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Organoporosity Evaluation of Shale: A Case Study of the Lower Silurian Longmaxi Shale in Southeast Chongqing China

机译:页岩有机孔隙度评价-以重庆东南地区下志留统龙马溪组页岩为例

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摘要

The organopores play an important role in determining total volume of hydrocarbons in shale gas reservoir. The Lower Silurian Longmaxi Shale in southeast Chongqing was selected as a case to confirm the contribution of organopores (microscale and nanoscale pores within organic matters in shale) formed by hydrocarbon generation to total volume of hydrocarbons in shale gas reservoir. Using the material balance principle combined with chemical kinetics methods, an evaluation model of organoporosity for shale gas reservoirs was established. The results indicate that there are four important model parameters to consider when evaluating organoporosity in shale: the original organic carbon (w(TOC0)), the original hydrogen index (I H0), the transformation ratio of generated hydrocarbon (F(R o)), and the organopore correction coefficient (C). The organoporosity of the Lower Silurian Longmaxi Shale in the Py1 well is from 0.20 to 2.76%, and the average value is 1.25%. The organoporosity variation trends and the residual organic carbon of Longmaxi Shale are consistent in section. The residual organic carbon is indicative of the relative levels of organoporosity, while the samples are in the same shale reservoirs with similar buried depths.
机译:有机孔隙在确定页岩气储层中碳氢化合物的总量方面起着重要作用。选择重庆东南部下志留统龙马溪组页岩为例,以证实由烃类生成形成的有机孔隙(页岩有机质内的微米级和纳米级孔隙)对页岩气藏中烃类总量的贡献。利用物质平衡原理,结合化学动力学方法,建立了页岩气储层有机孔隙度评价模型。结果表明,评价页岩有机孔隙度时要考虑四个重要的模型参数:原始有机碳(w(TOC0)),原始氢指数(I H0),生成烃的转化率(F(R o)) )和有机孔校正系数(C)。 Py1井中下志留统龙马溪组页岩的有机孔隙度为0.20至2.76%,平均值为1.25%。龙马溪组页岩的有机孔隙度变化趋势和残余有机碳在剖面上是一致的。残留的有机碳表示有机孔隙度的相对水平,而样品位于具有相似埋深的相同页岩储层中。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 893520
  • 总页数 9
  • 原文格式 PDF
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  • 入库时间 2022-08-21 11:18:00

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