结合生产测井、频谱噪声测井和高精度温度,探测井筒和管后裂缝流体运动

Ali H. Alabdulmuhsin, S. Ashby, E. Terentyeva, K. Ammar
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引用次数: 0

摘要

诊断裂缝和管后隔离对于正确分析非预期油藏的产量并采取适当的措施至关重要。利用隔层诊断系统进行压裂流量诊断是一种独特的解决方案,除了确认压裂段之间的隔离完整性外,还可以识别管柱后裂缝的位置和高度。与生产测井相结合,频谱噪声测井(SNL)和高精度温度测井(HPT)工具串已经在内存模式下运行。结合这些技术,可以通过生产测井分析井筒流动剖面。同时,对SNL-HPT平台进行了管柱裂缝流和层间隔离的诊断。一口井的目标是三个阶段。经过三个射孔和压裂阶段后,观察到含水率增加。了解管柱后和射孔间的裂缝网络,分析层间隔离,找到“井-地层”系统的真实流动几何形状,是目前诊断调查的关键目标。SNL-HPT平台下裂缝流动诊断结果,揭示管柱后情况的准确画面。正确识别了各射孔段后、段上活动裂缝的实际位置以及非压裂段的活动储层带。此外,还确定了分段之间的隔离条件,并提供了井眼内和管柱后的流动几何形状。通过将SNL-HPT平台诊断结果与生产测井结果相结合,成功地确定了裂缝扩展引起的高含水的来源。隔离的决定是正确的,并为生产做好了准备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combining Production Logging with Spectral Noise Logging and High Precision Temperature to Detect Wellbore and Behind Pipe Fractures Fluid Movement
Diagnosing fractures and behind-pipe isolation is very critical to analyze production from unintended reservoirs correctly and taking proper actions. Fracture flow diagnostics using through-barrier diagnostic system is a unique solution developed to identify the positions and heights of behind pipe fractures in addition to confirming the isolation integrity between the stages. In combination with Production logging, Spectral Noise Log (SNL) & High Precision Temperature (HPT) tool string have been running in-memory mode. Combining the technologies allowed for analyzing wellbore flow profiles by production logging. Simultaneously, SNL-HPT platform is diagnosed behind Pipe fracture flow and zonal isolations. A well was drilled targeting three stages. After three perforation and fracturing stages, water cut increase was observed. Understanding fracture network behind pipe and across the perforations, analyzing zonal isolation, and finding true flow geometry on the "well–formation" system is now the critical objective of the diagnostics survey. SNL-HPT platform under fracture flow diagnostics results, reveal behind pipe conditions accurate picture. Actual positions of active fractures behind and across each perforation stage and active reservoir zones of the non-fractured stage are correctly identified. As well isolations conditions between stages are determined and flow geometry inside the borehole and behind the pipe is provided. By combining the SNL-HPT platform diagnostics with production logging results, the source of the high water cut caused by fracture extension was successfully identified. Isolation's decisions are properly taken and well set for production.
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