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钻柱中声传播的影响因素 被引量:9

Influence factors of acoustic transmission in drill strings
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摘要 采用有限差分方法研究钻井液黏滞阻尼、地层阻尼系数及弹性系数、钻杆数量及钻铤的存在对钻柱中通带声波传播特性的影响,分析声波时域及频域分布。结果表明:钻井液黏滞阻尼影响声波在钻柱中传输的时域分布,但对声信号幅值及频域分布影响较小;地层阻尼系数影响大振幅声信号幅值及小振幅声信号分布,地层阻尼系数越大,大振幅声信号振幅略有减小,地层阻尼系数越小,小振幅声信号振动增多,振动杂乱;地层弹性系数影响声信号振动幅值,地层弹性系数越大,声信号幅值越大;钻杆数量影响声波的时域分布,钻杆数量越多,接收到的声信号幅值越小;在不考虑衰减的情况下,钻铤不影响声波的传播特性;钻柱结构对载波频率的选择起主要作用,其他因素及钻柱结构对中继装置的分布有影响。 Using the finite difference method, the transmission characteristics of the acoustic wave in the passband transmitting through the drill string were researched, and the influences of the viscous damping of the drill fluid, the formation damping co- effieient and elastic coefficient, the number of drill pipes and the existence of the drill collar were analyzed. The wave time do- main and frequency domain distributions were analyzed. The results show that the drilling fluid viscous damping has effect on a- eoustie wave time domain distribution, and has little effect on the acoustic wave signal amplitude and frequency domain distri- bution. Formation damping coefficient has effect on amplitude of the large amplitude acoustic wave and time domain of small amplitude acoustic wave. The amplitude of large amplitude acoustic wave is slightly smaller when the formation damping coeffi- cient is big, and vibration of small amplitude acoustic signal becomes messy when the formation damping coefficient is small. Formation elastic coeffieient has effect on vibration amplitude of acoustic wave, and the vibration amplitude of acoustic wave in- creases with the formation elastic coefficient increasing. Drill pipe quantity has effect on acoustic wave time domain distribu- tion, but has no effect on the frequency domain distribution. With the drill pipe quantity increasing, the received acoustic wave amplitude reduces. The drill eollar has no effect on acoustic transmission properties in drill string without eonsidering the atten- uation. The drill string structure plays a major role for the seleeted carrier frequency, and the other faetors and drill string structure have effect on the distribution of relay device.
出处 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2012年第5期89-95,共7页 Journal of China University of Petroleum(Edition of Natural Science)
基金 国家自然科学基金项目(50974131) 国家'973'重点基础研究发展计划项目(2010CB226706) 国家'863'高技术研究发展计划项目(2012AA091601) 高等学校博士学科点专项科研基金项目(20090133110005)
关键词 有限差分方法 钻井液 地层 时域分布 频域分布 钻柱 声波 finite difference method drilling fluid formation time domain distribution frequency domain distribution
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参考文献16

  • 1苏义脑.地质导向钻井技术概况及其在我国的研究进展[J].石油勘探与开发,2005,32(1):92-95. 被引量:137
  • 2张绍槐,张洁.21世纪中国钻井技术发展与创新[J].石油学报,2001,22(6):62-68. 被引量:71
  • 3DRUMHELLER D S. Acoustic telemetry study to improve drilling data[J]. JPT, 1993,45( 11 ) :1032.
  • 4MONTARON B A, HACHE J-M D, VOISIN Bernard, et al. Improvements in MWD telemetry: "the right data at the right time" [ R]. SPE 25356, 1993.
  • 5HEISIG G, SANCHO J, MACPHERSON J D. Dowhole diagnosis of drilling dynamics data provides new level drilling process[ J]. JPT, 1999,5 (2) :38-39.
  • 6GAO L, FINELY D, GARDNER W, et al. Acoustic te- lemetry can deliver more real-time downhole data in un- derbalanced drilling operations [ R ]. SPE 25642, 2006.
  • 7LEA S-H, KYLLINGSTAD A. Propagation of coupled pressure waves in borehole with drillstring [ R ]. SPE 37156, 1996.
  • 8NEFF J M, CAMWELL P L. Field-test results of an a- coustic MWD system[ R]. SPE/IADC 105021, 2007.
  • 9杜勇,胡建斌,李艳萍,李艳潮.声波传输测试技术在油田的应用[J].测控技术,2005,24(11):76-78. 被引量:17
  • 10赵国山,管志川,刘永旺.声波在钻柱中的传播特性[J].中国石油大学学报(自然科学版),2010,34(1):55-59. 被引量:43

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