Berkelhammer Svante Bj
rck Hai Cheng Les C. Cwynar David Fisher Vasileios Gkinis Antony Long Rewi Newnham Sune Olander Rasmussen Harvey Weiss 《第四纪科学杂志》2019,34(3):173-186
The Holocene, which currently spans ~11 700 years, is the shortest series/epoch within the geological time scale (GTS), yet it contains a rich archive of evidence in stratigraphical contexts that are frequently continuous and often preserved at high levels of resolution. On 14 June 2018, the Executive Committee of the International Union of Geological Sciences formally ratified a proposal to subdivide the Holocene into three stages/ages, along with their equivalent subseries/subepochs, each anchored by a Global boundary Stratotype Section and Point (GSSP). The new stages are the Greenlandian (Lower/Early Holocene Subseries/Subepoch) with its GSSP in the Greenland NGRIP2 ice core and dated at 11 700 a b2k (before 2000 CE); the Northgrippian (Middle Holocene Subseries/Subepoch) with its GSSP in the Greenland NGRIP1 ice core and dated at 8236 a b2k; and the Meghalayan (Upper/Late Holocene Subseries/Subepoch) with its GSSP in a speleothem from Mawmluh Cave, north‐eastern India, with a date of 4250 a b2k. We explain the nomenclature of the new divisions, describe the procedures involved in the ratification process, designate auxiliary stratotypes to support the GSSPs and consider the implications of the subdivision for defining the Anthropocene as a new unit within the GTS. 相似文献
39.
A. Yu. Rozanov V. V. Khomentovsky Yu. Ya. Shabanov G. A. Karlova A. I. Varlamov V. A. Luchinina T. V. Pegel’ Yu. E. Demidenko P. Yu. Parkhaev I. V. Korovnikov N. A. Skorlotova 《Stratigraphy and Geological Correlation》2008,16(1):1-19
It was a serious mistake when subdivision stratotypes had been disposed of in practice of constructing the General stratigraphic scale, because they cannot be substituted by the boundary stratotypes. A subdivision stratotype and respective GSSP are complementary parts characterizing any stratigraphic unit. The best candidates for stage stratotypes of the Lower Cambrian are certainly sections of the Lena-Aldan region in the Siberian platform, which have been studied in detail during many years, are well exposed, and contain abundant and diverse fossils, being insignificantly disturbed by tectonic dislocations. Nomenclature, stage and boundary stratotypes of the Siberian standard can be successfully used therefore for stratigraphic subdivision of the Lower Cambrian. 相似文献
40.