2014

Название Авторы Издание
A prototype micro-thermoelectric power generator for micro-electromechanical systems Shambhoo Yadav, Pooja Sharma, Prathima Yamasani, S. Minaev, and Sudarshan Kumar Applied Physics Letters 104, 123903 (2014); DOI:10.1063/1.4870260
Regimes of combustion of a premixed mixture of gases in a heated microchannel with the wall temperature smoothly increasing in the downstream direction Mazurok D.B. , Fursenko R.V., Minaev S.S., Lutsenko N.A., Kumar S. Combustion, Explosion and Shock Waves Volume 50, Issue 1, January 2014, Pages 25-31; DOI: 10.1134/S0010508214010031
On Effect of Gravity Field and Pressure Differences on Heterogeneous Combustion in Porous Media Lutsenko N.A., Levin V.A. Combustion Science Technology 2014, Volume 186, Issue 10-11, 2 November 2014, Pages 1410-1421; DOI: 10.1080/00102202.2014.934611
Numerical modeling of unsteady gas flow through porous heat-evolutional objects with partial closure of the object's outlet Lutsenko N.A. International Journal of Heat and Mass Transfer, Volume 72, May 2014, Pages 602-608; DOI: 10.1016/j.ijheatmasstransfer.2014.01.046
Cobalt boride catalysts for small-scale energy application Simagina V.I., Ozerova A.M., Komova O.V., Odegova G.V., Kellerman D.G., Fursenko R.V., Odintsov E.S., Netskina O.V. Accepted by Catalysis Today, 2014.
Modeling of filtration combustion of gases in a cylindrical porous burner with allowance for radiative heat transfer Palesskii F.S., Fursenko R.V., Minaev S.S. Combustion, Explosion and Shock Waves. V. 50, I. 6, 21 November 2014, Pages 625-631; DOI: 10.1134/S001050821406001X
The fast-time instability map of Liñán’s diffusion-flame regime Gubernov V.V , Kim J.S.  Journal of Mathematical Chemistry, 8 October 2014, 16p.; DOI: 10.1007/s10910-014-0423-0
Numerical simulations of premixed flame ignition in turbulent flow Evgeniy Sereshchenko, Roman Fursenko, Sergey Minaev, Shenqyang Shy Combustion Science and Technology, 186: 1552–1561, 2014; DOI: 10.1080/00102202.2014.935600
Effect of radical quenching on CH4/air flames in a micro flow reactor with a controlled temperature profile Kizaki Y., Nakamura H. , Tezuka T., Hasegawa S., Maruta K. Proceedings of the Combustion Institute 2014; DOI: 10.1016/j.proci.2014.07.030
Characteristics of n-butane weak flames at elevated pressures in a micro flow reactor with a controlled temperature profile Kikui S., Kamada T., Nakamura H., Tezuka T., Hasegawa S., Maruta K. Proceedings of the Combustion Institute 2014; DOI: 10.1016/j.proci.2014.07.029
Sooting limits and PAH formation of n-hexadecane and 2,2,4,4,6,8,8-heptamethylnonane in a micro flow reactor with a controlled temperature profile Nakamura H., Suzuki S., Tezuka T., Hasegawa S., Maruta K. Proceedings of the Combustion Institute 2014; DOI: 10.1016/j.proci.2014.05.148
An OpenMP version of the parallel algorithm for calculation of unsteady gas flow through porous objects with energy sources: Analysis and application Lutsenko N.A. , Tarasov G.V. , Gyrnik K.A.    Numerical Analysis and Applications Volume 7, Issue 3, July 2014, Pages 191-203; DOI: 10.1134/S1995423914030021
Combustion-Synthesized Porous Ni-Al Materials for Radiative Porous Burners A.I. Kirdyashkin, A.N. Guschin, A.S. Maznoy, S.S. Minaev, F.S. Palesskiy Advanced Materials Research, Vol. 1040 (2014) pp 442-447; DOI:10.4028/www.scientific.net/AMR.1040.442
Numerical Comparison of Gas Flows through Plane Porous Heat-Evolutional Object with Axisymmetric one when Object's Outlet is Partially Closed Nickolay A. Lutsenko Advanced Materials Research, Vol. 1040 (2014) pp 529-534; doi:10.4028/www.scientific.net/AMR.1040.529
Thermal-Diffusive Stability of Counterflow Premixed Flames at Low Lewis Numbers Sergey Mokrin, Roman Fursenko, Sergey Minaev Advanced Materials Research
Parallel Algorithm for Modeling of Dynamic Processes in Porous Media George Tarasov, Konstantin Gyrnik, Denis Leontev Advanced Materials Research, Vol. 1040 (2014) pp 559-564
Numerical study of the heat radiation from the porous cylindrical burner with radiative heat exchange F.S.Palesskiy, R.V.Fursenko, S.S.Minaev Advanced Materials Research