PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Powiadomienia systemowe
  • Sesja wygasła!
Tytuł artykułu

Designing Diving Technology. Part I, Decompression Requirements

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This article is a further one in an unintended series concerning the design of diving technology [1,2,3]. It contains answers to questions raised by readers upon reading previous articles and by users of the systems described therein by way of example. The articles also refer to the discussion held at the annual NATO Working Group meeting on the various types of decompression presented by the Polish side [4,5,6,7]. The previous articles were linked to the acceptance of the results of the project No. DOB-BIO8/О9/О1/2016 carried out under the contract with the NCBiR National Centre for Research and Development entitled “Decompression schedules for MCM/EOD II diving” carried out in 2016-2021. The current article is linked to the new project No. DOB-BIO-12-03-001-2022 implemented under the contract with the NCBiR entitled: “The effects of combat effort and air transport on the safety of combat divers in the execution of underwater combat operations,” scheduled for 2023-2025.
Słowa kluczowe
Rocznik
Tom
Strony
7--52
Opis fizyczny
Bibliogr. 77 poz., rys., tab., wykr.
Twórcy
  • Polish Naval Academy, Department of Underwater Work Technology in Gdynia, Poland
Bibliografia
  • 1. Kłos. R. 2019a. Designing of diving technologies – process approach. Polish Hyperbaric Research. 1, 2019a, Tom 66, DOI: 10.2478/phr-2019-0001, strony 7-24.
  • 2. Kłos. R. 2019b. Context analysis in the development of diving technologies. Polish Hyperbaric Research. 2, 2019b, Tom 67, DOI: 10.2478/phr-2019-0005, strony 7 – 58.
  • 3. Kłos. R. 2022. Diving technology design in mine countermeasure system part II Reliability. Polish hyperbaric Research. 2022, Tom 79, 2, strony 7-25.
  • 4. Kłos. R. 2011. Jednotkankowy model dekompresji ograniczonej procesem dyfuzji. Polish Hyperbaric Research. 2011, Tom 35, str. 69−94.
  • 5. Kłos. R. 2012. Możliwości doboru ekspozycji tlenowo-nitroksowych dla aparatu nurkowego typu AMPHORA - założenia do nurkowań standardowych i eksperymentalnych. Gdynia : Polskie Towarzystwo Medycyny i Techniki Hiperbarycznej, 2012. ISBN 978-83-924989-8-8.
  • 6. Kłos. R. 2016. System trymiksowej dekompresji dla aparatu nurkowego typu CRABE. Gdynia : Polskie Towarzystwo Medycyny i Techniki Hiperbarycznej, 2016. ISBN 978-83-938322-5-5.
  • 7. Kłos. R. 2023. Oxygen Diving. 1st Edition. Boca Raton : CRC Press, 2023. str. 236. ISBN: ISBN 978-1-032-31389-4 (hbk), ISBN: 978-1-032-31390-0 (pbk), ISBN: 978-1-003-30950-5 (ebk), DOI: 10.1201/9781003309505.
  • 8. Kłos. R. 2021. Ventilation of Normobaric and Hyperbaric Objects. Boca Raton, FL; USA : CRC Press (Taylor & Francis Group, LLC ), 2021. ISBN: 978-0-367-67523-3 (hbk) ISBN: 978-0-367-67524-0 (pbk) ISBN: 978-1-003-13164-9 (ebk).
  • 9. Kłos. R. 2007. Zastosowanie metod statystycznych w technice nurkowej - Skrypt. Gdynia : Polskie Towarzystwo Medycyny i Techniki Hiperbarycznej, 2007. ISBN 978-83-924989-26.
  • 10. Kłos. R. 2005. Analiza możliwości dekompresji załogi zagrożonego okrętu podwodnego. Polish Hyperbaric Research. 2005, Tom 13, strony 55-80.
  • 11. Kłos. R. 2020. Ultrasonic detection of the intravascular free gas phase in research on diving. Polish Maritime Research. 2020, Tom 2, DOI: 10.2478/pomr-2020-0039, strony 176-186.
  • 12. Pollock N.W. 2015. Defensive Dive Profile Planning. [aut. książki] Pollock N.W. Sellers S.H., Godfrey J.M. (eds.). Rebreathers and Scientific Diving: Proceedings of NPS/NOAA/DAN/AAUS June 16-19, 2015 Workshop. Durham : NPS/NOAA/DAN/AAUS, 2015.
  • 13. Bühlmann A.A. 1984. Decompression-Decompression sickness. Berlin : Springer-Verlag, 1984. ISBN 3-540-13308-9; ISBN 0-387-13308-9.
