TY - JOUR
T1 - Étude expérimentale des caractéristiques de mouillage d'une solution aqueuse de liquide ionique sur un substrat à tube à ailettes en aluminium
AU - Varela, Richard Jayson
AU - Giannetti, Niccolò
AU - Yamaguchi, Seiichi
AU - Saito, Kiyoshi
AU - Wang, Xin Ming
AU - Nakayama, Hiroshi
N1 - Publisher Copyright:
© 2018 Elsevier Ltd and IIR
PY - 2018/4
Y1 - 2018/4
N2 - In falling film liquid desiccant systems, finding a suitable pair of liquid desiccant and contact surface is of primary engineering interest. This requires knowledge on the wetting characteristics of the liquid on the solid substrate, which consequently requires intensive experimental investigation. In this study, the wetting characteristics of a new ionic liquid aqueous solution in an aluminum fin-tube substrate were experimentally investigated. Then, a simple method for estimating the wetted area on the substrate through image processing was developed. Visual analysis of the surface wetting was also conducted, and three types of wetting patterns are discussed. Experimental results on the static contact angle and contact angle hysteresis suggest that the ionic liquid solution is mostly wetting, and the aluminum surface is slightly to moderately rough. It was found that the wettability of the ionic liquid solution increases as the ionic liquid mass fraction increases. The wetting hysteresis phenomenon and the factors contributing to its occurrence were also clarified. The results from this study would be useful for the development of a new model or improvement of existing wetting models, which can help improve the prediction and control of the heat and mass transfer performance in internally cooled/heated fin-tube contactors.
AB - In falling film liquid desiccant systems, finding a suitable pair of liquid desiccant and contact surface is of primary engineering interest. This requires knowledge on the wetting characteristics of the liquid on the solid substrate, which consequently requires intensive experimental investigation. In this study, the wetting characteristics of a new ionic liquid aqueous solution in an aluminum fin-tube substrate were experimentally investigated. Then, a simple method for estimating the wetted area on the substrate through image processing was developed. Visual analysis of the surface wetting was also conducted, and three types of wetting patterns are discussed. Experimental results on the static contact angle and contact angle hysteresis suggest that the ionic liquid solution is mostly wetting, and the aluminum surface is slightly to moderately rough. It was found that the wettability of the ionic liquid solution increases as the ionic liquid mass fraction increases. The wetting hysteresis phenomenon and the factors contributing to its occurrence were also clarified. The results from this study would be useful for the development of a new model or improvement of existing wetting models, which can help improve the prediction and control of the heat and mass transfer performance in internally cooled/heated fin-tube contactors.
KW - Aluminum fin-tube
KW - Contact angle hysteresis
KW - Ionic liquid
KW - Wetting characteristics
KW - Wetting hysteresis
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U2 - 10.1016/j.ijrefrig.2018.02.019
DO - 10.1016/j.ijrefrig.2018.02.019
M3 - Article
AN - SCOPUS:85045297552
VL - 88
SP - 472
EP - 482
JO - International Journal of Refrigeration
JF - International Journal of Refrigeration
SN - 0140-7007
ER -