首页> 外文期刊>AAPG Bulletin >Constraining uncertainty in interpretation of seismically imaged clinoforms in deltaic reservoirs, Troll field, Norwegian North Sea: Insights from forward seismic models of outcrop analogs
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Constraining uncertainty in interpretation of seismically imaged clinoforms in deltaic reservoirs, Troll field, Norwegian North Sea: Insights from forward seismic models of outcrop analogs

机译:挪威北海巨魔场三角洲储层地震成像斜斜形解释中的不确定性约束:露头类似物的正向地震模型的见解

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Forward seismic modeling of outcrop analogs has been used to characterize the seismic expression of clinoforms in different deltaic depositional environments, and thus constrain uncertainty in interpretation of intra-reservoir clinoforms imaged in seismic data from the Troll field, Norwegian North Sea. Three outcrop analogs from the Cretaceous Western Interior seaway, United States, were studied to quantify the geometry, distribution, and lithologic character of clinoforms in fluvial-dominated and mixed-influence deltaic deposits. Outcrop-derived geometric data were calibrated to sedimentological and petrophysical data from the Krossfjord and Fensfjord Formations in the Troll field, and then used to create a suite of forward seismic models for comparison with real seismic reflection data from the Troll field. Clinoforms were imaged in the forward seismic models in which they were (1) spaced wider than the tuning thickness (>10 m [>33 ft]); (2) marked by pronounced interfingering of facies associations with different acoustic properties; and/or (3) lined by relatively thick (>50 cm [>20 in.]) carbonate-cemented layers. However, where clinothems are thinner than the vertical resolution limit of seismic data, destructive interference occurred creating misleading geometrical relationships. Furthermore, our ability to image clinoforms is dependent on (1) the frequency of the seismic wavelet; (2) the overburden velocity; and/or (3) the acoustic impedance contrast at the boundary between the overburden and the clinoform-bearing target. The established methodology has allowed characterization of deltaic clinoformal architectures in reservoir seismic data from the Troll field, and has facilitated a more robust interpretation by bridging the critical gap in resolution between well and seismic data.
机译:露头类似物的正向地震建模已被用来表征不同三角洲沉积环境中斜线形的地震表达,从而限制了挪威北海Troll油田地震数据中成像的储层内斜线形解释的不确定性。研究了来自美国白垩纪西部内陆海道的三种露头类似物,以定量研究了以河流为主和混合影响的三角洲沉积物中斜长形的几何形状,分布和岩性特征。将露头的几何数据校准为Troll油田Krossfjord和Fensfjord地层的沉积学和岩石物理数据,然后用于创建一套前向地震模型,以与Troll油田的真实地震反射数据进行比较。在正向地震模型中对斜型成像了,其中(1)的间隔比调谐厚度(> 10 m [> 33 ft])宽; (2)以具有不同声学特性的相联想的明显互指为特征;和/或(3)衬有相对较厚(> 50厘米[> 20英寸])的碳酸盐水泥层。但是,如果斜线管的厚度小于地震数据的垂直分辨率极限,则会发生破坏性干扰,从而产生误导的几何关系。此外,我们对斜形成像的能力还取决于(1)地震子波的频率; (2)上覆速度;和/或(3)覆盖层与斜线形目标之间边界处的声阻抗对比。既定的方法已经可以表征Troll油田储层地震数据中的三角斜形构造,并通过缩小井眼和地震数据分辨率之间的临界差距,促进了更可靠的解释。

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