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035 _a(RuTPU)RU\TPU\network\12469
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090 _a647330
100 _a20160405a2015 k y0engy50 ba
101 0 _aeng
102 _aUS
135 _adrcn ---uucaa
181 0 _ai
182 0 _ab
200 1 _aEvaporation, viscous flow, and electrostatic interaction of charged interfaces in the apparent contact line region
_fCh. Ketelaar, V. S. Azhaev
203 _aText
_celectronic
300 _aTitle screen
320 _a[References: 41 tit.]
330 _aWe consider evaporation of an aqueous solution near an apparent contact line separating a macroscopically dry area of a heated solid substrate and a constant-curvature meniscus far away from the substrate. Viscous flow, described by a lubrication-type model, is coupled to the interaction of electrical double layers formed near the solid-liquid and liquid-vapor interfaces. The electrostatic interaction is described using the nonlinear Poisson-Boltzmann equation and is shown to affect both normal and shear stress balances at the deformable interface. For steady configurations, we find that the apparent contact line region becomes wider and the total evaporation rate there increases as the substrate potential is increased. Motion of the apparent contact line in response to changes in the substrate temperature is also investigated. The contact line speed is found to increase when the electrostatic effects are incorporated into the model.
333 _aРежим доступа: по договору с организацией-держателем ресурса
461 _tPhysics of Fluids
_oScientific Journal
_d1958-
463 _tVol. 27, iss. 11
_v[112110, 17 p.]
_d2015
610 1 _aэлектронный ресурс
610 1 _aтруды учёных ТПУ
700 1 _aKetelaar
_bCh.
_gChristiaan
701 1 _aAzhaev
_bV. S.
_cspecialist in the field of power engineering
_cleading researcher of Tomsk Polytechnic University
_f1973-
_gVladimir Sergeevich
_2stltpush
_3(RuTPU)RU\TPU\pers\35726
712 0 2 _aНациональный исследовательский Томский политехнический университет (ТПУ)
_bЭнергетический институт (ЭНИН)
_bКафедра автоматизации теплоэнергетических процессов (АТП)
_h121
_2stltpush
_3(RuTPU)RU\TPU\col\18678
801 2 _aRU
_b63413507
_c20160405
_gRCR
856 4 _uhttp://dx.doi.org/10.1063/1.4935874
942 _cCF