On plasma support of fuel burning in a combustion chamber of a gas-turbine facility

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Abstract

Two models of high-durability DC arc plasmatron that has been used for fuel-air mixture reformation aiming at plasma support of fuel burning in an internal combustion engines were investigated.

About the authors

M. N. Bulaeva

Moscow Aviation Institute (National Research University)

Email: irina_kravch@mail.ru

Engineer

Russian Federation

I. V. Kravchenko

Moscow Aviation Institute (National Research University)

Author for correspondence.
Email: irina_kravch@mail.ru

Candidate of Technical Science, Assistant Professor

Russian Federation

V. A. Riaby

Moscow Aviation Institute (National Research University)

Email: riaby2001@yahoo.com

Candidate of Technical Science

Senior Researcher

Russian Federation

D. P. Tkachenko

Moscow Aviation Institute (National Research University)

Email: tdp@list.ru

Candidate of Technical Science

Lecturer

Russian Federation

References

  1. Rabinovich A., Cohn D.R. and Bromberg L. Plasmatron internal combustion engine system. US Patent No. US 5425332. Massachusetts Institute of Technology. Int. Cl. F02B 42/08, 1993.
  2. Riaby V.A., Lee H.J., Savinov V.P., Kremen’ A.I., Mok Y.S. DC arc plasmatron device. Korean Patent No. KR10-0721790. Int. Class6 H05H 1/00, filed 01.02.2005, registered 18.05.2007.
  3. Lee H.-J., Mok Y.-S., Plaksin V.Yu, Riaby V.A. DC arc plasmatron and method of using the same. PCT application No. WO2007/114556 A1. Int. Class6 H05H 1/30, filed 26.12.2006, publ. 11.10.2007.
  4. Рябый, В.А. Уточнённая оценка средней температуры аргоновой плазмы на срезе сопла высокоресурсного плазматрона. [Текст] / В.А. Рябый, И.В. Никитиных // Авиационно-космическая техника и технология, - 2010, - № 10(77). - С. 98-102.
  5. Kataoka Y., Saito S. and Omiya K. Effect of CF4 addition on downflow ashing under atmospheric pressure. Jap. J. Appl. Phys., 1999, v. 38, p. 3731-3735.

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