First Case Study for Litho-Petro-Elastic AVA Pre-Stack Inversion for Complex Tight Reservoirs Miocene – Upper Cretaceous in East Onshore Abu Dhabi

Khalid Obaid, A. Noufal, A. Almessabi, A. Abdelaal, K. Elsadany, E. Gofer, O. Aly, G. Nyein, A. Mukherjee
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Abstract

This study summarizes the efforts taken to provide reliable reservoir characterizations products to mitigate seismic interpretation challenges and delineation of the reservoirs. ADNOC has conducted seismic exploration activities to assess Miocene to Upper Cretaceous aged reservoirs in East Onshore Abu Dhabi. The Oligo-Miocene section comprises of interbedded salt (mainly halite), anhydrite, limestones and marls. Deposited in the foreland basin related to the Oman thrust-belt. Ranging in thickness from nearly 1.5 km in the depocenter to almost nil on the forebulge located to the west of the studied area. The well data based geological model suggests that initially porous rocks (presumably grain-supported carbonates) encompassed polyphase sulfate cementation during recurrent subaerial exposure in which pores and grains were recrystallized sometimes completely too massive, tight anhydrite beds. This heterogeneity of the complex shallow section showing high variation of velocity impact seismic imaging, and interpretation to model the stratigraphic/structural framework and link it with reservoir characterization. Hence, ADNOC decided to conduct a trial on state-of-art technique Litho-Petro-Elastic (LPE) AVA Inversion to mitigate the seismic interpretation challenges and delineate the reservoirs. The LPE AVA inversion provides a single-loop approach to reservoir characterization based on rock physics models and compaction trends, reducing the dependency on a detailed prior the low frequency model, Where the rock modelling and lithology classification are not separate steps but interact directly with the seismic AVO inversion for optimal estimates of lithologies and elastic properties. The LPE inversion scope requires seismic data conditioning such as CMP gathers de-noising, de-multiple, flattening and amplitude preservation, in addition to detailed log conditioning, petro-elastic and rock physics analysis to maximize the quality and value of the results. The study proved that the LPE AVA Inversion can be used to guide seismic interpreters in mapping the structural framework in challenging seismic data, as it managed to improve the prospect evaluation.
阿布扎比东岸中新世-上白垩世复杂致密储层的岩石-石油弹性AVA叠前反演首个案例研究
本研究总结了为提供可靠的储层表征产品所做的努力,以减轻地震解释和储层圈定的挑战。ADNOC在阿布扎比东岸进行了地震勘探活动,以评估中新世至上白垩世年龄的储层。渐近-中新世剖面由互层盐(主要是岩盐)、硬石膏、灰岩和泥灰岩组成。沉积于与阿曼逆冲带有关的前陆盆地。厚度范围从沉积中心的近1.5 km到研究区西部前凸起的几乎为零。基于井数据的地质模型表明,在反复的地面暴露过程中,最初的多孔岩石(可能是颗粒支撑的碳酸盐)包含多相硫酸盐胶结作用,其中孔隙和颗粒被再结晶,有时完全过于庞大,致密的硬石膏层。复杂浅层剖面的非均质性表现出的高速度变异性影响了地震成像、地层/构造格架模型的解释,并将其与储层表征联系起来。因此,ADNOC决定对最先进的岩石-石油弹性(LPE) AVA反演技术进行试验,以减轻地震解释挑战并圈定储层。LPE AVA反演提供了一种基于岩石物理模型和压实趋势的单环油藏表征方法,减少了对详细的低频模型的依赖,其中岩石建模和岩性分类不是单独的步骤,而是直接与地震AVO反演相互作用,以获得岩性和弹性性质的最佳估计。LPE反演范围需要对地震数据进行调整,如CMP集去噪、去复叠、平坦化和幅度保存,以及详细的测井调节、石油弹性和岩石物理分析,以最大限度地提高结果的质量和价值。研究证明,LPE AVA反演可以指导地震解释人员在具有挑战性的地震数据中绘制构造框架图,从而改善了勘探前景评价。
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