Yegor Se, M. Sullivan, V. Tohidi, M. Lazorek, A. Attia, Phillip A. Chen, Linda Abbassi, V. Schoepf
{"title":"LESSONS LEARNED FROM CROSS-VALIDATION OF FIBER OPTICS AND PRODUCTION LOGGING CLUSTER PERFORMANCE ASSESSMENT IN THE UNCONVENTIONAL WELLS","authors":"Yegor Se, M. Sullivan, V. Tohidi, M. Lazorek, A. Attia, Phillip A. Chen, Linda Abbassi, V. Schoepf","doi":"10.30632/SPWLA-2021-0106","DOIUrl":null,"url":null,"abstract":"The well design with long lateral section and multistage frac completion has been proven effective for development of the unconventional reservoirs. Top-tier well production in unconventional reservoir can be achieved by optimizing hydraulic completion and stimulation design, which necessitates an understanding of flow behavior and hydrocarbon contribution allocation. Historically, conventional production logging (PL) surveys were scarcely used in unconventional reservoirs due to limited and often expensive conveyance options, as well as complicated and non-unique inflow interpretations caused by intricate and changing multi-phase flow behavior (Prakash et al., 2008). The assessment of the cluster performance gradually shifted towards distributed acoustic (DAS) and temperature (DTS) sensing methods using fiber optics cable, which continuously gained popularity in the industry. Fiber optics measurements were anticipated to generate production profiles along the lateral with sub-cluster resolution to assist with optimal completions design selection. Encapsulation of the fiber in the carbon rod provided alternative conveyance method for retrievable DFO measurements, which gained popularity due to cost-efficiency and operational convenience (Gardner et al., 2015). Recent utilization of micro-sensor technology in PL tools, (Abbassi et al, 2018, Donovan et al, 2019) allowed dramatic reduction of the size and the weight of the PL toolstring without compromising wellbore coverage by sensor array. Such ultra-compact PL toolstring could utilize the carbon rod as a taxi and provide mutually beneficial and innovative surveillance combination to evaluate production profile in the unconventional reservoirs. Array holdup and velocity measurements across wellbore from PL would reveal more details regarding multi-phase flow behavior, which could be used for cross-validation and constraining of production inflow interpretation based on DFO measurements. This paper summarizes the lessons learned, key observations and best practices from the unique 4 well program, where such innovative combination was tested in gas rich Duvernay shale reservoir.","PeriodicalId":153712,"journal":{"name":"SPWLA 62nd Annual Online Symposium Transactions","volume":"152 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2021-05-17","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"SPWLA 62nd Annual Online Symposium Transactions","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.30632/SPWLA-2021-0106","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
The well design with long lateral section and multistage frac completion has been proven effective for development of the unconventional reservoirs. Top-tier well production in unconventional reservoir can be achieved by optimizing hydraulic completion and stimulation design, which necessitates an understanding of flow behavior and hydrocarbon contribution allocation. Historically, conventional production logging (PL) surveys were scarcely used in unconventional reservoirs due to limited and often expensive conveyance options, as well as complicated and non-unique inflow interpretations caused by intricate and changing multi-phase flow behavior (Prakash et al., 2008). The assessment of the cluster performance gradually shifted towards distributed acoustic (DAS) and temperature (DTS) sensing methods using fiber optics cable, which continuously gained popularity in the industry. Fiber optics measurements were anticipated to generate production profiles along the lateral with sub-cluster resolution to assist with optimal completions design selection. Encapsulation of the fiber in the carbon rod provided alternative conveyance method for retrievable DFO measurements, which gained popularity due to cost-efficiency and operational convenience (Gardner et al., 2015). Recent utilization of micro-sensor technology in PL tools, (Abbassi et al, 2018, Donovan et al, 2019) allowed dramatic reduction of the size and the weight of the PL toolstring without compromising wellbore coverage by sensor array. Such ultra-compact PL toolstring could utilize the carbon rod as a taxi and provide mutually beneficial and innovative surveillance combination to evaluate production profile in the unconventional reservoirs. Array holdup and velocity measurements across wellbore from PL would reveal more details regarding multi-phase flow behavior, which could be used for cross-validation and constraining of production inflow interpretation based on DFO measurements. This paper summarizes the lessons learned, key observations and best practices from the unique 4 well program, where such innovative combination was tested in gas rich Duvernay shale reservoir.
实践证明,长水平段多级压裂完井设计对于非常规油藏的开发是有效的。非常规油藏的顶级井可以通过优化水力完井和增产设计来实现生产,这就需要了解流体行为和油气贡献分配。从历史上看,常规生产测井(PL)调查很少在非常规油藏中使用,因为输送方法有限且往往昂贵,而且由于复杂多变的多相流行为导致流入解释复杂且不独特(Prakash等,2008)。对簇性能的评估逐渐转向使用光纤电缆的分布式声学(DAS)和温度(DTS)传感方法,这种方法在行业中不断得到普及。预计光纤测量将产生沿分支的生产剖面,并具有子簇分辨率,以帮助进行最佳完井设计选择。碳棒中纤维的封装为可回收的DFO测量提供了另一种传输方法,由于成本效益和操作便利性,该方法受到了欢迎(Gardner et al., 2015)。最近,微传感器技术在PL工具中的应用(Abbassi等人,2018年,Donovan等人,2019年)大大减小了PL工具串的尺寸和重量,而不会影响传感器阵列的井筒覆盖范围。这种超紧凑的PL工具串可以利用碳棒作为出租车,提供互利和创新的监测组合,以评估非常规油藏的生产剖面。从PL进行的阵列持率和速度测量将揭示更多关于多相流行为的细节,可用于基于DFO测量的生产流入解释的交叉验证和约束。本文总结了独特的4口井项目的经验教训、关键观察结果和最佳实践,在富含天然气的Duvernay页岩储层中测试了这种创新的组合。