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New Production Logging Tool for Inflow Profiling of Low-Rate Oil and Water Horizontal Wells: Case Studies of Field Testing an Experimental Prototype

机译:用于低速率油和水平井流入的新生产测井工具:实地测试实验原型的案例研究

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The current results of development of a new production logging (PL) tool based on an azimuthally distributed array of thermal anemometers and aimed at determination of inflow profiles beyond the limits of common mechanical sensors in horizontal wells producing oil and water at low rates are described in this paper. Theoretical background, implementation technique, and experimental prototype (EXP) were developed for the PL tool using azimuthally distributed thermo-anemometer (TA) sensors to obtain a dataset characterizing the production regime in low-rate (below 150 m~3 /d) oil and water horizontal wells. The new PL tool's TA sensors record overheating profiles along a well that depend on the local velocity of the fluid and its phase composition. The periodic heating regime of the TA sensors enabled measuring the undisturbed fluid temperature for determination of overheating and acquiring high-resolution temperature profiles, thus providing a valuable additional dataset of diagnostic attributes for characterization of the inflow. Laboratory testing allowed determination of calibration dependencies of TA signals versus velocities of single-phase water and oil flows. The calibrations were used for interpretation of data obtained with the PL tool and evaluation of the distribution of fluid phases for cross sections along a well and profiles of phase velocities. These results indicated the new tool's potential for implementation with a standard PL toolstring in low-rate oil and water horizontal wells. Interpretation of the EXP data together with that from standard PL tools enhanced the reliability of the determination of inflow zone intervals, phase composition of an inflowing fluid, and phase distribution of producing fluid along a well. Analysis of the field data established that effective resolution of temperature measurements by the new PL tool is approximately 0.015 K to enable registration of the effective fluid velocity in range of 0.5 to 15 m/min with corresponding resolution of 0.01 to 0.3 m/min to result in a spatial resolution of 1 to 20 m of the recorded parameters for uniform inflow along a horizontal wellbore. The evaluated values of spatial resolution are based on optimized logging speed, taking into account TA measurement specifics, well construction design, and total production rate. In this first field test of the innovative EXP in two horizontal wells producing water and oil at low rates, the tool was conveyed on coiled tubing and tractor. Joint interpretation of data recorded with the EXP and standard PL tools confirmed that the inflow profiles for each well along with profiles of phase velocities and water inflow zones were reliably established.
机译:基于方位传递的热风计的新生产测井(PL)工具的电流开发结果,并旨在确定超出在低速率下生产油和水的横向井中的普通机械传感器的限制的流入曲线这张纸。为PL工具使用方位分布的热风计(TA)传感器来开发理论背景,实现技术和实验原型(EXP),以获得特征在低速(低于150米〜3 / d)的生产制度的数据集水平井。新的PL工具的TA传感器沿着井呈现过热曲线,这取决于流体的局部速度及其相位组成。 TA传感器的周期性加热制度使能测量未受干扰的流体温度,以确定过热和获取高分辨率温度谱,从而为流入的表征提供诊断属性的有价值的附加数据集。实验室测试允许确定TA信号的校准依赖性与单相水和油流量的速度。校准用于解释用PL工具获得的数据和评估沿孔和相速度的横截面的横截面的分布。这些结果表明了新工具在低速率油和水平井中的标准PLOudoIning实施的潜力。将EXP数据与标准PL工具的解释提高了流入区域间隔的可靠性,流入液的相位组成,以及沿孔产生流体的相位分布。确定的现场数据的分析确定新的PL工具的温度测量的有效分辨率约为0.015k,以使有效的流体速度在0.5至15米/分钟的范围内,相应的分辨率为0.01至0.3米/分钟在沿水平井筒均匀流入的记录参数的空间分辨率为1至20米。空间分辨率的评估值基于优化的测井速度,考虑到TA测量细节,井建筑设计和总生产率。在这一横向井中的创新EXP的第一次现场测试,在低速率下生产水和油,在盘绕管道和拖拉机上输送工具。用EXP和标准PL工具记录的数据的联合解释证实,每个孔的流入曲线以及相速度和水流入区域的谱的曲线可靠地建立。

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