Example: bachelor of science

最新の坑井掘削技術(その2 - kelly.t.u-tokyo.ac.jp

Reprint . 2 .. 70 .. 1.. 1 .. 0 .. 2 .. MWD etc. 1 . No. 149 06 05 5. Reprint .. Build Hold . KOP.. Drop .. EOC . 2 .. 3 .. KOP .. 2.. 1890 .. BHA . BHA bottomhole assembly . 1933 1 .. BHA . 3 1960 .. BHA . BHA . BHA . 6 No. 149 06 05 . Reprint .. BHA . 1960 positive dis- placement motor PDM .. Moineau pump .. 4 .. BHA .. 1962 . 5 .. 1 3 .. Dyna-Drill .. 4 BHA 5 .. No. 149 06 05 7. Reprint . rpm .. 6 2 . 1980 .. 5 .. 3.. 2,3.. 2 .. 6 .. 1996 . PDM.. 2 1950 .. 8 No. 149 06 05 . Reprint . 4 .. MWD .. 2 .. 1970 8 .. (1) . (2) . (3) 0 360 .. 3 .. minimum curvature method .. Sperry- . Sun Geo-Pilot .. inclination .. MD azimuth N. 7 8 .. No. 149 06 05 9. Reprint . 4.. MWD measurement while drilling 1929 .. MWD . BHA . 1980 1995 . 1978 5,002 m . MWD . 1997 . 1,260 m .. 20 . 16 bps . KOP 90 . EOC 2 .. 3 . 3,000 1,000 ft . 2 6 /100ft 4,500 1,500 ft .. 1970 Shell Development.

Reprint 最新の坑井掘削技術(その2) 東京大学 大学院工学系研究科 地球システム工学専攻 助手 長 縄 成 実

Tags:

  Tokyo, Kelly

Information

Domain:

Source:

Link to this page:

Please notify us if you found a problem with this document:

Other abuse

Transcription of 最新の坑井掘削技術(その2 - kelly.t.u-tokyo.ac.jp

1 Reprint . 2 .. 70 .. 1.. 1 .. 0 .. 2 .. MWD etc. 1 . No. 149 06 05 5. Reprint .. Build Hold . KOP.. Drop .. EOC . 2 .. 3 .. KOP .. 2.. 1890 .. BHA . BHA bottomhole assembly . 1933 1 .. BHA . 3 1960 .. BHA . BHA . BHA . 6 No. 149 06 05 . Reprint .. BHA . 1960 positive dis- placement motor PDM .. Moineau pump .. 4 .. BHA .. 1962 . 5 .. 1 3 .. Dyna-Drill .. 4 BHA 5 .. No. 149 06 05 7. Reprint . rpm .. 6 2 . 1980 .. 5 .. 3.. 2,3.. 2 .. 6 .. 1996 . PDM.. 2 1950 .. 8 No. 149 06 05 . Reprint . 4 .. MWD .. 2 .. 1970 8 .. (1) . (2) . (3) 0 360 .. 3 .. minimum curvature method .. Sperry- . Sun Geo-Pilot .. inclination .. MD azimuth N. 7 8 .. No. 149 06 05 9. Reprint . 4.. MWD measurement while drilling 1929 .. MWD . BHA . 1980 1995 . 1978 5,002 m . MWD . 1997 . 1,260 m .. 20 . 16 bps . KOP 90 . EOC 2 .. 3 . 3,000 1,000 ft . 2 6 /100ft 4,500 1,500 ft .. 1970 Shell Development.

2 700. 300 ft 8 50 /100ft . 40 20 ft 150 . 300 /100ft .. IntelliPipe .. 5 1 .. 10 No. 149 06 05 . Reprint . 70 . 1953 .. 9 . 17 . 6 .. 1 1 6 . 2 . 9 .. 3 8 .. 2 .. 3 4 . 6 .. 7 .. 9 .. 1 . Level . 1 . 2 . 3 . 4 . 5 . 6 . No. 149 06 05 11. Reprint . 2) Williams, M., 2004: Better Turns for Ro- tary Steerable Drilling. Oil eld Review, JOGMEC Vol. 16, No. 1, pp. 4 9. 3) Downton, G., Klausen T. S., Hendricks, A. and Pa tis, D., 2000: New Directions JOGMEC in Rotary Steerable Drilling. Oil eld Re- view, Vol. 12, No. 1, pp. 18 29. Cuttings Transport 4) Warren, T., 1998: Rotary-Steerable Flow Loop System CTFLS Technology Part 1: Technology Gains Momentum, Oil & Gas Journal, Vol. 96, December 21, pp. 101 105. 5 5) Fischer, P. and Wigginton, K. L., 2005: Drillstring Telemetry evolves toward Full Commercialization, World Oil, Vol. 226, No. 7, pp. 51 52. 10 6) Bosworth, S.

3 Et al., 1998: Key Issues in Multilateral Technology, Oil eld Review, Vol. 10, No. 4, pp. 14 28. 7) Fraija, J. et al., 2002: New Aspects of Multilateral Well Construction, Oil eld Review, Vol. 14, No. 3, pp. 52 69. 8) , 2005: . ERD , . 1) Brantly, J. E., 1971: History of Oil Well , Vol. 39, No. 4, 35. Drilling, Gulf Publishing, pp. 1473 1474. 10 . 12 No. 149 06 05.


Related search queries