首页> 外文会议>Society of Petroleum Engineers Reservoir Simulation Symposium >Next-Generation Modeling of a Middle Eastern Multireservoir Complex
【24h】

Next-Generation Modeling of a Middle Eastern Multireservoir Complex

机译:中东万圣式复合体的下一代建模

获取原文

摘要

An elusive goal of reservoir simulation has been the ability to accurately model multiple reservoirs producing through a common surface facility. In the past, loosely coupled techniques have often been used which did not fully converge the overall solution of the simulation. This led to instabilities at worst or to inaccuracies in the solution at best because it did not properly account for the complete interaction of the reservoir. In the following paper, we discuss the application of a fully implicit, tightly coupled surface-subsurface simulation with a next-generation reservoir simulation of the north Kuwait Raudhatain multireservoir complex with common surface facilities using actual field data. In addition to surfacesubsurface simulation, the reservoir simulator provides a parallel unstructured grid capability and significant computational efficiency from a improved model formulation. For the simulations of this study, four stacked reservoir horizons form the subsurface portion of the model. The surface facilities consist of the production gathering centers, and gas lift and water injection capabilities. A unique feature of the model included the capability to automatically switch the flow lines for the more than 500 wells among six different separator trains at a gathering center, depending on the wellhead pressures and producing water cuts. The resultant 600,000 cell multireservoir model was first validated by comparing fifty years of historical performance for the individual reservoirs from the original simulation models with the next-generation model. In general, the matches between the original simulations and those generated with the next generation simulator were extremely close for each of the four reservoirs. With the validation completed, a simulation surface network was constructed that attempted to capture all of the salient features of the current and future surface facilities for the field by including, for example, actual flowline lengths in the model. In particular, future facilities expansions were included with gas lift, water injection, and the multiple header switching of wells at the gathering center. The complete model, including all four reservoirs and the surface facilities, was run for a prediction period of over sixty years. The resulting predictions provided, for the first time, solutions that show the interaction of the reservoirs with the surface facilities, including reallocation of production and injection based on facilities constraints. The multireservoir model forms the basis of a field planning and optimization tool whose forecasts can be used with greater confidence because of the inclusion of the comprehensive physics of the field production. A comparison of the simulation output with a spreadsheet field planning model shows interesting results which should form the basis of future work.
机译:储层模拟的难以实现的目标是准确地模拟通过共同表面设施产生多个储层的能力。在过去,通常使用松散耦合的技术,其并未完全收敛模拟的总体解。这导致最糟糕的稳定性或解决方案中的不准确性,因为它没有正确考虑水库的完全相互作用。在下文中,我们讨论了具有使用实际现场数据的共同表面设施的北科威特Raudhatain MultiServoir复合物的下一代储存器模拟完全隐含的紧密耦合的表面地下模拟。除了曲面粗细仿真之外,储库模拟器还提供了平行的非结构化网格能力和从改进的模型配方提供了显着的计算效率。对于本研究的模拟,四个堆叠的储层范围形成模型的地下部分。表面设施包括生产采集中心和燃气升力和注水能力。该模型的独特特征包括在聚集中心的六个不同分离器列表中自动切换超过500个井的流量线的能力,这取决于井口压力并产生水切割。通过将各个水库的五十年来,首先验证所得600,000个细胞多路程模型,从下一代模型与原始模拟模型的原始模拟模型相比,验证了五十年的历史表现。通常,原始模拟之间的匹配和使用下一代模拟器产生的匹配对于四个储存器中的每一个非常接近。通过完成验证,构造了模拟表面网络,该模拟表面网络试图通过模型中的实际流线长度捕获该字段的电流和未来表面设施的所有突出特征。特别是,未来的设施扩展包括燃气升降机,注水和聚集中心的井的多重头切换。完整的模型,包括所有四个水库和表面设施,在六十多年来的预测期间运行。由此产生的预测,首次提供了显示储存器与表面设施的相互作用的解决方案,包括基于设施限制的生产和注射重新分配。 MultiServoir模型构成了一个现场规划和优化工具的基础,其预测可以更大的信心地使用,因为纳入现场生产的综合物理。使用电子表格现场规划模型的仿真输出的比较显示了应成为未来工作的基础的有趣结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号