首页> 外文会议>SPWLA Annual Logging Symposium >FLOW UNIT DETERMINATION THROUGH LITHOFACIES IDENTIFICATION AND ITS RELATIONSHIP WITH PETROPHYSICAL AND DIAGENETIC PROPERTIES IN EARLY EOCENE RESERVOIRS, CHICONTEPEC BASIN, MEXICO
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FLOW UNIT DETERMINATION THROUGH LITHOFACIES IDENTIFICATION AND ITS RELATIONSHIP WITH PETROPHYSICAL AND DIAGENETIC PROPERTIES IN EARLY EOCENE RESERVOIRS, CHICONTEPEC BASIN, MEXICO

机译:流动单位测定通过岩散鉴定及其与早期泌乳省储层岩石物理及成岩性质的关系,墨西哥曲阜普(Chicontepec Bourin)

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The use of high technology well logs with the enough resolution to obtain in-situ information of the Upper Paleocene -^sLower Eocene clastic hydrocarbon reservoirs at the Chicontepec Basin, in addition to the laboratory core analysis of conventional core samples, has been of crucial importance in the identification, classification and discrimination of the different flow units at well scale and in a specific field. The greater understanding of the dynamic and rheological processes that take place in the gravitational flows of underwater sediments (classical and hyperpycnal turbidites), gained due to the direct observation of the outcrops as well as the experience carried out in the laboratory flume tank with sedimentladen stream flows (experimental short-lived and quasisteady turbidity currents), has enabled us to determine the specific occurrence of the different types of expected lithofacies in basin ward direction: from the more channelized zones to the most splayed zones (lobes). In this way, we can understand the facies tract to be expected for each event at field scale and for a particular reservoir. Thus the facies analysis bears a highly predictive character which was previously underestimated in the classical sedimentology studies. We show that there is a specific relationship between the type of sedimentary lithofacies and its primary petrophysical property. Obviously the diagenetic processes and the degree of compaction can act against or on in favor of this initial relationship. Thus, any study of primary lithofacies should necessarily involve its subsequent diagenetic history, since the final petrophysics quality of the determined lithofacies will depend among other variables on: the type and mineralogy of the source, the confining stress, the packing degree as a function of the sedimentary structure as well as on the primary sediments; including the sediment sorting as a direct consequence of the flow efficiency and segregation. We present a study case in Agua Fria field from Chicontepec Basin in which we analyzed the relationships among lithofacies, subsequent diagenesis and final petrophysical results, that can be used as an example of flow unit determination with a great detail at both well and field scales, and which is recommended to be applied also in other analogous areas of the same basin.
机译:使用高科技井测井具有足够的分辨率,以获得曲线普通盆地上古植物的原位信息,除了常规核心样本的实验室核心分析外,还具有至关重要的重要性在井规模和特定领域的识别,分类和辨别不同流动单元。由于直接观察露头以及具有沉积物的水箱中的实验室水箱中进行的经验,因此对在水下沉积物(古典和繁殖的浊度浊度)中进行的动态和流变过程的更大了解流(实验短命和quasisteady浊流),使我们能够确定在盆病房方向上的不同类型的预期岩相的具体发生:从信道更多的区域,以最张开区域(波瓣)。通过这种方式,我们可以理解各个事件在现场规模和特定水库的每个事件都有预期的。因此,面部分析具有高度预测性的性质,以前在古典沉积学研究中被低估了。我们表明,沉积岩型和原发性岩石物理性质之间存在特定的关系。显然,成岩工艺和压实程度可以反对或基于这种初始关系。因此,任何对原发性锂缺陷的研究都必须涉及其随后的成岩病历史,因为所确定的岩石缩放的最终岩石物理学质量将取决于:源的类型和矿物质,压力,包装程度为函数沉积结构以及初级沉积物;包括沉积物分类作为流动效率和分离的直接后果。我们在Chicontepec盆地的Agua Fria Field中提出了一项研究案例,其中我们分析了岩型,随后的成岩作用和最终岩石物理结果之间的关系,这可以用作流动单元测定的示例,并在两个井和场尺度上具有很好的细节。建议也适用于同一盆地的其他类似地区。

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