地学前缘 ›› 2015, Vol. 22 ›› Issue (6): 136-147.DOI: 10.13745/j.esf.2015.06.010

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准同时岩相古地理图的制作新方法

覃兆松,李坚,何伟相   

  1. 1. 江西省地质调查研究院, 江西 南昌 330030
    2. 江西省地质矿产勘查开发局 九〇二地质大队, 江西 新余 338000
  • 收稿日期:2014-11-24 修回日期:2015-02-04 出版日期:2015-11-15 发布日期:2015-11-25
  • 通讯作者: 李坚(1963—),男,高级工程师,主要从事地质矿产研究工作。E-mail:1125939506@qq.com
  • 作者简介:覃兆松(1940—),男,教授级高级工程师,主要从事沉积学和地层学研究工作。E-mail:409242686@qq.com
  • 基金资助:

    中国地质调查局项目“中国地质构造区划综合研究与区域地质调查综合集成”(中国区域地质志)(1212010911022);江西省科学技术委员会项目“江西省富有机质页岩发育区地质背景研究”(20124ABE02101)

A new method for making the quasisimultaneous lithofacies palaeogeographic map.

  1. 1. Jiangxi Institute of Geoloical Survery, Nanchang 330030, China
    2. No.902 Geological Team, Jiangxi Bureau of Exploration & Development of Geology and Mineral Resources, Xinyu 338000, China
  • Received:2014-11-24 Revised:2015-02-04 Online:2015-11-15 Published:2015-11-25

摘要:

本文以“层序地层学”理论为基础,运用“空间上相序的有序性”及“时间上环境变化的同步性”原理,解决了区域地层等时或准等时对比的问题,基本实现了用等时或准等时地层单元作为岩相古地理图的编图单位,克服了传统制作方法用不等时的岩石地层单位“组、段”为编图单位造成的岩相古地理图的“歪曲”及垂向沉积环境变化“掩盖”的弊病。“准同时岩相古地理图制作新方法”可分为单剖面层序地层柱状图、高分辨率层序地层柱状对比图、准同时岩相古地理系列图等3个研究阶段。同一海盆中,海平面升降是同步的,那么区域上相应的三级层序是等时的,其中以层序界面、首泛面、最大海泛面及海退面等物理界面划分出的低水位、海进、高水位及强迫性海退楔等体系域亦是等时的。因此,将区域上各单剖面柱状图中的上述相应的物理界面相连,就形成了研究区的等时对比格架图,然后对等时格架中的地层再进行进一步对比,形成对比图,在此基础上选取等时地层单位进行岩相古地理系列图的编制。笔者并以江西省中部萍乐坳陷西段乐平世早期岩相古地理研究成果实例做了进一步的阐述,通过“准同时岩相古地理图制作的新方法”,提高了等时对比精度,制作的岩相古地理系列图不但充分反映了该时期岩相古地理的纵横变化,而且清楚地反映出地壳运动与海平面升降的联合作用对沉积环境变化的控制,并将编图单位缩短到尽可能短的时间内,使古地理图精度更高、内容更丰富、更接近客观实际。

关键词: 江西省, 萍乐坳陷, 层序地层, 高分辨率层序地层对比, 准同时岩相古地理图

Abstract:

In this paper, on the basis of “sequence stratigraphy”, the principles of “spatial orderliness of facies sequence” and “temporal synchronism of environmental change” were applied to solving the problems of regional stratigraphic isochronal or quasiisochronal correlation. That the isochronal or quasiisochronal stratigraphic unit was adopted as the compilation unit of lithofacies paleogeographic maps was basically realized. Additionally, the drawbacks of the “distortion” of the lithofacies paleogeographic maps and the concealment of the change of vertical sedimentary environment caused by the nonisochronous lithostratigraphic units, i.e. “formation, member”, used in the traditional compilation, were overcome. The “new compilation method of quasisimultaneous lithofacies paleogeographic map” may be divided into three studying phases, i.e. single profile sequence stratigraphic column, highresolution sequence stratigraphic column correlation diagram and quasisimultaneous lithofacies paleogeographic series maps. In a marine basin, the sea level synchronously lifts; therefore, the corresponding threelevel sequences were isochronous in whole region. Also isochronous were the low water level, transgression, high water level, compulsive regression wedge and other system tracts, which were marked off by sequence boundary, first flooding surface, maximum flooding surface, regressive surface and other physical boundaries. For these reasons, the corresponding physical boundaries mentioned above in the single profile sequence stratigraphic column in the whole region may be linked together to form the isochronal correlation framework diagram of the studying area, to begin with. Then the strata in the isochronal framework would further be compared to form the correlation diagram. Finally, on the basis of the above work, the isochronous stratigraphic units were selected to compile the lithofacies paleogeographic series maps. The authors took as an example the research results of the early Lopingian lithofacies paleogeography of the west segment of the Pingle depression in central Jiangxi for further expounding. Accuracy of the isochronous correlation was improved after using the “new compilation method of quasisimultaneous lithofacies paleogeographic map”. The compiled lithofacies paleogeographic series maps fully reflected not only vertical and horizontal changes of lithofacies paleogeography in this period, but also the control of the sedimentary environment exerted by the combined effect of crustal movement and sea level eustacy. In addition, it shortened the map compilation units to the least possible, thus making the paleogeographic map more accurate, informative and practical.

Key words: Jiangxi Province, Pingle depression, sequence stratigraphy, highresolution sequence stratigraphic correlation, quasisimultaneous lithofacies paleogeographic map

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