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A Novel Technology for Locating and Evaluating Hydraulic Fractures in Horizontal Wells – Modeling and Field Results

机译:水平井上定位和评估液压骨折的新技术 - 建模与现场结果

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Non-radioactive tracer tagged proppant technology has been used successfully in over 200 vertical wells to obtain fracture height and gravel pack coverage,but had yet to be modeled or tested in horizontal wells,where the borehole and fracture geometry is radically different.The purpose of this paper is to demonstrate the effectiveness of this new technology to locate proppant placement and to evaluate the efficiency of perforations and clustering in fracturing operations in horizontal wells.The new technology utilizes a pulsed neutron capture(PNC)logging tool to detect the tagged proppant,which has a high thermal neutron capture cross-section.Monte Carlo software is utilized to simulate the responses of different pulsed neutron measurements to vertical fracture planes along a horizontal wellbore.The tool responses were analyzed and the best PNC measurement parameters were determined for locating proppant placement in the fractures,and hence for determining perforation and cluster efficiency.A field test was the conducted to validate modeling results in a horizontal well with multi-stage fracturing operations.Modeling data and the field log example show that it is feasible to use the taggant and a PNC tool to locate proppant placement and determine the efficiency of perforations and clustering in horizontal wells.Furthermore,the analysis of the depth intervals of tracer signals and the known axial and radial resolutions of the PNC measurements show that the depth interval of tracer signals along the wellbore may provide a qualitative indicator of one or more of the following:(1)the presence of multiple fractures opposite perforation(s),(2)the angle between the wellbore axis and the fracture plane for ideal conditions(e.g.the more narrow the tracer signal along the log,the closer the fracture plane is to being perpendicular to the wellbore axis),and/or(3)proppant placement in the borehole region.Moreover,a new near-wellbore connectivity index has been developed based on identifying and using the most suitable PNC log parameters for the evaluation.The index indicates how well the induced fracture is connected to the wellbore at locations of all perforations/clusters.The field test demonstrated that this new technology met all of the operator's objectives,with tracer signals clearly observed in all stages.This paper will present the modeling work and the results from the field test.The new non-radioactive proppant tracer technology provides for the first time the ability to evaluate proppant location in horizontal wells without encountering the health,safety,and environmental issues associated with using radioactive tracers.The determination of proppant placement and perforation efficiency,and a near-wellbore connectivity index,can be employed to evaluate the success and effectiveness of individual perforations and stages,and to optimize future completion designs and processes for enhancing hydrocarbon recovery.
机译:非放射性示踪标记的支撑剂技术已成功使用200多个垂直井以获得裂缝高度和砾石包装覆盖,但尚未在水平孔中进行建模或测试,其中钻孔和裂缝几何形状是完全不同的。本文旨在展示这项新技术的有效性来定位支撑剂放置,并评估水平井压裂操作中的穿孔和聚类的效率。新技术利用脉冲中子捕获(PNC)测井工具来检测标记的支撑剂,其具有高的热中子俘获横section.Monte卡罗软件被用于模拟不同的脉冲中子测量以垂直裂缝平面的响应沿水平wellbore.The工具响应进行分析,最好PNC测量参数确定用于定位的支撑剂放置在骨折中,因此用于确定穿孔和簇效应ience.A现场测试是指在多级压裂操作中验证建模结果。使用Taggant和PNC工具来定位Proppant放置并确定它是可行的水平井中穿孔和聚类的效率。速温,示踪信号的深度间隔和PNC测量的已知轴向和径向分辨率的分析表明,沿井筒的示踪信号的深度间隔可以提供一个或一个或多或少的定性指示器更多以下:(1)存在多个骨折相反穿孔(S),(2)井筒轴和断裂面之间的角度,用于理想条件(例如,沿着日志沿着日志更窄的示踪信号较窄,更近断裂平面垂直于井筒轴线),和/或(3)钻孔区域中的支撑剂放置。载体,近井眼连通性指数已经基于在识别和使用最适合评估的PNC日志参数上。该指数表示诱导骨折在所有穿孔/簇的位置连接到井筒的良好。现场测试表明,这项新技术符合所有运营商的目标,通过所有阶段清楚地观察到的示踪信号。本文将介绍建模工作和现场测试的结果。新的非放射性支撑剂示踪技术提供了第一次评估水平井中的支撑位位置的能力,而不遇到健康使用放射性示踪剂相关的安全和环境问题。采用近期井喷效率的确定测定,以及近井眼连通性指数,可用于评估单个穿孔和阶段的成功和有效性,并优化未来的完成设计和增强烃恢复的方法。

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