PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2012 | 12 | 3 |

Tytuł artykułu

The mathematical model of the traction force coefficient of the conveyor on an air cushion with sloping round channels

Autorzy

Treść / Zawartość

Warianty tytułu

RU
Мatematicheskaja model' koehfficienta tjagovojj sily konvejjera na vozdushnojj podushke s naklonnymi kruglymi kanalami

Języki publikacji

EN

Abstrakty

EN
Using the methods of ideal liquid aerodynamics and the theory of machines on an air cushion, the mathematical model of the traction force coefficient of the conveyor on an air cushion with sloping round channels is obtained. Compare the results of the modelling and the experimental research of the traction force coefficient of the conveyor on an air cushion with sloping round channels is carried out.
RU
Используя методы аэродинамики идеальной жидкости и положения теории аппаратов на воздушной подушке, получена математическая модель коэффициента тяговой силы конвейера на воздушной подушке с наклонными круглыми каналами. Проведено сравнение результатов моделирования и экспериментального исследования коэффициента тяговой силы конвейера на воздушной подушке с наклонными круглыми каналами.

Wydawca

-

Rocznik

Tom

12

Numer

3

Opis fizyczny

p.117-121,fig.,ref.

Twórcy

autor
  • Volodymir Dahl East-Ukrainian National University, Lugansk, Ukraine

Bibliografia

  • 1. Bitukov V.К., 1979.: Conveyor with air cushion. Mechanization and automation of production. 10, 3 - 5.
  • 2. Bitukov V.К., Kolodezhnov V.N., 1979.: Conveyors with air interlayer for transportation of cargoes.Material handling equipment. 30, 50.
  • 3. Dreszer K.A., Pawlowski T., Zagajski P., 2007.: The process of grain relocation with screw conveyors. TEKA Kom. Mot. Energ. Roln. OL PAN. 7, 86 - 96.
  • 4. Khanzhonkov V.I., 1981.: Aerodynamic calculation of bearing system with a gas cushion for thermal processing of metal strip. The technology of light alloys. 10, 61- 69.
  • 5. Khanzhonkov V.I., 1972.: Aerodynamics of machines on the air cushion. Mashinostroyeniye. Moscow.
  • 6. Khanzhonkov V.I., 1975.: The aerodynamic characteristics of the carrier system with air cushion for the strip of metal. The technology of light alloys. 7, 55-62.
  • 7. Lu J., Huang G., 2008.: The Course Stability of an Air Cushion Vehicle. Shanghai Jiaotong University. Chinese edition. V. 42. 6, 914- 918.
  • 8. Lu J., Huang G., Li S., 2009.: A study of maneuvering control for an air cushion vehicle based on back propagation neural network. Shanghai Jiaotong University. Science. V. 14. 4, 482- 485.
  • 9. Pang M., Zhang S., Ni X., 2005.: Distributing Law of Air Cushion Parameter in Air Cushion Belt Conveyor. Jiangsu Polytechnic University. V. 17 ( 4), 27-29.
  • 10. Rabochiy G.М., Turushin V.А., 1983.: Definition of lift force contactless devices with air suspension. Izvestiya Vuzov. Mashinostroyeniye. 7, 79 - 83.
  • 11. Redko А.М., Turushin V.А., 1997.: The dependence of the capacity of the conveyors on the air cushion on the design parameters. EUSU Publisher. Lugansk.
  • 12. Song R., Ni X., Zheng X., 2006.: Current Situation and Development of Air Cushion Belt Conveyor. Jiangsu Polytechnic University. V 18 ( 2), 61-64.
  • 13. Turushin V.A., Pronin M.A., 2006.: The experimental researches of the undriving air cushion conveyors with inclined feeding canals. EUNU Visnik. 7(101) , 189 - 192.
  • 14. Turushin V.А., Pronin M.A., 2007.: The analysis of efficiency of the movement of loads by undriving conveyors on an air cushion with sloping feed channels. EUNU Visnik. 3(109) , 172 - 176.
  • 15. Turushin V.А., Rabochiy G.М., 1978.: Experimental research of the support of the conveyor belt on an air cushion. Mine and quarry transport. Nedra. Moscow, 118 - 121.
  • 16. Turushin V.А., Redko А.М., 1997.: Influence of design parameters of the main characteristics of the conveyors on the air cushion. EUSU Publisher. Lugansk.
  • 17. Yun L., Bliault A., 2000.: Theory and design of air cushion craft. Yun and A.Bliault. London.
  • 18. Zalewski W., 2003.: Air cushion creation methods in various types of hovercrafts, hovercrafts skirt design.Prace. Instytut Lotnictwa. V. 176, 17-20.
  • 19. Zhou J., Guo J., Tang W., Zhang S., 2009.: Nonlinear FEM Simulation of Air Cushion Vehicle (ACV) Skirt Joint Under Tension Loading. Naval Engineers Journal. V. 121. 2, 91- 98.
  • 20. Zhou J., Tang W., Zhang S., 2009.: Sea keeping analysis of air cushion vehicle with different wave angles under the operation resistance. Shanghai Jiaotong University. Science. V. 14. 4, 471- 475.
  • 21. Zloto T., Nagorka A., 2007.:. Analysis of the pressure distribution of oil film in the variable height gap between the valve plate and cylinder block in the axial piston pump. TEKA Kom. Mot. Energ. Roln. OL PAN.7, 293 - 301.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-69e39214-717f-429f-8016-a1c9ecc0afba
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.