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Research to Break Oil Shale with High Pressure Water Jet Based on Bionic Nozzle

机译:基于仿生喷嘴的高压水射流破坏油页岩的研究

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Oil shale is a sedimentary rock, it is increasingly attracting widespread attention as petroleum supplement energy. Using borehole hydraulic mining techniques to mine oil shale seams at a certain depth in the underground, first and foremost is the use of high pressure water jet to make the overall oil shale ore broken into small pieces and peel them off parent rock. Based on the bionic theories, to design the bionic nozzles are adding several bionic units in the internal flow channel surface of the nozzle, it makes the original smooth flow channel inside the nozzle has become bionic non-smooth surface structure, to some extent, effectively improved the hydraulic characteristics of the nozzle internal flow channel, and reduced the flow resistance of the water. Based on CFD simulation and analysis, the reasons for upgrading effect of the crushed oil shale by the bionic nozzle high pressure water jet are analyzed. Experiments show that, in the same working conditions, bionic nozzle compared with the normal nozzle of the same structure parameters, the diameter of the erosion and crushing pit on oil shale samples expanded 4mm, and the crushing pit depth deepened 3.8mm using bionic nozzle.
机译:油页岩是一种沉积岩,越来越多地引起广泛的关注,因为石油补充能量。利用钻孔液压采矿技术在地下矿井油页面接缝,首先是使用高压水射流使整体油页岩矿碎成小块并剥离父母岩石。基于仿生理论,设计仿生喷嘴在喷嘴的内部流动通道表面上增加了几个仿生单元,它使喷嘴内的原始光滑的流动通道在一定程度上变得有效,有效地变成了仿生的非光滑表面结构改善喷嘴内部流动通道的液压特性,并降低了水的流动阻力。基于CFD仿真和分析,分析了仿生喷嘴高压水射流碾压油页岩效果升高的原因。实验表明,在相同的工作条件下,仿生喷嘴与相同结构参数的普通喷嘴相比,油页岩样品上侵蚀和破碎坑的直径膨胀了4mm,使用仿生喷嘴加深了3.8mm的破碎坑深度加深了3.8mm。

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