화학공학소재연구정보센터
검색결과 : 118건
No. Article
1 Temporally and spatially resolved X-ray densitometry in a shock tube
Shaik RA, Kastengren AL, Tranter RS, Lynch PT
Combustion and Flame, 224, 136, 2021
2 An experimental study of the effect of 2.5% methane addition on self-ignition and flame propagation during high-pressure hydrogen release through a tube
Zeng Q, Duan QL, Li P, Zhu HY, Sun DX, Sun JH
International Journal of Hydrogen Energy, 45(4), 3381, 2020
3 Spontaneous ignition of high-pressure hydrogen and boundary layer characteristics in tubes
Xu XD, Jiang J, Jiang YM, Wang ZL, Wang QY, Yan WY, Pan XH
International Journal of Hydrogen Energy, 45(39), 20515, 2020
4 Flame kernel evolution and shock wave propagation with laser ignition in ethanol-air mixtures
Bao XC, Sahu A, Jiang YZ, Badawy T, Xu HM
Applied Energy, 233, 86, 2019
5 Ignition and detonation onset behind incident shock wave in the shock tube
Kiverin AD, Yakovenko IS
Combustion and Flame, 204, 227, 2019
6 Shock-tube study of the formation of iron, carbon, and iron-carbon binary nanoparticles: experiment and detailed kinetic simulations
Vlasov PA, Agafonov GL, Mikhailov DI, Smirnov VN, Tereza AM, Zhiltsova IV, Sychev AE, Shchukin AS, Khmelenin DN, Streletskii AN, Borunova AB, Stovbun SV
Combustion Science and Technology, 191(2), 243, 2019
7 Effect of burst disk parameters on the release of high-pressure hydrogen
Gong L, Duan QL, Liu JL, Li M, Jin KQ, Sun JH
Fuel, 235, 485, 2019
8 Cavitation induction by projectile impacting on a water jet
Vasilakis ES, Kyriazis N, Koukouvinis P, Farhat M, Gavaises M
International Journal of Multiphase Flow, 114, 128, 2019
9 Theoretical and numerical studies on shock reflection at water/air two-phase interface: Fast-slow case
Xiang GM, Wang B
International Journal of Multiphase Flow, 114, 219, 2019
10 A numerical simulation study of the path-resolved breakup behaviors of molten metal in high-pressure gas atomization: With emphasis on the role of shock waves in the gas/molten metal interaction
Kaiser R, Li C, Yang S, Lee D
Advanced Powder Technology, 29(3), 623, 2018