声波与高精度温度测井技术在深气井钻井漏失区探测中的应用——以阿曼北部为例

M. Abdelazim, N. Galin, A. Abri, I. Khanbashi, Khalsa Shamsi, Zeidi Badar, Ananda Pranava, Chris Rodger
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引用次数: 1

摘要

x油田位于阿曼西北部。计划在未来几年内钻探30多口评价和开发直井。在现有的11口井中,在Habshan、Jubaila和Tuwaiq山的碳酸盐岩地层钻井时,由于严重的岩溶作用,有几口井出现了全部或部分泥浆损失。这导致了成本的显著增加和交付时间的延迟。利用新的宽方位角地震数据和井图,利用地震属性来评估遇到损失层的可能性,给出损失层间隔的指示。发现损失的来源是一个巨大的挑战;了解精确的区域有助于优化水泥固化桥塞的数量,从而减少钻井时间和成本。发生损失时;钻井液从高压侧(泥浆比重)流向低压侧(地层),造成完全漏失,并迅速膨胀,产生湍流,产生声波信号和温度异常。现代声学测井工具Chorus声学平台(频谱噪声测井- SNL)与快速高精度温度测井工具Cascade热平台(高精度温度- HPT)相结合,能够检测钻井损失中的后续声波和温度异常,并指示损失区域。合唱声学平台包含新一代高灵敏度水听器-一种压电晶体元件,可记录宽频率范围(0.1-60kHz)的噪音。Cascade热平台采用超灵敏的铂传感器,响应时间不到一秒。该技术已经在关键的油气井中使用,以识别油管和套管泄漏并解决井完整性问题,但在阿曼,这是首次在裸眼井中使用该技术来识别钻井泥浆损失。本文介绍了Chorus和Cascade平台(SNL-HPT)在PDO公司阿曼北部X-Field的一口深气井中成功应用,用于识别12.25”井眼的全部和部分漏失区。a井是位于阿曼北部的X油田的一口评价垂直天然气深井,在碳酸盐岩地层的12.25英寸井眼处出现了流体漏失。上部套管采用18 5/8”和13 3/8”套管。在整个目标井段,钻杆位于井眼内,井眼内填充水基泥浆,Chorus和Cascade测井工具(SNL-HPT)通过钻杆内的钢丝绳输送。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection of Drilling Loss Zones in Deep Gas Well Using Acoustic and High Precision Temperature Logging Technology, a Case Study from North of Oman
The X-field is located in the North West of Oman. Drilling of more than 30 appraisal and development vertical wells is planned in the coming few years. Whilst drilling through the carbonate formations of Habshan, Jubaila and Tuwaiq Mountain in the existing 11 wells, total to partial mud losses were encountered in several wells due to the severe karstification. This led to significant cost increases and delays to the well delivery time. Utilizing the new wide azimuth seismic data and well maps, gives an indication of a loss zone intervals using the seismic attributes to assess the possibility of encountering the loss zone. The detection of the source of losses presents a big challenge; knowing the precise zones helps in optimizing the number of cement curing plugs thus a reduction in drilling days and cost. When losses occur; the drilling fluid moves from high pressure side (mud weight) to low pressure side (formation) causing a complete loss, where it expands rapidly and produces a turbulent flow that creates an acoustic signal and temperature anomaly. Modern acoustic logging tools, Chorus acoustic platform (Spectral Noise Log – SNL), coupled with fast and high precision temperature logging tools, Cascade thermal platform (High Precision Temperature – HPT), are capable to detect the subsequent acoustic and temperature anomalies in the drilling losses and indicate the loss zones. The chorus acoustic platform contains a new generation, high-sensitivity hydrophone – a piezo crystal element that records noise in a wide frequency range (0.1-60kHz). The Cascade thermal platform utilizes a super-sensitive platinum sensor with a response time of less than one second. The technology is already being used in critical oil and gas wells to identify tubing and casing leaks and address well integrity issues but, this is the first time it has been used in the open hole to identify the drilling mud losses in Oman. This paper presents the successful use of Chorus and Cascade platforms (SNL-HPT) in a Deep Gas well in X-Field, North of Oman, PDO Company, for identifying the total and partial loss zone across 12.25" hole. The well-A was drilled as an appraisal vertical gas deep well in one of X fields, North of Oman, and experienced fluid losses across 12.25" hole in carbonates formations. The top section was cased with 18 5/8" and 13 3/8" casings. Across the interval of interest, drill pipe was inside the borehole filled with water-based mud and the Chorus and Cascade logging tools (SNL-HPT) were conveyed by a slickline located inside the drill pipe.
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