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首页> 外文期刊>Arabian Journal for Science and Engineering >Numerical Simulation on the Interaction Modes Between Hydraulic and Natural Fractures Based on a New SPH Method
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Numerical Simulation on the Interaction Modes Between Hydraulic and Natural Fractures Based on a New SPH Method

机译:基于新的SPH方法的液压自然骨折交互模式数值模拟

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摘要

In order to study the interaction mechanisms between hydraulic fractures (HF) and natural fractures (NF), a new numerical method named 2P-IKSPH has been proposed. The interactions between HF and NF under different conditions are simulated, results show that under the condition of low vertical confining pressure and low injecting rate, NF initiates at one tip closer to the horizontal boundary; under the condition of high vertical confining pressure, high injecting rate and small inclination angle of NF, the branching phenomenon occurs. The confining pressure, inclination angle and injecting rate all have significant impacts on the characteristic loads (e.g., HF initiation pressure, approaching pressure and NF initiation pressure). The research results can provide some references for the understanding of interaction mechanisms between HF and NF; meanwhile, developing high performance 3D 2P-IKSPH program will be the future research directions.
机译:为了研究液压骨折(HF)和天然骨折(NF)之间的相互作用机制,已经提出了一种名为2P-IKSPH的新数值方法。 模拟HF和NF之间的相互作用是模拟不同条件的,结果表明,在低垂直狭窄压力和低注射率的条件下,NF在靠近水平边界的一个尖端开始。 在高垂直狭窄压力的条件下,高注射率和NF的小倾斜角,发生分支现象。 限制压力,倾斜角度和注射率均对特征负荷有重大影响(例如,HF启动压力,接近压力和NF引发压力)。 研究结果可以为理解HF和NF之间的相互作用机制提供一些参考。 同时,开发高性能3D 2P-IKSPH程序将是未来的研究方向。

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