首页> 外文会议>SPE Asia Pacific Oil and Gas Conference and Exhibition >Production Optimisation in the Real World: A Case Study in Gas Production Surveillance,Intervention Planning and Decision Making on an Unmanned Platform
【24h】

Production Optimisation in the Real World: A Case Study in Gas Production Surveillance,Intervention Planning and Decision Making on an Unmanned Platform

机译:现实世界的生产优化:在无人平平台上的天然气生产监测,干预计划和决策的案例研究

获取原文

摘要

In complex situations production optimisation often differs from plan to reality. Ideally a set of known factors are used to determine the optimal course of action for a production well. However,in reality many factors remain unknown and of those that are,many are only known within a range of uncertainty. Uncertainty is persistent;whether in the form of failed instrumentation,erroneous metering or production reconciliation to multiple reservoirs in commingled completions. Further,well optimisation is always governed by economics and operational constraints. Such constraints limit well surveillance activities and compound uncertainty. These challenges united when a large bore deviated depletion drive gas well on a small unmanned offshore platform in the Otway Basin began to exhibit unexpected production decline. The large bore gas well with commingled reservoir completions was diagnosed as exhibiting liquid loading behavior. The intervention objective was to isolate the probable formation water source and restore water free gas production. A production log was required to confirm water was present and identify the source from three groups of completed intervals,each separated from one another using packers and mechanical sliding side doors. After risk assessments conducted during the intervention an active decision was taken to abort the work and not isolate the water source in favour of continuing cycled production to maximise gas recovery. Introducing an unknown,production logging identified that one of the three completed reservoir intervals was isolated by a closed sliding side door,previously believed to be open,presenting an incremental production opportunity. A follow-up intervention retained an objective of isolating the water source,with the additional objective of accessing the isolated reservoir interval. Detailed planning and uncertainty analysis was conducted ahead of the campaign with a key risk being the range of pressure possibly present within this target interval and the resultant wellbore cross-flow immediately after accessing it. Whilst the second intervention experienced mechanical failure,the ensuing pragmatic decisions that were taken”on the fly”ultimately resulted in a successful production outcome. The water source was isolated and incremental rate and reserves were achieved through perforation of blast joints opposite the target interval. This paper presents the workflows,tools & interventions used to diagnose production decline and optimise production from this challenging well. It is a case study in production surveillance utilising limited data,decision tree analysis and contingency planning for interventions performed with significant operational limitations. It includes the use of slickline production logging,tubing plugs,and electric wireline perforating in a strong cross-flow wellbore environment. This paper will be of interest to operators of unmanned platforms in hostile environments,commingled completions or wells with compromised production data. By integrating the learnings presented,engineers will get a head start when tackling similar uncertainties with their own challenging production optimisation activities.
机译:在复杂的情况下,生产优化通常不同于计划到现实。理想情况下,一组已知因素用于确定生产良好生产的最佳行动过程。然而,实际上,许多因素仍然是未知的,并且许多人只在一系列不确定性范围内都知道。不确定性是持久的;无论是在失败仪表,错误计量或生产和解在混合完井多个贮存的形式。此外,优化始终受到经济学和运营限制的管辖。这种制约因素限制了监测活动和复合不确定性。当一个大口径偏离消耗驱动气井在奥特维盆地一个小型无人海上平台统一这些挑战开始表现出意想不到的产量下降。具有混合储层完成的大孔气体良好诊断为表现出液体载荷行为。干预目标是分离可能的地层水源并恢复无水气体生产。需要生产日志来确认存在水并从三组完成的间隔识别源,每个频体使用包装机和机械滑动侧门分开。在干预期间进行的风险评估后,采取了积极的决定,以中止工作,并不将水源隔离,有利于继续循环生产以最大限度地提高天然气回收。介绍未知的生产测井,确定了三个完成的储层间隔中的一个由闭合的滑动侧门隔离,以前被认为是开放的,提出增量的生产机会。随后的干预保留了隔离水源的目的,并具有进入隔离的储层间隔的附加目的。详细规划和不确定性分析用一个关键的风险是这种压力的目标区间并将得到的井眼内可能存在的范围内进行前方运动的访问后立即横流。虽然第二次干预经历了机械故障,但随后的务实决定是“在飞行中”的务实决定最终导致了成功的成果。分离出水源,通过对与目标间隔相反的爆炸接头穿孔来实现增量率和储备。本文介绍了用于诊断生产衰退的工具和干预措施,从而从这种挑战井中优化生产。它是利用有限的数据,决策树分析和应急计划,进行了有限的数据,决策树分析和随附的干预措施进行生产监测。它包括使用SLICKLINE生产测井,管道塞和电线穿孔在强大的跨流井筒环境中。本文将对敌对环境中无人平台的运营商感兴趣,使完成生产数据的完整或井混合。通过整合所提出的学习,工程师将在解决类似的不确定性与他们自己的具有挑战性的生产优化活动进行解决时。

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