  • 14. Bühlmann A.A. 1995. Tauchmedizin. Berlin : Springer-Verlag, 1995. ISBN 3-540-58970-8.
  • 15. Hempelman H. V. 1975. Decompression theory: British Practice. [aut. książki] D.H. Bennett P.B. and Elliott. The physiology and medicine of diving and compressed air work. London : Baillière Tindall, 1975.
  • 16. Lippmann J. 1990. Deeper into diving. Carnegie, Australia : J.L. Publications, 1990. ISBN 0-9590306-3-8.
  • 17. Lippmann J., Mitchell S. 2009. Deeper into diving. Aschburton : J.L. Publications, 2009. ISBN 0-9752290-1-X.
  • 18. Lewbel G.S. 1984. The decompression workbook. New York : Pisces Book Co., 1984. ISBN: 0-86636-023-9.
  • 19. Betts E.A. 1994. Introduction to enriched air diving. Freeport : American Nitrox Divers Inc., 1994.
  • 20. Comex Marseille. 1986. Medical Book. Marseille : Comex, 1986.
  • 21. Imbert J-P, Bontoux M. 1987. Proposition d'un manuel de procedures de decompression a l'air. Marseille : Comex Services, 1987. Final report to Centre d'Etudes Petrolleres et Marines. Fiche no 4723.
  • 22. MW RP. 1982. Tabele dekompresji i rekompresji nurków. Gdynia : Dowództwo Marynarki Wojennej, 1982. Sygn.Mar.Woj. 860/81.
  • 23. Brubakk A.O., Neuman T.S. 2003. Bennett and Elliott’s physiology and medicine of diving. brak miejsca : Saunders, 2003. ISBN 0-7020-2571-2.
  • 24. Kenyon D.J. Butler G. 2014. Crude neon with nitrogen and oxygenasa hyperbaric intervention breathing mixture. Pub. No.: US 2014/0290651 A1 USA, 2 11 2014. 128/203.12: 96/134.
  • 25. US Navy diving manual. 2016. Praca zbiorowa (revision 7). The Direction of Commander : Naval Sea Systems Command, 2016. SS521-AG-PRO-010 0910-LP-115-1921.
  • 26. Klos - 2020a. Selected risks of the decompression process-Part I: Selected inherent residual risks in the decompression process. Polish Hyperbaric Research. 2020a, Tom 71, 2, strony 7-36.
  • 27. Klos 2020b. Selected risks of the decompression process, part II: analysis of selected types of risk. Polish Hyperbaric Research. 2020b, Tom 72, 3, strony 7-28.
  • 28. Broome J.R. 1995. Non-linear ascent profiles reduce the risk of decompression illness after deep no-stop dives . Bethesda : Naval Medical Research Institut, 1995. NMRI 95-61.
  • 29. Broome J.R. 1996. Reduction of decompression illness risk In pigs by use of non-linear ascent profiles. Undersea Hyperb. Med. 1996, Tom 23, strony 19-23.
  • 30. Bovie A.A. 1997. Bovie and Davis' diving medicine. Philadelphia : Saunders, 1997. ISBN-13: 978-0-7216-9424-5; ISBN-10: 0-7216-9424-1.
  • 31. Wienke B.R. —. 1993. Diving above sea level. Flagstaff : Best Publishing Co., 1993. ISBN 0-941332-30-6.
  • 32. Natural Environment Research Council. 1974. Code of practice for scientific diving 1974 London. London : Natural Environment Research Council, 1974.
  • 33. Donald K.W. 1992. Oxygen and the diver. Harley Swan : The SPA Ltd., 1992. ISBN 1-85421-176-5.
  • 34. The isobaric "oxygen window" principle of decompression. Behnke A.R. 1967. San Diego : Marine Technology Society (The New Thrust Seaward), 1967. Transactions of the Third Annual Conference of the Marine Technology Society (5-7 June,1967). . Trans. Third Marine Tech. Soc. Conf. . Washington, DC.
  • 35. Behnke A.R. 1974. Environmental Physiology. [aut. książki] N.B.(ed.) Slonim. Marine and other hyperbaric environments. Saint Louis : The C.V. Mosby Co, 1974, strony 399-418.
  • 36. Rusoke-Dierich O. 2018. Diving Medicine . Deutschland : Springer-Verlag GmbH Deutschland, 2018. ISBN 978-3-319-73835-2 ISBN 978-3-319-73836-9 (eBook) DOI: https://doi.org/10.1007/978-3-319-73836-9.
