基于游戏的西格陵兰大陆架未发现资源评估

G. Dam, M. Soenderholm, A. Mathiesen, U. Gregersen, J. Bojesen‐Koefoed, L. Kristensen, E. Willerslev, F. Moerk, T. Varming, M. Brandt, T. Kristensen, P. Ventris
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引用次数: 0

摘要

西格陵兰大陆架是世界上最后一个巨大的前沿地区之一,对该大陆架进行了一项基于游戏的尚未发现的常规碳氢化合物资源评估。盆地充填可划分为6个主要构造地层相和8个储层。烃源岩层序包括奥陶系、阿尔比系、塞诺曼-土尔盆系、坎帕系和古新世-始新世。储层岩几乎存在于所有地层中。所有储层的高质量区域封条均有详细记录。超过152个构造导联的体积估计已被纳入储层分析,并计算了确定的远景。待发现分析是基于特征(导联)密度计算方法,对每个已确定的储层进行计算,并根据最广泛勘探区域(模拟区域)的数据进行校准。在此基础上,计算了未勘探区域的未确定远景。在计算了已识别和未识别的远景后,所有层段的累积可得出MMBOE总平均可采风险。AU1的平均风险可采储量为5500万桶油当量,AU2为9100万桶油当量,AU3为2800万桶油当量。最后的组合分析显示了西格陵兰大陆边缘哪些地区是未来勘探最有前景的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Play-Based Yet-to-Find Resource Assessment of the West Greenland Continental Shelf
Summary A play-based Yet-to-Find resource assessment of conventional hydrocarbons has been carried out for the West Greenland continental shelf that constitutes one of the last huge frontier areas of the World. The basin fill is divided into six main tectono-stratigraphic phases and eight play intervals. Source rock intervals include Ordovician, Albian, Cenomanian-Turonian, Campanian and Paleocene-Eocene. Reservoir rocks are present at virtually all stratigraphic levels. High-quality regional seals are well documented from all play intervals. Volume estimates for more than 152 structural leads have been integrated into the play analysis and the identified prospectivity has been calculated. The Yet-to-Find analysis is based on a feature (lead) density calculation approach for each of the identified play intervals calibrated with data from the most extensively explored areas (analogue areas). Based on these analogue areas the unidentified prospectivity has been calculated for the underexplored areas. Having calculated both identified and unidentified prospectivity, the roll-up of all play intervals provide the Total Mean Case Risked Recoverable MMBOE. The total Mean risked recoverable for AU1 is 5500 MMBOE, for AU2 9100 MMBOE and for AU3 2800 MMBOE. A final portfolio analysis shows which areas of the West Greenland continental margin are the most prospective for future exploration.
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