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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Compositional variability in oils and formation waters from the Ayoluengo and Hontomín fields (Burgos, Spain). Implications for assessing biodegradation and reservoir compartmentalization
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Compositional variability in oils and formation waters from the Ayoluengo and Hontomín fields (Burgos, Spain). Implications for assessing biodegradation and reservoir compartmentalization

机译:Ayoluengo和Hontomín油田(西班牙布尔戈斯)的油和地层水中的成分变异性。对评估生物降解和储层分隔的意义

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摘要

The main scope of this work is the geochemical characterization of 12 crude oils and formation waters of the Ayoluengo oilfield (Basque-Cantabrian Basin, NW Spain) to delineate its reservoir compartmentalization. The Ayoluengo oil characteristics were also compared with data obtained from crude oil and formation water of the Hontomín-2 well located 25. km to the SE of Ayoluengo. The 13 Ayoluengo and Hontomín oil samples are very similar in composition, bulk properties and isotopic signature, indicating that these oils are genetically related. However, the Hontomín oil is more mature and it is slightly biodegraded, which suggests some differences in the reservoir environments. The molecular parameters of both oils confirm a marine origin related to a Liassic source rock, coincident with the occurrence of lateral facies changes along the Sedano sub-basin. On the other hand, the connate waters are analogous and both classified as chloride-calcium type. Given the complex nature of the sedimentology and structures of the reservoir, gas chromatographic fingerprints of the analyzed crude oils have been used to detect minor variations in composition that are indicative of reservoir compartmentalization.
机译:这项工作的主要范围是对Ayoluengo油田(西班牙西北部的巴斯克-坎塔布连盆地)的12种原油和地层水进行地球化学表征,以描述其储层划分。还将Ayoluengo油的特性与从距Ayoluengo东南25公里的Hontomín-2井的原油和地层水获得的数据进行了比较。 13个Ayoluengo和Hontomín油样品的成分,体积性质和同位素特征非常相似,表明这些油具有遗传相关性。但是,本托姆油更成熟,并且经过了生物降解,这表明储层环境存在一些差异。两种油的分子参数都证实了与Lisic烃源岩有关的海洋成因,这与沿Sedano子盆地发生的侧相变化相吻合。另一方面,原生水是类似的,并且都归为氯化钙类型。考虑到沉积学和储层结构的复杂性,已分析原油的气相色谱指纹图谱已用于检测组成的细微变化,这些变化指示了储层的划分。

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