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Rock mechanical principles help to predict proppant flowback from hydraulic fractures

机译:岩石力学原理有助于预测水力压裂产生的支撑剂回流

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Propped hydraulic fracture stimulation is widely used to improve field economics. After treatment some fractures have been found to produce proppant back to surface and this can limit the economic gains from the stimulation. In this paper an analysis of laboratory flowback tests is presented in the form of a 3D stability surface. This enables prediction of when initial flowback occurs for plain proppant. Numerical modeling techniques are introduced that can be used to determine the quantity of produced proppant. For the field application of interest, the calculated proppant volumes compare well with that recovered from the first two fracture jobs. The effectiveness of curable Resin Coated Proppants (RCP) is studied by computer simulation. The approach is the same as that taken when making sand production predictions in clastic reservoirs. Laboratory testing is presented to support the conclusions from the simulation work.
机译:带支撑的水力压裂增产措施被广泛用于提高油田经济性。治疗后,发现一些裂缝会产生支撑剂回到地面,这可能会限制增产的经济收益。本文以3D稳定性表面的形式对实验室回流测试进行了分析。这使得能够预测何时会发生普通支撑剂的初始回流。引入了数值建模技术,可用于确定生产的支撑剂的数量。对于感兴趣的现场应用,所计算的支撑剂体积与从前两个压裂作业中回收的支撑剂体积比较好。通过计算机仿真研究了可固化树脂包覆支撑剂(RCP)的有效性。该方法与在碎屑岩储层中预测出砂量时所采用的方法相同。提出了实验室测试以支持仿真工作的结论。

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