  • 37. Castagna O., Gempp E., Blatteau J.-E. 2009. Pre-dive normobaric oxygen reduces bubble formation in scuba divers. 2009 Eur J Appl Physiol. May, 2009, Tom 106, 2, strony 167-72.
  • 38. Kłos R. 2018. Selected decompression procedures for survivors who became saturated in a sunken wreck. Scientific Journal of Polish Naval Academy. 2018, Tom 213, 2, strony 17-34.
  • 39. Predictive studies IV. 1978. Work capability and physiological effects in He-O2 excursions to pressures of 400-800-1200-1600 fsw. Philadelphia : Institute for Environmental Medicine University of Pennsylvania, 1978. Report 78-1.
  • 40. Report of proceedings Technical Symposium on The human factor in North Sea operational diving:. Proceedings Technical Symposium on The human factor in North Sea. 4-5 Nov1976. Heathrow : Hotel London, 4-5 Nov1976.
  • 41. Lambertsen C.J. 1986. Studies in isobaric counterdiffusion . Filadelfia : Institute for Environmental Medicine , 1986.
  • 42. Kłos R. 2019. Context analysis in the development of diving technologies (bilingual: Analiza kontekstu przy projektowaniu technologii). Polish Hyperbaric Research. 2019, Tom 62, 2, strony 7-58.
  • 43. NATO Standard ATP-57. 2017. The submarine search and rescue manual. Brussels : NATO Standardization Office (NSO), 2017. North Atlantic Treaty Organization Allied/Multinational Tactical Publication . ATP-57 Edition C Version 3 October 2017.
  • 44. NOAA. 2017. NOAA diving manual - diving for science and technology. [red.] Administration National Oceanic and Atmospheric. VI. Flagstaff : Best Publishing Co., 2017. ISBN 9781930536883.
  • 45. Latson G. 2000. Accelerated decompression using oxygen for submarine rescue – summary report and operational guidance. Panama City : US Navy Experimental Diving Unit, 2000. Report US NEDU TR 11-00.
  • 46. Kłos R. 2008. Systemy podtrzymania życia na okręcie podwodnym. Gdynia : Polskie Towarzystwo Medycyny i Techniki Hiperbarycznej, 2008. str. 163. ISBN 978-83-924989-4-0.
  • 47. Nishi R.Y. 2000. Decompression risk calculations for submarine escape. Montreal : Decompression risk analysis for The Naval Engineering Test Establishment Royal Canadian Navy, 2000. Not an official publication.
  • 48. Miller J.W. (ed.). 1976. Vertical excursions breathing air from nitrogen-oxygen or air saturation exposures. Washington : US Department of Commerce (University of Michigan Libraries collection), 1976. MOD1002611978.
  • 49. NOAA. 2001. NOAA diving manual - diving for science and technology. IV. Flagstaff : Best Publishing Co., 2001. ISBN 0-941332-70-5.
  • 50. Proceedings of the Reverse Dive Profiles Workshop. Lang, M.A. and C.E. Lehner (eds.). October 29-30, 1999. Washington : Smithsonian Institution, 2000, October 29-30, 1999.
  • 51. Cole B. 1993. Decompression and computer assisted diving. Biggin Hill : Dive Information Company, 1993. ISBN 0-9520934-0-5.
  • 52. Skrzypkowski A. 2012. Fizjologia i trening lotniczy . Warszawa : Wojskowy Instytut Medycyny Lotniczej WIML, 2012.
  • 53. Siewiera J., Szałański P., Tomaszewski D., Kot J. 2020. High-Altitude Decompression Sickness Treated with Hyperbaric Therapy and Extracorporeal Oxygenation. Aerospace Medicine and Human Performance. 2020, Tom 91, 2, strony 106–109.
  • 54. Kewal K.J. . 2017. Textbook of Hyperbaric Medicine. Basel : Springer International Publishing AG, 2017. ISBN 978-3-319-47138-9 ISBN 978-3-319-47140-2 (eBook) DOI: 10.1007/978-3-319-47140-2.
  • 55. Butler BD, Little T, Cogan V, Powell M. 2006. Hyperbaric oxygen pre-breathe modifies the outcome of decompression sickness. Undersea Hyperb Med. 6, 2006, Tom 33, strony 407-417.
  • 56. T.S. Neuman, Thom S.R. 2008. Physiology and medicine of hyperbaric oxygen therapy. Philadelphia : Saunders, an imprint of Elsevier Inc., 2008. ISBN: 978-1-4160-3406-3.
