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Study of Different Angle Inner Nozzle Flow Field Based on Suction-Type RC Bit

机译:基于吸式RC钻头的不同角度内喷嘴流场研究

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In order to improve the reverse circulation(RC) pumping performance and enhance the effect of RC, the suction-type RC bit on the basis of ejection theory was designed. And with theoretical calculations, computational fluid dynamics(CFD) and experiment, pressure field and velocity field produced by different angle inner nozzles were studied. It was discussed the feasibility of suction principle in enhancing RC effect, and at the same time it was provided a theoretical basis to optimize the design of RC bit. The results show that applying ejectors to improve RC performance is absolutely feasible. Also, the pressure field and velocity field produced by the suction-type RC bit, as the injection angle increases, the pumping capacity both intersection inner nozzle and spiral inner nozzle is decreased, and the spiral inner nozzle's changes rapidly.
机译:为了提高反循环抽水性能,增强反抽水效果,根据弹射原理设计了抽油式RC钻头。并通过理论计算,计算流体力学(CFD)和实验研究了不同角度内喷嘴产生的压力场和速度场。讨论了抽吸原理提高RC效果的可行性,同时为优化RC钻头的设计提供了理论依据。结果表明,应用喷射器来改善RC性能是绝对可行的。而且,由吸入型RC钻头产生的压力场和速度场,随着喷射角的增加,相交内部喷嘴和螺旋内部喷嘴的泵送能力都降低,螺旋内部喷嘴的变化迅速。

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