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Unsteady model of wall-adjacent boiling subcooled liquid flow. / Levin, A. A.; Chudnovsky, V. M.

In: Journal of Physics: Conference Series, Vol. 1359, No. 1, 012048, 21.11.2019.

Research output: Contribution to journalConference articlepeer-review

Harvard

Levin, AA & Chudnovsky, VM 2019, 'Unsteady model of wall-adjacent boiling subcooled liquid flow', Journal of Physics: Conference Series, vol. 1359, no. 1, 012048. https://doi.org/10.1088/1742-6596/1359/1/012048

APA

Levin, A. A., & Chudnovsky, V. M. (2019). Unsteady model of wall-adjacent boiling subcooled liquid flow. Journal of Physics: Conference Series, 1359(1), [012048]. https://doi.org/10.1088/1742-6596/1359/1/012048

Vancouver

Levin AA, Chudnovsky VM. Unsteady model of wall-adjacent boiling subcooled liquid flow. Journal of Physics: Conference Series. 2019 Nov 21;1359(1):012048. doi: 10.1088/1742-6596/1359/1/012048

Author

Levin, A. A. ; Chudnovsky, V. M. / Unsteady model of wall-adjacent boiling subcooled liquid flow. In: Journal of Physics: Conference Series. 2019 ; Vol. 1359, No. 1.

BibTeX

@article{96156bcfb0c84cbfae09f2a0418b2674,
title = "Unsteady model of wall-adjacent boiling subcooled liquid flow",
abstract = "We discuss an approach to constructing a mathematical model of formation and dynamics of the vapor phase on the heat-releasing surface under conditions of unsteady heat flux. We focus on nucleate boiling, since its predictive model is at present most difficult to design. The nucleate boiling stage is described in the form of a homogeneous model that accounts for the heat fluxes associated with the vapor phase presence. The stage of film boiling takes into account the dynamics of a pulsating vapor layer and its heat exchange with subcooled liquid and the heat-releasing surface.",
author = "Levin, {A. A.} and Chudnovsky, {V. M.}",
year = "2019",
month = nov,
day = "21",
doi = "10.1088/1742-6596/1359/1/012048",
language = "English",
volume = "1359",
journal = "Journal of Physics: Conference Series",
issn = "1742-6588",
publisher = "IOP Publishing Ltd.",
number = "1",
note = "4th All-Russian Scientific Conference Thermophysics and Physical Hydrodynamics with the School for Young Scientists, TPH 2019 ; Conference date: 15-09-2019 Through 22-09-2019",

}

RIS

TY - JOUR

T1 - Unsteady model of wall-adjacent boiling subcooled liquid flow

AU - Levin, A. A.

AU - Chudnovsky, V. M.

PY - 2019/11/21

Y1 - 2019/11/21

N2 - We discuss an approach to constructing a mathematical model of formation and dynamics of the vapor phase on the heat-releasing surface under conditions of unsteady heat flux. We focus on nucleate boiling, since its predictive model is at present most difficult to design. The nucleate boiling stage is described in the form of a homogeneous model that accounts for the heat fluxes associated with the vapor phase presence. The stage of film boiling takes into account the dynamics of a pulsating vapor layer and its heat exchange with subcooled liquid and the heat-releasing surface.

AB - We discuss an approach to constructing a mathematical model of formation and dynamics of the vapor phase on the heat-releasing surface under conditions of unsteady heat flux. We focus on nucleate boiling, since its predictive model is at present most difficult to design. The nucleate boiling stage is described in the form of a homogeneous model that accounts for the heat fluxes associated with the vapor phase presence. The stage of film boiling takes into account the dynamics of a pulsating vapor layer and its heat exchange with subcooled liquid and the heat-releasing surface.

UR - http://www.scopus.com/inward/record.url?scp=85076488295&partnerID=8YFLogxK

U2 - 10.1088/1742-6596/1359/1/012048

DO - 10.1088/1742-6596/1359/1/012048

M3 - Conference article

AN - SCOPUS:85076488295

VL - 1359

JO - Journal of Physics: Conference Series

JF - Journal of Physics: Conference Series

SN - 1742-6588

IS - 1

M1 - 012048

T2 - 4th All-Russian Scientific Conference Thermophysics and Physical Hydrodynamics with the School for Young Scientists, TPH 2019

Y2 - 15 September 2019 through 22 September 2019

ER -

ID: 23092029