  • 57. The Belgian Health Care Knowledge Centre. 2011. Home Oxygen Therapy. Brussels : Administratif Botanique, 2011. KCE reports 156C.
  • 58. Kłos R.. 2018a. Securing the hyperbaric treatment of decompression sickness in the Polish Navy. Polish Hyperbaric Research ISSN 1734-7009; e-ISSN 2084-0535. 2018, Tom 65, 4, strony 7-23. Polish-English Bilingual Publication.
  • 59. 2018b. Methods for treatment of decompression sickness developed during wreck penetration. Scientific Journal of Polish Naval Academy. 2018b, Tom 212, 1, strony 27-53.
  • 60. Wienke B. R., O’Leary T. R. 2018. Understanding Modern Dive Computers and Opera-tion - Protocols, Models, Tests, Data, Risk and Applications. Cham, Switzerland : Springer Nature Switzerland AG (Springer Briefs in Computer Science), 2018. ISBN 978-3-319-94053-3 ISBN 978-3-319-94054-0 (eBook) DOI: https://doi.org/10.1007/978-3-319-94054-0.
  • 61. Kłos R. 1999. Nurkowanie z wykorzystaniem nitroksu. Poznań : KOOPgraf, 1999. ISBN 83-909187-1-4.
  • 62. Kłos R. 2014. Helioksowe nurkowania saturowane - podstawy teoretyczne do prowadzenia nurkowań i szkolenia. Wydanie II (poprawione). Gdynia : Polskie Towarzystwo Medycyny i Techniki Hiperbarycznej, 2014. ISBN 978-83-938322-1-7.
  • 63. Kłos R. 2017. The potential underwater rescue scenario in incident defined by DiveSmart project. Scientific journal of Polish Naval Academy. 2, 2017, Tom LVIII, 209, strony 75-96.
  • 64. Parker E. C., Survanshi S. S., Thalmann E. D., Weathersby P. K. 1996. Statistically based decompression tables IX: probabilistic models of the role of oxygen in human decompression sickness in human decompression sickness . Bethesda : Naval Medical Research Institute, 1996. NMRI 96-05.
  • 65. Zwingelberg K.M., Knight M.A., Biles J.B. 1987. Decompression sickness in women divers. Undersea Biomed. Res. 1987, Tom 14, strony 311-317.
  • 66. Edmonds C., Lowry C., Pennefather J. 1992. Diving and subaquatic medicine. Oxford : Butterworth Heinemann Ltd, 1992.
  • 67. Vann R.D. 1993. Oxygen exposure management. AquaCorps. 1993, 7, strony 54-59.
  • 68. Dobrowolski J. 2008. Filozofia głupoty. Warszawa : Wydawnictwo Naukowe PWN, 2008. ISBN 978-83-01-15198-0.
  • 69. Yount D.E., Hoffman D.C. 1986. On the use of a bubble formation model to calculate diving tables. Aviat. Space Environ. Med. 1986, Tom 57, strony 149-56.
  • 70. Wienke B.R. 2003. Reduced gradient bubble model. Flagstaff : Best Publishing Co., 2003. ISBN 1-930536-11-9.
  • 71. Gernhardt M. L. 1991. Development and evaluation of a decompression stress index based on tissue bubble dynamics: Praca doktorska. Philadelphia : Department of Bioengineering of the University of Pennsylvania, 1991. Report No 01-01-1991.
  • 72. Huggins K.E. 1992. The dynamics of decompression workbook. Ann Arbor : The University of Michigan, 1992.
  • 73. Donald K.W.. 1955. Oxygen Bends. J Appl Physiol. 1955, Tom 7, strony 639-644.
  • 74. NOAA. 2017. NOAA diving manual - diving for science and technology. [red.] Administration National Oceanic and Atmospheric. VI. Flagstaff : Best Publishing Co., 2017. ISBN 9781930536883.
  • 75. Shilling C.W. 1981. A history of the development of decompression tables. Bethesda : Undersea Medical Society, Inc., 1981.
  • 76. DCIEM. 1995. Diving Manual. North York : Defence and Civil Institute of Environmental Medicine, 1995. DCIEM No. 86-R-35A.
  • 77. Organizacja Międzynarodowego Lotnictwa Cywilnego. 2016. Eksploatacja Statków Powietrznych. [aut. książki] Cywilnego Organizacja Międzynarodowego Lotnictwa. Konwencji o Międzynarodowym Lotnictwie Cywilnym. Montréal : Międzynarodowe normy i zalecane metody postępowania, 2016, Tom Część I, str. załącznik 6.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e2efeb37-a5b2-468f-9764-ab0bf928db9b
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.