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Advancing Steamflood Performance Through a New Integrated Optimization Process: Transform the Concept into Practical

机译:通过新的集成优化过程推进蒸汽灌木性能:将概念转化为实用

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Duri Field is the largest active steamflood in the world comprising 6,300 active producing wells, 1,250 steamflood patterns and encompassing 21,000 acres in the Riau Province of Sumatra, Indonesia. The Duri Field produces 73,000 BOPD and 10,000 optimization jobs are executed annually to support base production. This asset is supported by teams that previously utilized tools and processes that are not necessarily consistent across areas to support reservoir management and production optimization efforts. The operator identified an opportunity to implement a new process to improve the quality of reservoir analyses, define short-term and long-term reservoir depletion strategies and the ability to develop a prioritized queue of executable production adding opportunities. The new process facilitates better cross functional engagement and enables a consistent application of best practices across the field. The process is a comprehensive review that incorporates a geological evaluation, a steamflood performance analysis, operational constraints, reservoir surveillance and an evaluation of the reservoir drainage efficiency. The process employs use of digital technology for the purposes of mapping, modeling, analyzing downhole / surface surveillance data and evaluating production performance. A fieldwide geological evaluation is performed to analyze reservoir quality with relation to stratigraphy, structure and petrophysical properties. Reservoir surveillance data is analyzed to determine temperature, steamflood performance and depletion rates. Reservoir drainage efficiency is determined through a review of production (pattern and well), wellbore condition and reservoir surveillance data. Analytical tools were developed to improve the efficiency of the review process. The review process is effective at identifying areas with high remaining oil, stalled depletion and problematic steamfloods. Because of this effort, proactive workovers and production optimization opportunities are identified and prioritized based on economic potential and the ability to execute. This new review process was implemented as a pilot in 2017 and fully implemented across Duri Field as a standard review process in 2018. Significant value has been created through this effort by: 1) developing a standardized and streamlined review process for all of Duri Field, 2) improving the ability for asset optimization teams to identify workover and optimization opportunities, 3) prioritizing job execution and 4) providing valuable insights to management to help make well informed investment decisions. In 2018, incremental production opportunities doubling the number of then-current production candidates were identified through this new process. The results of this effort have also provided valuable information for developing business planning. This process demonstrates a successful evaluation and integration of static and dynamic reservoir properties, production data, operations and facility constraints. The automated and digital standard tools (e.g., geologic modelling, depletion tools, candidate selection, lookback tools, heating response tools) are introduced and proven to accelerate analyses and provide robust logic optimization evaluation.
机译:Duri Field是世界上最大的活跃的蒸汽料,包括6,300个活跃的井,1,250个蒸汽翅片图案,并在印度尼西亚苏门答腊省苏门答腊省占地21,000英亩。 DURI字段产生73,000个BOPD,每年执行10,000个优化作业,以支持基础生产。此资产支持以前使用的工具和流程,这些工具和流程并不一定跨越地区支持水库管理和生产优化努力。操作员确定了实施新进程的机会,以提高水库分析的质量,定义短期和长期水库耗尽策略以及开发优先的可执行生产队列增加机会的能力。新过程有助于更好的交叉功能参与,并在整个领域中实现一致的最佳实践。该过程是一个全面的审查,包括地质评估,蒸汽绩效分析,运作限制,水库监测和储层排水效率的评估。该过程采用数字技术为映射,建模,分析井下/表面监控数据和评估生产性能的目的。进行全场地质评估,以分析水库质量,与地层,结构和岩石物理学。分析储层监控数据以确定温度,蒸汽灌木性能和耗尽率。储层排水效率是通过对生产(图案和井),井筒状况和储层监测数据进行审查来确定的。开发了分析工具以提高审查过程的效率。审查过程在识别具有高剩余油的区域,停滞不前和有问题的蒸汽灰色。由于这项努力,基于经济潜力和执行能力,确定和优先考虑主动讨论和生产优化机会。这项新的审查过程于2017年实施为试点,并在Duri领域全面实施2018年作为标准审查过程。通过这项努力创造了重大价值:1)为所有Duri领域制定标准化和简化的审查流程, 2)提高资产优化团队能力识别工作组和优化机会,3)优先考虑工作执行,4)为管理层提供有价值的见解,以帮助提供知情的投资决策。 2018年,通过这一新进程确定了将递增的生产机会加倍,然后通过这一新进程确定了当前的生产候选人的数量。这项努力的结果还为开发业务规划提供了有价值的信息。此过程展示了静态和动态储层属性,生产数据,操作和设施限制的成功评估和集成。介绍了自动化和数字标准工具(例如,地质建模,耗尽工具,候选选择,寻求工具,加热响应工具),并证明可加速分析并提供强大的逻辑优化评估。

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