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Mikrotunelowanie w skałach : przegląd technologii

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Warianty tytułu
EN
Rock microtunneling : an industry review
Języki publikacji
PL
Abstrakty
PL
Od roku 1995 i szczególnie od 2000, mikrotunelowanie stało się coraz bardziej popularną technologią budowy instalacji rurowych oraz kablowych. Niniejszy artykuł przedstawia spostrzeżenia autorów, wynikające z ich doświadczeń przy realizacji projektów oraz prezentuje 29 zrealizowanych w różnych miejscach świata przypadków mikrotunelu, wykonywanego w warunkach formacji skalnej. Przedstawione obserwacje i wnioski dotyczą znaczenia w całym procesie mikrotunelowania takich zmiennych, jak typ skały oraz wytrzymałość na ściskanie jednoosiowe, wraz z kilkoma innymi zagadnieniami projektowymi, dotyczącymi potencjalnych średnic, długości przecisków oraz wymagań sprzętowych. Ocenie poddano tu zalety, wady oraz ograniczenia technologii mikrotunelowania w skale, a także zaprezentowano wytyczne i wskazówki przydatne podczas dobierania osprzętu. Nie ma żadnych wątpliwości, że instalacje mikrotunelowe wykonywane w skałach wyrobiły sobie stabilną pozycję na naszym rynku.
EN
Since 1995 and particularly since 2000, rock microtunneling has become an increasingly common construction technique for utility pipeline and cable installation. This paper provides insights from the authors' experience on projects plus an overview of 29 rock microtunneling cases around the globe. Observations and conclusions are presented on eff ects of such variables as rock type and unconfi ned compressive strength along with several other design considerations on potential diameters, drive lengths, and equipment requirements. It examines the advantages, disadvantages, and limitations of microtunneling in rock and provides a useful parameter roadmap when selecting equipment for rock applications.
Rocznik
Tom
Strony
26--34
Opis fizyczny
Bibliogr. 44 poz., tab., wykr.
Twórcy
autor
autor
  • Global Tunneling Technology, Las Vegas
Bibliografia
  • 1. Abbott D. G., (1996). The Utilization of Microtunneling to Install Underground Pipes and Tunnels in Hard Rock, North American Tunneling '96, A.A. Balkema, April, Volume 1: 3-9.
  • 2. Abbott D. & Lyman T., (2006), Microtunneling Workshop for Municipalities & Engineers, Proceedings: 2006 Underground Construction Technology - Atlanta, Session T2A.
  • 3. AGD, (2003) Iseki Brochure, AGD Equipment Limited, United Kingdom: 7 pages
  • 4. Adams E., (2001), Microtunnelling Innovations, Proceedings of International No-Dig 2001 - Prague, ISTT: 11p.
  • 5. Babendererde L., (2003), Problems of TBMs in Water Bearing Ground, Proceedings of Summerschool 2003 on Rational Tunnelling, University of Innsbruck, 20p
  • 6. Balasubramaniam, B. K. (2005), Microtunnelling in Rock and Soft Ground Strata - Asia Pacific Experiences, Proceedings of 2005 World Tunneling Conference, Seoul, ITA-AITES. C96: 871-875.
  • 7. Barla M. et al (2006), Analysis of jacking forces during microtunneling in limestone, Tunnelling and Underground Space Technology, 21: 668-683. [Also see International No-Dig 2004 - Hamburg, Germany]
  • 8. Bennett D., Duyvestyn G. Wallin M., Hagen-Burger B., & Spiegel D., (2004), Construction of Beaver Water District Microtunneled Intake Pipelines and Intake Shafts Through Karstic Limestone, Proceedings No-Dig 2004, NASTT, Paper B-2-01, 11p.
  • 9. Bennett D., (2006), From One Extreme to the Other: Challenges with Microtunneling in Very Soft Soils and Hard Rock, Proceedings No-Dig 2006, NASTT, Paper A-2-05, 11p.
  • 10. Bradshaw J., (2006), Upper Jones Falls Interceptor,, Bradshaw Construction Corp., telephone discussion with Steve Hunt.
  • 11. Broomfield J., (2002), Long distance pipe jacking in hard rock. Internet download, publisher unknown: 10p.
  • 12. Broomfield J., (2003), Complex Pipejack Alignment in South Korea, No-Dig International, November/December 2003: 9-11.
  • 13. Broomfield J., (2004), Seoul Microtunneling Project Overcomes Challenging Conditions, Tunnels & Tunnelling International, January 2004: 1-18 to 1-20.
  • 14. Broomfield J., (2004), Long distance pipe jacking in Asia. Tunnels & Tunnelling International, July 2004: 40-42.
  • 15. Calio V. J., & Nee, F., (2004), Multiple Tunneling Methodologies in Atlanta, GA, Proceedings No-Dig 2004, NASTT, Paper B-2-02, 13p.
  • 16. Camp, D. C., (2001), Case History of a Mixed Ground Microtunnel, Proceeding of 2001 Rapid Excavation and Tunneling Conference, SME, C9: 91-96.
  • 17. Clark I. (1997), “Sewage Treatment for the North East [Horden Outfall],” No-Dig International, Aug 1997: 3 p.
