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Evaluation of Frac Hit Risks in Aishwarya Barmer-Hill Field Development Utilising GIS Platform

机译:利用GIS平台评估Aishwarya Barmer-Hill Field Develop的FRAC袭击风险

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Frac Hit is an inter-well communication event where an offset well is affected by the pumping of a hydraulic fracturing treatment in a new well. Close well spacing,increased fracture density(number of fracs per well),and larger fracture treatments increase the chance of a Frac Hit. This paper demonstrates how a Geographic Information System(GIS)was used in the Barmer Hill oil reservoir to quantify the risks of a Frac Hit on a well by well basis. The Aishwarya Barmer Hill(ABH)field(<1 mD/cp)overlies the prolific Aishwarya Fatehgarh(AF)field(>3 Darcy’s). The AF field was developed first with 71 wells. All of these wells for AF reservoir penetrated through shallower ABH reservoir at an average spacing of ~100 m. The ABH field development plan calls for 1000 m long horizontal laterals with a ~180 m distance between the wells to efficiently drain the entire ABH structure. The hydraulic fractures planned in ABH wells had an average fracture half-length of ~100 m with 10 stages per well. With the spacing equal to the fracture half length,the likelihood of a Frac Hit between ABH horizontal wells was high. The presence of the nearby AF wells only added to the risk. GIS enabled software was used to evaluate the risk magnitude and the observations were used to prepare a mitigation plan. All the well trajectories for both reservoirs were mapped inside the 3D reservoir structure. As a first case,a potential strike zone(PSZ)with a radius equal to the frac half-length was generated around the planned ABH wells. Wells were considered at risk if a PSZ intersected another well or another PSZ. Then all of the planned hydraulic fractures were mapped in 3 dimensions using the known fracture propagation azimuth(from appraisal well micro-seismic data)and the simulated fracture dimensions(Half-lengths & heights)using fully 3D frac modeling software. The procedure clearly identified the cases(well/stage)which had a high potential for a Frac Hit. After identifying the high-risk cases,appropriate steps were taken to minimize the risk. The available options were to change the well trajectory,modify the fracture location(shift or remove stages),or propose additional surveillance. The Frac Hit phenomena is a sub-surface integrity related concern which has been reported on in many technical papers. This work proposes a method for quantifying and minimizing the risks using a GIS platform. A method for categorizing the various risk cases based on well spacing,perforation and fracture initiation points is proposed. This method was studied for the ABH wells during the well planning phase and shall be applied in order to minimize Frac Hit risks. The information provided could also be directly utilized for in-fill development project for tight fields.
机译:FRAC命中是一个井间沟通事件,其中偏移良好受到新井中的液压压裂处理的影响。近距离间距,增加断裂密度(每孔的近距数),较大的骨折处理增加了FRAC击中的可能性。本文展示了如何在Barmer Hill油藏中使用地理信息系统(GIS),以量化井中的FRAC击中的风险。 Aishwarya Barmer Hill(ABH)领域(<1 MD / CP)覆盖多产Aishwarya Fatehgarh(AF)领域(> 3达西的)。 AF领域首先开发出71孔。所有这些井都适用于AF水库穿过浅〜100米的平均间距。 ABH现场开发计划要求1000米长的水平横向,井之间的距离〜180米,有效地排出整个ABH结构。计划在ABH孔中的液压骨折平均骨折半长度为100μm,每孔10个阶段。随着间距等于骨折半长,ABH水平井之间的FRAC的可能性很高。附近的AF井的存在仅增加了风险。 GIS支持的软件用于评估风险幅度,使用观察来准备缓解计划。两个水库的所有井轨迹都映射在3D水库结构内。作为第一种情况,在计划的ABH孔周围产生具有等于FRAC半长度的半径的潜在打击区(PSZ)。如果PSZ交叉另一个井或其他PSZ,井被认为是风险的。然后,使用完全3D FRAC建模软件,使用已知的裂缝传播方位角(来自评估孔微地震数据)和模拟骨折尺寸(半长度和高度)的所有计划的液压裂缝映射为3尺寸。该程序明确确定了对FRAC击中的高潜力的情况(井/阶段)。在识别高风险案例后,采取了适当的步骤来最大限度地减少风险。可用选项是改变井轨迹,修改骨折位置(移位或移除阶段),或提出额外监测。 FRAC命中现象是在许多技术论文中报告的子表面完整性相关的问题。这项工作提出了一种使用GIS平台量化和最小化风险的方法。提出了一种基于井间距,穿孔和裂缝起始点对各种风险案例进行分类的方法。在井规划阶段研究了ABH井的这种方法,应采用以最大限度地减少FRAC击中风险。所提供的信息也可以直接用于填补领域的填充开发项目。

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