The Effect of Cylindrical Valve Structure on the Performance of Turbine-Driven Mud Pulse Generators
-
摘要: 针对现有水力脉冲振荡工具的动力系统及脉冲发生装置所存在的问题,提出了一种基于柱阀系统的涡轮式压力脉冲发生器,重点研究了柱阀结构参数对压力波形和波幅的影响。以阀芯柱面开口扇形角、阀座周向过流槽的轴向长度、固定节流孔数量与直径等参数为变量,并最终统一为柱阀的固定过流面积和周向过流面积,应用仿真软件Fluent模拟研究了不同结构参数对压力波形和波幅的影响规律。研究结果显示,柱阀的结构参数对脉冲发生器的性能影响非常显著:当钻井液流量一定时,固定节流总过流面积主要影响脉冲压力的最大值,不会改变脉冲压力高压区的宽度;可变的周向过流面积主要影响脉冲压力高压区的宽度,不会改变脉冲压力幅值。该研究结果对不同工况所要求的压力波形波幅的设计及井下脉冲振荡工具的优化设计具有参考价值。Abstract: Because of problems in the power system and also the pulse generating system of the pulse oscillator,mud pulse generators based on the cylinder valve have been developed.This paper reviews the effects of structural parameters of cylindrical valves on waveforms and amplitudes of the pressure.Taking the axial length of the valve seat circumferential opening,and the number of fixed orifices and the diameter of the fixed throttle as variables,the impact of different structural parameters on the pressure waveform are investigated by using CFD and FLUENT.Research results indicate that the structural parameters of the valve have significant influence on the performance of the generator.Under constant flow rate of drilling fluids,the sectional area in the fixed throttle may affect the maximum pulse pressurebut not the high-pressure range.On the other hand,the variable channel of the circumferential flows mainly affects the range of the pulse pressure but not the amplitude.Conclusions of the study may provide necessary reference for the design of the waveforms and amplitudes of pressure under the different working conditions,and thus optimize the design of pulse oscillation tools.
-
Keywords:
- pulse pressure generator /
- cylinder valve /
- structural parameter /
- pulse pressure /
- amplitude /
- waveform /
- CFD simulation
-
-
[1] 柳鹤,冯强,周俊然,等.射流式水力振荡器振动频率分析与现场应用[J].石油机械,2016,44(1):20-24. LIU He,FENG Qiang,ZHOU Junran,et al.Vibration frequency analysis of jetting hydraulic oscillator[J].China Petroleum Machinery,2016,44(1):20-24. [2] 罗朝东,鄢标,夏成宇,等.水力振荡器性能影响因素试验研究[J].石油机械,2016,44(1):25-28. LUO Chaodong,YAN Biao,XIA Chengyu,et al.Experimental study on the factors impacting the performance of the hydraulic oscillator[J].China Petroleum Machinery,2016,44(1):25-28. [3] 余长柏,黎明,刘洋,等.水力振荡器振动特性的影响因素[J].断块油气田,2016,23(6):842-845,850. YU Changbai,LI Ming,LIU Yang,et al.Influence factors on vibration characteristics of hydraulic oscillator[J].Fault-Block Oil Gas Field,2016,23(6):842-845,850. [4] 明瑞卿,张时中,王海涛,等.国内外水力振荡器的研究现状及展望[J].石油钻探技术,2015,43(5):116-122. MING Ruiqing,ZHANG Shizhong,WANG Haitao,et al.Research status and prospect of hydraulic oscillator worldwide[J].Petroleum Drilling Techniques,2015,43(5):116-122. [5] 李永波.石油钻井用水力振荡器的设计及分析[D].扬州:扬州大学,2015. LI Yongbo.Design and analysis of hydraulic oscillator for oil drilling[D].Yangzhou:Yangzhou University,2015. [6] ALALI A,BARTON S P.Unique axial oscillation tool enhances performance of directional tools in extended reach applications[R].SPE 143216,2011.
[7] CUI Longlian,ZHANG Fucheng,WANG Haige,et al.Development and application of adjustable frequency pulse jet generating tool to improve rate of penetration in deep wells[R].SPE 155799,2012.
[8] 王杰,夏成宇,冯定,等.新型涡轮驱动水力振荡器设计与实验研究[J].工程设计学报,2016,23(4):391-395,400. WANG Jie,XIA Chengyu,FENG Ding,et al.Design and experimental study on a new type of turbine driven hydraulic oscillator[J].Journal of Engineering Design,2016,23(4):391-395,400. [9] 赵罘,杨晓晋,赵楠.SolidWorks2016中文版机械设计从入门到精通[M].北京:人民邮电出版社,2016:42-155,284-288. ZHAO Fu,YANG Xiaojin,ZHAO Nan.SolidWorks2016(Chinese) entry to the master of mechanical design[M].Beijing:People’s Posts and Telecommunications Press,2016:42-155,284-288. [10] 郑力铭.ANSYS Fluent 15.0流体计算从入门到精通[M].北京:电子工业出版社,2015:21-190. ZHENG Liming.ANSYS Fluent 15.0 entry to the mastery of fluid computing[M].Beijing:Publishing House of Electronics Industry,2015:21-190. -
期刊类型引用(2)
1. 倪华峰,李国宏. 基于滑移网格技术的振荡器脉冲压力数值模拟. 石油机械. 2020(04): 31-36 . 百度学术
2. 魏俊,冯进. 端面密封式旋转阀结构对脉冲压力的影响. 石油钻采工艺. 2018(01): 52-57 . 百度学术
其他类型引用(2)
计量
- 文章访问数: 5665
- HTML全文浏览量: 58
- PDF下载量: 5169
- 被引次数: 4