Research output: Contribution to journal › Article › peer-review
VISUALIZATION OF THE HFC 134A HYDRATE GROWS BY THE BOILING AND CONDENSATION METHOD OF HYDRATE-FORMING GAS IN AN AQUEOUS SOLUTION OF NaCl SALT. / Meleshkin, Anton V.; Morozov, Vladimir S.; Klimov, B. A. et al.
In: Journal of Flow Visualization and Image Processing, Vol. 32, No. 4, 30.01.2025, p. 63-74.Research output: Contribution to journal › Article › peer-review
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TY - JOUR
T1 - VISUALIZATION OF THE HFC 134A HYDRATE GROWS BY THE BOILING AND CONDENSATION METHOD OF HYDRATE-FORMING GAS IN AN AQUEOUS SOLUTION OF NaCl SALT
AU - Meleshkin, Anton V.
AU - Morozov, Vladimir S.
AU - Klimov, B. A.
AU - Knyazkov, V. A.
AU - Marasanov, N. V.
N1 - Visualization of the HFC 134a hydrate grows by the boiling and condensation method of hydrate-forming gas in an aqueous solution of NaCl salt / A. V. Meleshkin, V. Morozov, B. A. Klimov [et al.] // Journal of Flow Visualization and Image Processing. – 2024. – DOI 10.1615/jflowvisimageproc.2024057326. – EDN DADRNF.
PY - 2025/1/30
Y1 - 2025/1/30
N2 - This article presents an experimental study of hydrate formation using a method previously presented, which is based on the cyclic process of boiling and condensation of liquefied gas in a volume of water. This method has shown a high rate of growth of hydrate mass, the absence of mechanical effects on the reaction medium and the absence of the need to add chemical promoters, which is especially important for the tasks of desalination and purification of water by the gas hydrate method. HFC 134a was used as a hydrate-forming gas. The working fluid was a solution of water and NaCl salt with a mass concentration of 1% and 3.5%. The work presents a visualization of the hydrate formation process with varying bottom heating intensity and wall temperature, as well as their effect on the conversion of hydrate-forming gas into hydrate and water converted into gas hydrate.
AB - This article presents an experimental study of hydrate formation using a method previously presented, which is based on the cyclic process of boiling and condensation of liquefied gas in a volume of water. This method has shown a high rate of growth of hydrate mass, the absence of mechanical effects on the reaction medium and the absence of the need to add chemical promoters, which is especially important for the tasks of desalination and purification of water by the gas hydrate method. HFC 134a was used as a hydrate-forming gas. The working fluid was a solution of water and NaCl salt with a mass concentration of 1% and 3.5%. The work presents a visualization of the hydrate formation process with varying bottom heating intensity and wall temperature, as well as their effect on the conversion of hydrate-forming gas into hydrate and water converted into gas hydrate.
KW - газовые гидраты
KW - опреснение
KW - кипение
KW - конденсация
KW - визуализация
KW - солевой раствор
KW - HFC 134a
KW - gas hydrates
KW - desalination
KW - boiling
KW - condensation
KW - visualization
KW - salt solution
KW - HFC 134a
UR - https://www.mendeley.com/catalogue/704883d6-958e-344c-941a-a401b7242949/
UR - https://www.elibrary.ru/item.asp?id=81356782
U2 - 10.1615/jflowvisimageproc.2024057326
DO - 10.1615/jflowvisimageproc.2024057326
M3 - Article
VL - 32
SP - 63
EP - 74
JO - Journal of Flow Visualization and Image Processing
JF - Journal of Flow Visualization and Image Processing
SN - 1065-3090
IS - 4
ER -
ID: 83395846