首页> 外文会议>EAGE Conference Exhibition >Improving Reservoir Simulation Models Using 4D Data at the Snorre Field (SPE-121977
【24h】

Improving Reservoir Simulation Models Using 4D Data at the Snorre Field (SPE-121977

机译:在Snorre字段中使用4D数据改进水库仿真模型(SPE-121977

获取原文

摘要

New reservoir simulation models have recently been established for the Snorre field based on updated geological models and fully revised input data. The Snorre reservoir is highly heterogeneous, comprising stratified and heavily faulted fluvial deposits. The field is pressure supported by water alternating gas (WAG) injection, resulting in complex drainage patterns. Time-lapse seismic is amongst the technologies applied to improve reservoir understanding and has provided valuable information on fluid front movement and fault communication. The paper describes a first systematic effort on honouring 4D data in the Snorre reservoir simulation models. A workflow converting 4D responses into 3D volumes in the reservoir modelling software for easy comparison to simulated reservoir performance proved very useful in the multidisciplinary work process. The models are history matched with respect to pressures, production rates and fluid front movement from tracer and 4D data. Though the seismic time-lapse responses are matched qualitatively, they have improved the overall Snorre reservoir understanding. Different applications of 4D data in the history matching process are discussed, e.g. determining fault transmissibilities and water front movement, identifying water producing intervals and re-allocation of zonal contributions in wells. A successful water shut-off based on 4D interpretations and simulated future performance is also discussed.
机译:最近基于更新的地质模型和完全修订的输入数据为SNOWRE领域建立了新的储层模拟模型。鼻腔储存器具有高度异质的,包括分层和严重故障的河流沉积物。该领域是水交交易(摇摆)注射支撑的压力,导致复杂的排水图案。时间流逝地震是改善水库理解的技术之一,并提供了有关流体前置运动和故障通信的宝贵信息。本文介绍了在Snorre储层模拟模型中识别4D数据的第一个系统努力。工作流程将4D响应转换为储层建模软件中的3D卷,以便与模拟的储层性能进行轻松比较,证明在多学科工作过程中非常有用。该模型是关于从示踪剂和4D数据的压力,生产率和流体前移动匹配的历史。虽然地震延时反应定性匹配,但它们改善了整体卵子水库的理解。讨论了4D数据在历史匹配过程中的不同应用,例如,确定故障透射性和水前运动,识别水的间隔和井中区间贡献的重新分配。还讨论了基于4D解释和模拟未来性能的成功的水关闭。

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