PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2011 | 20 | 3 |

Tytuł artykułu

Analysis of applicability of modified drilling waste for filling out annular space in horizontal directional drilling

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The construction of linear underground installations with horizontal directional drilling (HDD) technology creates certain problems, i.e. the generation of large quantities of drilling cuttings – a problem that has not yet been fully solved. Moreover, the annular space formed between the wall of the borehole and the driven pipe is not additionally filled out. Only drilling mud and small quantities of cuttings are left there, which may later result in subsidence and collapsing of the ground over the installed pipeline. The authors present an innovative method for disposing of drilling wastes, i.e. treating the wastes and using them as mineral additives of industrial Puzzolan character to cement slurries for filling out the annular space in horizontal directional drilling.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

20

Numer

3

Opis fizyczny

p.671-675,fig.,ref.

Twórcy

autor
  • Faculty of Drilling, Oil and Gas, AGH University Science and Technology in Krakow, Mickiewicza 30, 30-059 Krakow, Poland
autor
autor

Bibliografia

  • 1. AADNOY B.S., COOPER I., MISKA S. Z., MITCHELL R. F., PAYNE M. L. Advanced Drilling and Well Technology, SPE 2009 (TB).
  • 2. BENNETT R.D., ARIARATNAM S.T., COMO C.E. Horizontal Directional Drilling Good Practices Guidelines. Washington, DC: HDD Consortium. ISBN Code: 1-928984- 13-4. 2001.
  • 3. COMO C. Drilling Fluid Use and Drilling Waste Disposal on HDD Project. Technical Papers from North American Society for Trenchless Technology. 23 Jul 2006.
  • 4. Canadian Association of Petroleum Producers. Guidelines Planning Horizontal Directional Drilling for Pipeline Construction. CAPP Publication 2004-0022. September pp. 82, 2004.
  • 5. LYONS W. C. Air and gas drilling manual. Applications for oil and gas recovery wells and geothermal fluids recovery wells. Third Edition, Elsevier, pp. 299-305, 2009.
  • 6. ZIAJA J., WIŚNIOWSKI R. Borehole Engineering Methods in the Light of Environmental Protection. Polish Journal of Environmental Study 13/3, 80, 2004.
  • 7. FILIPPOV L., THOMAS F., FILIPPOVA I., YVON J., MORILLON-JEANMAIRE A. Stabilization of NaCl-containing cuttings wastes in cement concrete by in situ formed mineral phases”. Journal of Hazardous Materials 171, 731, 2009.
  • 8. GONET A., CZEKAJ L., FIJAŁ J., GRZYWNOWICZ I., KNEZ D., RZYCZNIAK M., STRYCZEK S., ŻUREK R. Elaboration of a method of organic-mineral drilling waste processing in the aspect of its management, Drilling, Oil and Gas, AGH, UST, Cracow, pp. 230-237, 2006 [In Polish].
  • 9. JAMROZIK A. Possibility of complex recycling of waste drilling mud. AGH, UST, Cracow, pp. 103, 2009 [In Polish].
  • 10. LEONARD S. A., STEGEMANN J. A. Stabilization/solidification of petroleum drill cuttings: leaching studies. Journal of Hazardous Materials 174, 889, 2010.
  • 11. ISO 10426-2:2003 Petroleum and natural gas industries – Cements and materials for well cementing – part 2: Testing of well cements. 2003.
  • 12. PN-EN 196-3 + A1: 2009 Methods of testing cement – part 3: determination of setting times and soundness (Polish version of the European standard EN 196-3:2005). 2009.
  • 13. PN-EN 196-1: 2006 Methods of testing cement – part 1: determination of strength (Polish version of the European standard EN 196-1:2005). 2006.
  • 14. BRYLICKI W., STRYCZEK ST., RZEPKA M. Durability of cement grouts produced from metallurgical cement CEM III/A and drilling cement WG in chloride and chloride-magnesium corrosive environment in deep boreholes. Drilling, Oil, Gas 22, (1), 89, 2005 [In Polish].
  • 15. DEJA J. Freezing and de-icing salt resistance of blast furnace slag concretes. Cement & Concrete Composites 25, 357, 2003.
  • 16. NITO N., HIROSHIMA A., OTOMO T., MIYAZAWA S. Property of concrete using Portland blast furnace slag cement B class with different slag grain and chemical composition. Japan Cement Association Proceedings of Cement & Concrete, pp. 59, 2006.
  • 17. YUAN Q., SHI C., DE SCHUTTER G., AUDENAERT K., DENG D. Chloride binding of cement-based materials subjected to external chloride environment – A review. Construction and Building Materials 23, 1, 2009.
  • 18. STRYCZEK ST., GONET A., WIŚNIOWSKI R. Influence of water-to-cement ratio on technological parameters of fresh slurries made from multicomponent cements. Drilling, Oil, Gas 22, (1), 325, 2005 [In Polish].
  • 19. STRYCZEK ST., GONET A., WIŚNIOWSKI R., POŁOWNIAK Ł. Influence of selected superplastifiers on rheological parameters of sealing slurries based on metallurgical cement. Drilling, Oil, Gas 27, (1-2), 333, 2010 [In Polish].

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.dl-catalog-fd3975cc-dd80-42a1-9e26-55a6f21f7478
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.