首页> 外文期刊>Journal of Petroleum Science & Engineering >Investigating deep geological reservoirs using seismic reflection and well logs, Tawila oil field, Yemen: Implications for structural setting and reservoir properties
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Investigating deep geological reservoirs using seismic reflection and well logs, Tawila oil field, Yemen: Implications for structural setting and reservoir properties

机译:利用地震反射和井原木,达瓦拉油田,也门调查深层地质水库:对结构环境和储层性质的影响

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Seismic reflection data were used to evaluate the deep geological structures in Tawila oil field, Masila rift basin, Yemen. A combined set of 2D seismic profiles and geophysical well logs were used to produce structural mapping at the top of the clastic Qishn reservoir and the several overlying and underlying horizons. We have investigated the distribution of reservoir fluids in relation to the identified structures. The seismic horizons with their intersecting faults have been determined to be very important in the hydrocarbon distribution. Two key fault systems have been identified to control the hydrocarbon entrapment in the study area: major, deep, E-W normal faulting that affected the northern area, which caused extensive structural deformation, and a much shallower ENE-WSW fault system to south. The shale type and distribution and the basic reservoir properties, were enhanced through analysing the logging data using the standard clastic models. The reservoir is composed of three clastic compartments (S1, S2 and S3) which are separated by thin shale beds. No hydrocarbons were found in the S1 top unit which had considerable shale volume of a dispersed shale type. Considerable to good hydrocarbon content up to 57% and 61%, associated with a structural uplift, was identified in front of the S2 and S3 units, respectively. A dispersed/laminated shale model was assigned for these two units with a laminated style priority. The hydrocarbon entrapment in the study area was caused by the sealing characteristics of the overlying layers as well as the juxtaposition of the reservoir against other seal rocks. The distribution maps show an increase in hydrocarbon saturation toward the west, north and northeast which coincided with areas of low seismic-derived properties of velocity, acoustic impedance and negative reflection coefficient. An elongated structural horst of good hydrocarbon potentiality was identified in the upthrow of the major fault. This prospective structural high is a key to explore hydrocarbons in nearby areas and other basins of similar geologic characteristics.
机译:地震反射数据用于评估塔维拉油田的深层地质结构,Masila Rift Bourin,也门。使用组合的2D地震曲线和地球物理井日志用于在碎屑Qishn水库顶部和几个覆盖和潜在的视野中产生结构映射。我们研究了与所识别的结构有关的储层液的分布。已经确定与其交叉故障的地震视野在烃分布中非常重要。已经确定了两个关键故障系统以控制研究区域中的碳氢化合物夹带:主要,深,E-W对北方地区影响的北方地区的正常断层,这引起了广泛的结构变形,以及向南到南方的较浅的ENE-WSW故障系统。通过使用标准墨水模型分析测井数据,增强了页岩型和分布和基本储库属性。储存器由三个碎片隔室(S1,S2和S3)组成,其被薄页岩床分开。在S1顶部单元中没有发现碳氢化合物,其具有相当大的分散页岩型页岩体积。在S2和S3单元的前面分别鉴定了与结构隆起相关的良好烃含量高达57%和61%的碳氢化合物含量。分散/层压页岩模型为这两个单位分配了具有层压式的优先权。研究区域中的烃涂层是由覆盖层的密封特性以及水库对抗其他密封岩的并置引起的。分布图显示了向西,北部和东北的碳氢化合物饱和的增加,该汽油饱和度与速度,声阻抗和负反射系数的低地震衍生性能的区域吻合。在主要断层的推动下,确定了一种良好的碳氢化合物潜力的细长结构Horst。这一前瞻性结构高是探索附近地区碳氢化合物的关键和类似地质特征的其他盆地。

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