1 |
Toward computationally effective modeling and simulation of droplet formation in microchannel junctions Filimonov R, Wu Z, Sunden B Chemical Engineering Research & Design, 166, 135, 2021 |
2 |
Inertial measurement unit as a tool within dense phase pneumatic conveying. Investigation into velocity measurement accuracy, pressure and velocity relationships in slug flow Lavrinec A, Orozovic O, Rajabnia H, Williams K, Jones MG, Klinzing G Powder Technology, 382, 454, 2021 |
3 |
A continuum mechanics derivation of the empirical expression relating slug and particle velocities Orozovic O, Lavrinec A, Georgiou F, Wensrich CM Powder Technology, 380, 598, 2021 |
4 |
Insights into the transition from plug to slug flow in a horizontal pipe: An experimental study Abdulkadir M, Zhao D, Abdulkareem LA, Asikolaye NO, Hernandez-Perez V Chemical Engineering Research & Design, 163, 85, 2020 |
5 |
Coaxial Flow Contactors as Alternative to Double T-Contactors for Triphasic Slug Flow Generation Hellmann D, de Oliveira-Goncalves I, Agar DW Chemie Ingenieur Technik, 92(5), 532, 2020 |
6 |
Influence of slug flow on flow fields in a gas-liquid cylindrical cyclone separator: A simulation study Luo XM, Ren J, Chen T, Wang YB, Lu YL, He LM Chinese Journal of Chemical Engineering, 28(8), 2075, 2020 |
7 |
기포유동층 고분자 중합 반응기에서의 슬러그 특성 고은솔, 강서영, 서수빈, 김형우, 이시훈 Korean Chemical Engineering Research, 58(4), 651, 2020 |
8 |
Nonthermal Atmospheric Pressure Plasma for Methylene Blue Dye Decolorization by Using Slug Flow Reactor System Yamada M, Wahyudiono, Machmudah S, Kanda H, Goto M Plasma Chemistry and Plasma Processing, 40(4), 985, 2020 |
9 |
Insights into horizontal slug flow pneumatic conveying from layer fraction and slug velocity measurements Orozovic O, Lavrinec A, Alkassar Y, Chen J, Williams K, Jones MG, Klinzing GE Powder Technology, 364, 218, 2020 |
10 |
Effect of superficial air and water velocities on the erosion of horizontal elbow in slug flow Cao XW, Li XB, Fan Y, Peng WS, Xie ZQ Powder Technology, 364, 785, 2020 |