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2012 | 12 | 3 |

Tytuł artykułu

The cascade pressure exchange reactive rotation disk engine creation reasons

Treść / Zawartość

Warianty tytułu

RU
Predposylki sozdanija diskovogo dvigatelja reaktivnogo vrashhenija kaskadnogo obmena davleniem

Języki publikacji

EN

Abstrakty

EN
The theoretical reasons of creation the reactive rotation disc engine on cascade pressure exchanger base (ERR CEP) have been stated. The particularities of ERR CEP working process in collation with wave disc engine on wave pressure exchanger base have been considered. It is in particular shown that cascade pressure exchange principles use allows vastly to increase the pressure of preliminary compression of charge and also to reduce the loss of expanding products of combustion in useful work turning moment of engine.
RU
Ан н от ация. изложены теоретические предпосылки создания дискового двигателя реактивного вращения на базе каскадного обменника давления (ДРВ КОД). Рассмотрены особенности рабочего процесса ДРВ КОД в сопоставлении с волновым дисковым двигателем на базе волнового обменника давления. В частности показано, что использование принципов каскадного обмена давлением позволяет значительно увеличить давление предварительного сжатия заряда, а также снизить потери расширяющихся продуктов сгорания в полезную работу крутящего момента двигателя.

Wydawca

-

Rocznik

Tom

12

Numer

3

Opis fizyczny

p.73-76,fig.,ref.

Twórcy

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

Bibliografia

  • 1. Akbari P. A, Nalim M.R., Muller N., 2006.: Performance Enhancement of Microturbine Engines Topped With Wave Rotors / ASME J.Eng. Gas Turbines Power, - №128(1).- pp. 190-202.
  • 2. Akbari, P., Muller, N., 2003.: Preliminary DesigProcedure for Gas Turbine Topping Reverse-Flo Wave Rotors/ International Gas Turbi Congress Tokyo, Paper IGTC2003-ABS-129.
  • 3. Akbari P. A, Nalim M.R., Muller N., 2006.: Review of Wave Rotor Technology and its Application / ASME O. Eng. Gas Turbines Power. -№128 (10) - pp.717-734.
  • 4. Benini E., Toffolo A., Lazzaretto A., 2003.: Centrifugal Compressor of A 100KW Microturbine / ASME Paper GT2003-38152.
  • 5. Krajniuk A.I., Storcheous J.V., 2000.: Systems of gas-dynamic supercharging. – Publ. EUSU. Lugansk., 224 p.
  • 6. Krajniuk, A.I., 2009.: Thermal compressor of cascade pressure exchange/ Silesian university of technology publication faculty of transport. I International Scientific Conference. Transport problems, Katowice-Kroczyce. №17-19.- p.186-191.
  • 7. Krajniuk A.I., 2010.: The Krajniuk’s gas-turbine engine of cascade pressure exchange The gas-turbine technologies. Specialized information and analytical journal // Russia, Rybinsk, Publishing house “Media grandee”.-№10. - Page-32-39.
  • 8. Krajniuk A.I., 2010.: Development of supercharging systems of internal combustion engines with the cascade pressure exchanger /ТЕКА Komisji Motoryzacji i Energetyki Rolnictwa. – OL PAN, Lublin , №10A, p.303-310
  • 9. Krajniuk A.I., 2010.: The Krajniuk cascade exchanger and new principles of the organization of working process of the gas-turbine engine/ ТЕКА Komisji Motoryzacji i Energetyki Rolnictwa. – OL PAN, Lublin, №10C, p.151-162
  • 10. Krajniuk A.I., 2010.: The organization of working process and sampling of parameters of Krajniuk cascade-recuperative pressure exchanger / ТЕКА Komisji Motoryzacji i Energetyki Rolnictwa. – OL PAN, Lublin, №10C, p.140-150
  • 11. Krajniuk A.I., Krajniuk A.A, Bryantsev M.A, 2011.: The cascade pressure exchange gas-turbine engine efficiency increase with fulfilled environments heat utilization/ weight nickname of engine-building, Scientific and technical journal . – Zaporozhye: OJ-SC "Motor Sich", - No. 2, – Page 91-100.
  • 12. Krajniuk A.I., Alexeev S.V., Krajniuk, A. A., 2009.: The ICE supercharge system with boosting air deepcooling // Internal combustion engine, NTU "HPI" Scientific and technical journal.-. Harkov. - No. 1. - page-57-61.
  • 13. Krajniuk A.I., Alexeev S.V., Kovtoon A.S., 2011.: The cascade pressure exchange supercharge system with boosting air deep cooling test results / Aerospace equipment and technology: collection of works: Thermal engines and power installations. Harkov. №10(87), - page 168-172.
  • 14. Krajniuk A.I., Bryantsev M.A., 2010.: Krajniuk's air refrigeration unit / Alternative kilowatt. Russia, Rybinsk, Publishing house “Media grandee ”. -№5. - page .-40-45.
  • 15. Krajniuk A.I., Bryantsev M.A., Krajniuk, A. А., 2010.: The new principle of transport refrigeration installation working process organization on Krajniuk's cascade pressure exchanger base. The messenger of the East Ukrainian national university of V. Dahl, - Lugansk: Publ. EUSU , - № 5(147). P.1.- page.-168-177.
  • 16. Krajniuk, A.I. Bryantsev M.A., 2010.: The Krajniuk's cascade-recuperative pressure exchange refrigeration unit. / Carload park. International information scientific and technical magazine, – Harkov: Publishing house Rolling stock of Tekhnostandart corporation, - № 11.- page.-25-30.
  • 17. Krajniuk A.I., 2011.: The new schemes and principles of heat-power machines working processes organization. / The messenger of the East Ukrainian national university of V. Dahl, - Lugansk: Publ. EUSU, № 12(166). P.1.- page.-94-106.
  • 18. Rogers C., 2003.: Some Effects of Size on the Performance of Small Gas Turbine / ASME Paper GT2003-38027.
  • 19. Welch G. E., 2000.: Overview of Wave-Rotor Technology for Gas Turbine Engine Topping Cycles / The Institution of mechanical Engineers London. - pp. 2-17.
  • 20. Wilson J. and Paxson, D. E., 1993.: “Jet Engine Performance Enhancement Through Use of a Wave- Rotor Topping Cycle,” NASA TM-4486.
  • 21. Zauner E., Chyou Y. P., Walraven F. and Althaus R., 1993.: “Gas Turbine Topping Stage Based on Energy Exchangers: Process and Performance,” ASME Paper 93-GT-58.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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