화학공학소재연구정보센터
검색결과 : 28건
No. Article
1 Wall heat transfer coefficient and effective radial conductivity of ceramic foam catalyst supports
Turchetti L, Murmura MA, Monteleone G, Annesini MC
Chemical Engineering Research & Design, 156, 146, 2020
2 Prospect of open-cell solid foams for floating-platform multiphase reactor applications - Maldistribution susceptibility and hydrodynamic behavior
Dashliborun AM, Fussel A, Larachi F
Chemical Engineering Journal, 332, 596, 2018
3 Liquid residence time distribution of multiphase horizontal flow in packed bed milli-channel: Spherical beads versus open cell solid foams
Serres M, Schweich D, Vidal V, Philippe R
Chemical Engineering Science, 190, 149, 2018
4 A phenomenological model for bubble coalescence in confined highly porous media
Serres M, Maison T, Philippe R, Vidal V
International Journal of Multiphase Flow, 105, 134, 2018
5 Immersed boundary method (IBM) based direct numerical simulation of open-cell solid foams: Hydrodynamics
Das S, Deen NG, Kuipers JAM
AIChE Journal, 63(3), 1152, 2017
6 Pulse flow in solid foam packed reactors: Analysis of morphology and key characteristics
Zalucky J, Claussnitzer T, Schubert M, Lange R, Hampel U
Chemical Engineering Journal, 307, 339, 2017
7 Direct numerical simulation for flow and heat transfer through random open-cell solid foams: Development of an IBM based CFD model
Das S, Deen NG, Kuipers JAM
Catalysis Today, 273, 140, 2016
8 Hydrodynamics and mass transfer in a tubular reactor containing foam packings for intensification of G-L-S catalytic reactions in co-current up-flow configuration
Leveque J, Philippe R, Zanota ML, Meille V, Sarrazin F, Baussaron L, de Bellefon C
Chemical Engineering Research & Design, 109, 686, 2016
9 On the stability of Taylor bubbles inside a confined highly porous medium
Serres M, Zanota ML, Philippe R, Vidal V
International Journal of Multiphase Flow, 85, 157, 2016
10 Gas-liquid distribution in tubular reactors with solid foam packings
Mohammed I, Bauer T, Schubert M, Lange R
Chemical Engineering and Processing, 88, 10, 2015