A study of film thickness and hydrodynamic entrance length in liquid laminar film flow along a vertical tube

Author:

Gao Hongxia1,Luo Xiao1ORCID,Cui Ding1,Liang Zhiwu1ORCID,Hu Xiayi2,Hartono Ardi3,Svendsen Hallvard F.3

Affiliation:

1. Joint International Center for CO 2 Capture and Storage (iCCS), Provincial Key Laboratory for Cost-effective Utilization of Fossil Fuel Aimed at Reducing Carbon-dioxide Emissions, Dept. of Chemistry and Chemical Engineering; Hunan University; Changsha 410082 China

2. Dept. of Chemical Engineering; Xiangtan University; Hunan 411105 China

3. Dept. of Chemical Engineering; Norwegian University of Science and Technology; Sem Saelands vei 4, Trondheim N-7491 Norway

Funder

National Natural Science Foundation of China

National Key Technology R&D Program

Innovative Research Team Development Plan

Natural Science Foundation of Hunan Province in China

Guangxi Natural Science Foundation

China Outstanding Engineer Training Plan for Students of Chemical Engineering & Technology in Hunan University

Opening Project of Guangxi Colleges and Universities Key Laboratory of Beibu Gulf Oil and Natural Gas Resource Effective Utilization

Publisher

Wiley

Subject

General Chemical Engineering,Environmental Engineering,Biotechnology

Reference34 articles.

1. Jasikova D Kotek M Kopecky V. Paper presented at: Application of Experimental & Numerical Methods in Fluid Mechanics & Energy: XX Anniversary of International Scientific Conference 2016

2. Falkner-Skan solution for gravity-driven film flow;Andersson;J Appl Mech.,1985

3. Thin-Film flow at moderate Reynolds number;Ruschak;J Fluids Eng.,2000

4. Entrance region lengths of laminar falling films;Tekić;Chem Eng Sci.,1984

5. On laminar thin-film flow along a vertical wall;Roy;J Appl Mech.,1984

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