Please use this identifier to cite or link to this item: https://essuir.sumdu.edu.ua/handle/123456789/89296
Or use following links to share this resource in social networks: Recommend this item
Title Simulation of reverse osmosis process: Novel approaches and development trends
Authors Huliienko, S.V.
Korniyenko, Y.M.
Muzyka, S.M.
Holubka, K.
ORCID
Keywords reverse osmosis
membrane
simulation
optimization
software
Type Article
Date of Issue 2022
URI https://essuir.sumdu.edu.ua/handle/123456789/89296
Publisher Sumy State University
License Creative Commons Attribution 4.0 International License
Citation Huliienko S. V.,Korniyenko Y. M., Muzyka S. M.,Holubka K. (2022). Simulation of reverse osmosis process: Novel approaches and development trends. Journal of Engineering Sciences, Vol. 9(2), pp. F6-F36, doi: 10.21272/jes.2022.9(2).f2
Abstract Reverse osmosis is an essential technological separation process that has a large number of practical applications. The mathematical simulation is significant for designing and determining the most effective modes of membrane equipment operation and for a deep understanding of the processes in membrane units. This paper is an attempt at systematization and generalizing the results of the investigations dedicated to reverse osmosis simulation, which was published from 2011 to 2020. The main approaches to simulation were analyzed, and the scope of use of each of them was delineated. It was defined that computational fluid dynamics was the most used technique for reverse osmosis simulation; the intensive increase in using of molecular dynamics methods was pointed out. Since these two approaches provide the deepest insight into processes, it is likely that they will further be widely used for reverse osmosis simulations. At the same time, for the simulation of the membrane plant, it is reasonable to use the models that required the simplest solutions methods. The solution-diffusion model appears to be the most effective and flexible for these purposes. Therefore, this model was widely used in considering the period. The practical problems solved using each of the considered approaches were reviewed. Moreover, the software used for the solution of the mathematical models was regarded.
Appears in Collections: Journal of Engineering Sciences / Журнал інженерних наук

Views

Australia Australia
110597453
Chile Chile
161700
China China
978952981
Czechia Czechia
1
Ecuador Ecuador
8823
Fiji Fiji
1
Germany Germany
1382187448
Hong Kong SAR China Hong Kong SAR China
1
India India
893714737
Iran Iran
79966435
Iraq Iraq
211569
Ireland Ireland
287839
Japan Japan
1853715490
Jordan Jordan
39983214
Malaysia Malaysia
618190055
Mexico Mexico
1
Portugal Portugal
1853715504
Singapore Singapore
854677
South Africa South Africa
1853715494
South Korea South Korea
5128063
Taiwan Taiwan
174207
Turkey Turkey
618190057
Ukraine Ukraine
-1827889994
United Kingdom United Kingdom
-1530651506
United States United States
1107542571
Unknown Country Unknown Country
978952980

Downloads

Algeria Algeria
221165642
Belgium Belgium
1
Chile Chile
25868
China China
1107542573
Finland Finland
1
France France
1
Germany Germany
79966431
Ghana Ghana
1
Greece Greece
2413
Hong Kong SAR China Hong Kong SAR China
1
Hungary Hungary
66
India India
2564029
Iran Iran
-1827890002
Iraq Iraq
184098
Ireland Ireland
287838
Japan Japan
1
Jordan Jordan
39983215
Netherlands Netherlands
221165647
Nigeria Nigeria
5128064
Saudi Arabia Saudi Arabia
1
Singapore Singapore
29261
Spain Spain
1
Taiwan Taiwan
192691
Turkey Turkey
1
Ukraine Ukraine
819229527
United Kingdom United Kingdom
89766
United States United States
1107542572
Unknown Country Unknown Country
1

Files

File Size Format Downloads
Huliienko_jes_2_2022.pdf 811,92 kB Adobe PDF 1777209709

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.