  • 18. Clark I. (2005), Pipejacking in downtown Hong Kong, Tunnelling & Trenchless Construction, October 2005: 12-14.
  • 19. Coluccio J. 2006, Perry-Taggert Sanitary Sewer Project, Notes from teleconference with S. Hunt, CH2M HILL: 4p.
  • 20. Deere D. W., Goss C. M. & Church, (2005),. Roadheader Tunneling and Microtunneling in Low Strength Claystone at Standley Lake, Colorado, Proceeding of 2005 Rapid Excavation and Tunneling Conference, SME, C97: 1208-1217 [also CH2M HILL files]
  • 21. Desrochers D. & Navratil P., (1997). Clark Drive Sanitary Trunk Sewer Installation - Microtunneling, Proceedings of No-Dig '97, NASTT: 286-298.
  • 22. Fowler J., (2009), Nacimiento Lake Tap MTBM, Phone Conversation with Steve Hunt.
  • 23. Frank G., (1999), Performance Prediction for Hard-Rock Microtunneling, Proceedings No-Dig 1999, NASTT, 11p.
  • 24. Friant J. E. & Ozdemir L. (1994), Development of the High Thrust Mini-Disc Cutter for Microtunneling Applications. No-Dig Engineering. June 1994: 12-15.
  • 25. Grasso P. & Mahtab A., (1995), Design and pilot testing of a remote controlled microtunnel boring machine (MTBM) for competent rock, Proceedings: 3rd International Sysmposium on Microtunnel Construction - Munich, Balkema, Rotterdam: 7p.
  • 26. Guardia R. J., Winkler K., Rasmussen, P. & Lewtas T. (2005), Lake Ft. Smith Microtunneling Lake Tap, Proceeding of 2005 Rapid Excavation and Tunneling Conference, SME: 1262-1271.
  • 27. Guerini A., (2002), Construction of a SA Methane Pipeline in Val Baganza, No-Dig International, August 2002: 7-10.
  • 28. Haynes C., Hollenbeck J. R. & Mueller C., (2008), Nacimiento Lake Tap, Proceeding of 2008 North American Tunneling Conference, SME, C69: 558-565.
  • 29. Herrenknecht M., (1999), Development and Utilization of Innovative Tunnelling Techniques - Some of Which Have Been Developed from Those in Use with Large Diameter Tunnel Machines, Proceeding of 1999 Rapid Excavation and Tunneling Conference, SME, C44: 781-798.
  • 30. Herrenknecht.com, (2009), Bilbao Spain Sewer, www.herrenknecht.com/projects: 1p
  • 31. Ho M. K., Nguyen T, and Kam A., (2003), A Case Study of Tunneling Through Tulare Hill in San Jose, Proceedings No-Dig 2003, NASTT: A-2-02.
  • 32. Hobas, (1999), Hole-In-One, //www.hobaspipe.com/hole_in_one.asp: 2p.
  • 33. Leiendecker H. (2006), Partnering Concept Applied: Microtunneling in Hard Rock, Proceedings No-Dig 2006, NASTT: A-2-01.
  • 34. Mickelson R. D., Kennedy P., Parnell R. J. & Milton R., (2004), Pipejacking of the Palmer Street Main Drain Diversion Melbourne, Victoria, Proceedings: The 6th National Conference of the Australasian Society for Trenchless Technology, ASTT: 11p.
  • 35. Miller P. J. (1996), West Coast Microtunneling Finds Niche. Trenchless Technology, Mar. 1996:40-43.
  • 36. Nee F., (2003), Hopewell Sanitary Sewer, Notes from teleconferences and project research by S. Hunt and S. Fradkin in support of Shayler Run Trunk Sewer Project, MWH: 3p.
  • 37. Ozdemir L. (1995). Comparison of Cutting Efficiencies of Single-Disc, Multi-Disc an Carbide Cutters for Microtunneling Applications. No-Dig Engineering. March 1995. pp18-23.
  • 38. Roby J., Sandell T., Kocab J. & Lindbergh L., (2008). The Current State of Disc Cutter Design and Development Directions, Proceeding of 2008 North American Tunneling Conference, SME, C4: 36-45.
  • 39. Rush J. W., (2006), Expansive Mortar Assists Job in Baltimore, Tunnel Business Magazine, December 2006: 16-17.
  • 40. Subterra-Engineering, (2009), Dublin Gas Pipeline – Microtunneling, www.subterra-eng.com/No-dig: 4p.
  • 41. TBM, (2005), North American Microtunneling Project Update, Maryland, Baltimore, Upper Jones Falls Interceptor, Tunnel Business Magazine, August 2005
  • 42. Thomas T. (ed), (2003), Microtunnelling through hard rock, Tunnels and Tunnelling International, March 2003: 50
  • 43. Weltin B. (2006), Appleton Fox River Crossing, Notes from teleconference and TBM observations by S. Hunt, CH2M HILL: 3P.
  • 44. White P. J. (1999), Trenchless Solution Used In Airport Sewer, Water Improvements - Record Rock Microtunneling Bore Key to Project’s Success, Underground Construction, December 1999: 8p.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWAK-0025-0008
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