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Hydraulic fracturing process by using a modified two-dimensional particle flow code - method and validation

机译:使用改进的二维颗粒流代码进行水力压裂过程-方法与验证

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摘要

Hydraulic fracturing had been proved as a very useful tool for unconventional oil and gas development, where the fracturing fluid is injected into tight reservoirs under high pressure to enhance the permeability of rock. mass. Although hydraulic fracturing theory, numerical modelling, and laboratory experiments develops fast, knowledge is still limited when the geological conditions are complex. This paper presents a numerical method - particle flow code (PFC) - and validates its power for hydraulic fracturing modelling in complex conditions. Firstly, the bonded particle method (BPM) and fluid-mechanical coupling mechanism are introduced; secondly, Darcy's flow in circular particles is simulated; thirdly, a series of numerical simulations is carried out to validate its suitability for hydraulic fracturing modelling; finally, the laminated reservoir will be modelled by BPM. The modelling results show good agreement with classical analytical solution and laboratory test results, which demonstrates that the BPM is a useful and strong tool for understanding the fracturing behaviour of reservoir rocks.
机译:水力压裂已被证明是非常规油气开发的非常有用的工具,在高压下将压裂液注入致密油藏以提高岩石的渗透性。质量尽管水力压裂理论,数值模拟和实验室实验发展迅速,但当地质条件复杂时,知识仍然有限。本文提出了一种数值方法-颗粒流代码(PFC)-并验证了其在复杂条件下进行水力压裂建模的能力。首先介绍了结合颗粒法(BPM)和流固耦合机理。其次,模拟了达西在圆形粒子中的流动。第三,进行了一系列数值模拟,验证了其在水力压裂建模中的适用性。最后,叠层油藏将通过BPM建模。模拟结果与经典解析解和实验室测试结果吻合良好,表明BPM是理解储集层裂缝行为的有用而强大的工具。

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