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Research on structure design and flow field characteristics of the novel jet bit for radial horizontal drilling

机译:新型径向水平钻头的结构设计及流场特性研究

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The self‐propelled swirling jet bit was designed to ensure the rock‐breaking efficiency of radial horizontal drilling and meet the roundness of borehole diameter and borehole shape. The jet bit provides swirling jet through internal rotating impellers and increases the drilling depth by jetting through the central holes on the impeller. Based on numerical simulation method, RNG k?ε turbulence model was employed to analyze the three‐dimensional flow characteristics of flow field inside and outside of the two kinds of jet bits. Moreover, the rock‐breaking efficiency of the two jet bits was also compared and analyzed in accordance with the laboratory experiments. The results show that the simulated bottom‐hole flow field for the two jet bits can be both divided into bottom‐hole overflow area, forward jetting area, and backward jetting area. The forward jet is a jet beam which consists of a central jet and four circumferentially equispaced jets, which generates more complex overflow area at the bottom hole. The maximum jet speed and the jet impact energy of forward jetting from the combined swirling and round multijet bit are larger than that of the swirling multijet bit. The speed attenuation law of forward jet nozzle from the two kinds of jet bits is similar. They both increase slowly in the mixing zone, while increase remarkably when approach to the nozzle. Then decrease linearly in the impact zone, and decline straightly when get close to the impact area. The simulation results of flow field characteristics are in coincidence with the actual rock‐drilling features. Therefore, the simulation results of flow field characteristics can provide guidance for jet bit design and structure parameter optimization for radial horizontal drilling.
机译:自推进旋流钻头的设计可确保径向水平钻孔的破岩效率,并满足井眼直径和井眼形状的圆度。射流钻头通过内部旋转的叶轮提供旋流射流,并通过射流通过叶轮上的中心孔来增加钻孔深度。基于数值模拟方法,采用RNG k?ε湍流模型对两种射流钻头内外流场的三维流动特性进行了分析。此外,还根据实验室实验比较和分析了两个射流钻头的破岩效率。结果表明,两个喷头的模拟井底流场可分为井底溢流区,前喷区和后喷区。前向射流是由中央射流和四个周向等距射流组成的射流束,它在井底孔处产生更复杂的溢流面积。组合的旋流和圆形多喷嘴钻头的最大正射流的最大射流速度和正射流冲击能量大于旋流多喷嘴钻头的最大射流速度和正射流的射流冲击能量。从两种射流钻头来看,前向喷嘴的速度衰减规律是相似的。它们都在混合区中缓慢增加,而在接近喷嘴时显着增加。然后在冲击区域呈线性下降,并在接近冲击区域时呈直线下降。流场特征的仿真结果与实际的凿岩特征相吻合。因此,流场特征的仿真结果可为径向水平钻井的射流钻头设计和结构参数优化提供指导。

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