首页> 外文会议>Abu Dhabi International Petroleum Exhibition and Conference >Quantification of Reservoir Pressure in Multi-Zone Well under Flowing Conditions Using Spectral Noise Logging Technique, Zubair Reservoir, Raudhatain Field, North Kuwait
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Quantification of Reservoir Pressure in Multi-Zone Well under Flowing Conditions Using Spectral Noise Logging Technique, Zubair Reservoir, Raudhatain Field, North Kuwait

机译:利用光谱噪声测井技术,Zubair储层,Raudhatain领域,北科威特流动条件下多区储层压力的定量

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Monitoring the reservoir pressures throughout the production life of the field is considered as a cornerstone for reservoir management and optimization of the development plans. There are many challenges to have routine and proper pressure records. Multi-zone single completion wells are one of these challenges, where it is difficult to acquire the reservoir pressure for each zone through the conventional pressure gauges. In addition to that, deferring the production or injection of high rate wells for quite time to acquire downhole static pressure data is adding more to these challenges. Raudhatain Zubair Reservoir is a layered reservoir with difference in reservoir pressure from layer to the other. Spectral Noise Logging technique has been utilized to estimate the average reservoir pressure for each perforated layer in a Multi-zone single completion oil producer. The noise logging survey has been carried out under flowing conditions and on different rates. The process of estimation the average ' reservoir pressure from Noise logging is based on quantification of the noise power under different rates. The signal recorded by SNL has two main parameters: amplitude and frequency. The frequency ranges widely from 8 Hz to 60 kHz, while the amplitude increases with differential pressure. The power of the acoustic noise signal generated by a reservoir fluid flowing from a particular unit is directly proportional to the product of differential pressure and flow rate. Nonlinear relationship between the noise power and bottom-hole flowing pressure has been utilized to estimate the average reservoir pressure which stays valid under monophasic flow conditions for the hydrocarbon to the wellbore. The estimated pressures for each layer from this technique'matched the RFT pressure data that have been recorded in the nearby wells and in also RFT data recorded in same well considering the production history. The noise profile has also indicated the effective sand thickness for each layer and investigated flow behind the casing from non-perforated reservoir to the existing perforations. Utilization of the SNL logging to estimate the reservoir pressure is adding more to reservoir surveillance applicable tools that could mitigate some of the existing challenges and aiming to improve the surveillance process under certain circumstances. This paper presents a case of applying the noise logging in an oil producer with the detailed job procedures, measured data, interpretation process, and the final results
机译:监测整个领域生产寿命的储层压力被认为是水库管理的基石和发展计划的优化。有许多挑战来拥有常规和适当的压力记录。多区单个完成井是其中一种挑战,在那里难以通过传统的压力表来获取每个区域的储层压力。除此之外,延迟生产或注入高速井井,有时获取井下静态压力数据,增加了这些挑战。 Raudhatain Zubair储层是一层分层储层,具有从层到另一层的水库压力差异。光谱噪声测井技术已被利用来估计多区单个完成油生产商中每个穿孔层的平均储层压力。噪声测井调查已经在流动条件下和不同的速率下进行。估计的过程来自噪声测井的平均水库压力是基于不同速率下的噪声功率的量化。 SNL记录的信号具有两个主要参数:幅度和频率。频率范围广泛地从8 Hz到60 kHz,而幅度随压差增加。由从特定单元流动的储库流体产生的声学噪声信号的功率与差压和流速的乘积成正比。已经利用了噪声功率和底部孔流动压力之间的非线性关系来估计平均储层压力,该压力在对井筒的单极流动条件下保持有效。从该技术的每个层的估计压力都是在附近的井中记录的RFT压力数据,并且在考虑到生产历史时,还记录了相同的RFT数据。噪声曲线还指示每个层的有效砂厚度,并从非穿孔储存器到现有穿孔的壳体后面的研究流动。 SNL测井的利用率来估计储层压力正在增加更多的水库监控适用工具,这些工具可以减轻一些现有的挑战,并旨在在某些情况下改善监视过程。本文提出了一种将噪声记录在油制片人中应用噪声记录的情况,详细工作程序,测量数据,解释过程以及最终结果

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