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Modeling the Dynamic Pressure Response of Ball-Actuated Stimulation Sleeves

机译:球形激励套管的动态压力响应建模

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The industry relies on three primary measurements during fracturing operations: surface pressure, surface flow rate, and surface proppant concentration. The downhole environment is challenging for instrumentation. What can the surface pressure indicate? What does the surface pressure not indicate? Often, the pressure measurement is miles away from the event. This long distance often obscures the transient pressure signature, the surface-pressure measurement as a function of time. This obscuring is caused by the speed of sound in the carrier fluid, the compressibility of the pipe in the completion, and other factors. A transient finite-difference model of a horizontal multiple-interval completion for an induced-fracture shale reservoir was developed to investigate the pressure-transient signatures of different events during the fracturing operation. Model results will be shown for different types of events, such as sleeve shifting, fracture initiation, opening a sleeve into a zone with an existing fracture, and fracturing a zone with high leakoff. Certain types of events have distinct pressure signatures. Other events can have similar pressure signatures. Some events can have no surface-pressure signature at all. The model results will be compared with field data. While the focus of the results is on horizontal multiple-interval shale completions, the results can also provide insight into other types of fracturing operations and will aid in the interpretation of pressure signatures.
机译:该行业在压裂作业中依赖于三个主要测量指标:表面压力,表面流速和表面支撑剂浓度。井下环境对仪器而言具有挑战性。表面压力可以指示什么?表面压力没有表示什么?通常,压力测量距离事件很远。这种长距离通常会掩盖瞬态压力信号,即表面压力测量值随时间的变化。这种混淆是由载液中的声速,完井中管道的可压缩性以及其他因素引起的。为了研究压裂作业中不同事件的压力瞬变特征,建立了诱导裂缝性页岩储层水平多段完成的瞬态有限差分模型。将针对不同类型的事件显示模型结果,例如套管移动,裂缝萌生,将套管打开到具有现有裂缝的区域中以及将渗漏程度高的区域压裂。某些类型的事件具有不同的压力特征。其他事件可能具有类似的压力信号。某些事件根本没有表面压力信号。模型结果将与现场数据进行比较。虽然结果的重点是水平多间隔页岩完井,但结果也可以提供对其他类型压裂作业的深入了解,并有助于解释压力特征。

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