Genesis and Related Reservoir Development Model of Ordovician Dolomite in Shuntogol Area, Tarim Basin

IF 2.2 4区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Minerals Pub Date : 2024-05-25 DOI:10.3390/min14060545
Liangxuanzi Zhong, Leli Cheng, Heng Fu, Shaoze Zhao, Xiaobin Ye, Yidong Ding, Yin Senlin
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Abstract

The Ordovician thick dolostone in Shuntogol area of the Tarim Basin has the potential to form a large-scale reservoir, but its genesis and reservoir development model are still unclear. Starting from a sedimentary sequence, this study takes a batch of dolostone samples obtained from new drilling cores in recent years as the research object. On the basis of core observation and thin section identification, trace elements, cathodoluminescence, carbon and oxygen isotopes, rare earth elements, and X-ray diffraction order degree tests were carried out to discuss the origin of the dolomite and summarize the development model of the dolostone reservoir. The analysis results show that the Ordovician dolomite in the study area had a good crystalline shape, large thickness, high Fe and Mn values, and mostly showed bright red light or bright orange–red light under cathode rays. The ratio of δ18O values to seawater values at the same time showed a negative bias; the δCe values were negative anomalies, the δEu values were positive anomalies, and the order degree was high. This indicates that the dolomitization process occurred in a relatively closed diagenetic environment. The Ordovician carbonate rocks in the study area were low-lying during the sedimentary period, and with the rise of sea level, the open platform facies continued to develop. When the Middle and Lower Ordovician series entered the burial stage, the main hydrocarbon source rocks of the lower Cambrian Series entered the oil generation peak, and the resulting formation overpressure provided the dynamic source for the upward migration of the lower magnesium-rich fluid, and the dolomitization fluid entered the karst pore system in the target layer to produce all the dolomitization. This set of dolostone reservoirs is large in scale and can be used as a favorable substitute area for deep carbonate exploration for continuous study.
塔里木盆地顺托戈尔地区奥陶系白云岩成因及相关储层开发模型
塔里木盆地顺托戈尔地区奥陶系厚白云岩具有形成大型储层的潜力,但其成因和储层发育模式尚不清楚。本研究从沉积序列入手,以近年来新钻探岩心获得的一批白云岩样品为研究对象。在岩心观察和薄片鉴定的基础上,进行了微量元素、阴极发光、碳氧同位素、稀土元素和 X 射线衍射阶度测试,探讨了白云岩的成因,总结了白云岩储层的发育模式。分析结果表明,研究区奥陶系白云岩晶形好,厚度大,铁、锰值高,在阴极射线下多呈亮红光或亮橙红色。δ18O值与同期海水值的比值呈负偏态,δCe值呈负异常,δEu值呈正异常,阶次较高。这表明白云石化过程发生在一个相对封闭的成岩环境中。研究区的奥陶纪碳酸盐岩在沉积时期地势较低,随着海平面的上升,开阔的平台面继续发育。中、下奥陶系进入埋藏期后,下寒武系主要烃源岩进入生油高峰期,产生的地层超压为下部富镁流体的上移提供了动力源,白云岩化流体进入目的层岩溶孔隙系统,产生全部白云岩化。该组白云岩储层规模较大,可作为深部碳酸盐岩勘探的有利替代区进行连续研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Minerals
Minerals MINERALOGY-MINING & MINERAL PROCESSING
CiteScore
4.10
自引率
20.00%
发文量
1351
审稿时长
19.04 days
期刊介绍: Minerals (ISSN 2075-163X) is an international open access journal that covers the broad field of mineralogy, economic mineral resources, mineral exploration, innovative mining techniques and advances in mineral processing. It publishes reviews, regular research papers and short notes. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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