numerical simulation of unsteady conjugate heat transfer of electrothermal deicing process

Clicks: 293
ID: 206221
2018
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Abstract
A novel 3-D unsteady model of in-flight electrothermal deicing process is presented in this paper to simulate the conjugate mass and heat transfer phenomena of water film runback, phase change, and solid heat conduction. Mathematical models of water film runback and phase change are established and solved by means of a loosely coupled method. At the current time step, solid heat conduction, water film runback, and phase change are iteratively solved until the heat boundary condition reaches convergence, then the temperature distribution and ice shape at the moment are obtained, and the calculation of the next time step begins subsequently. A deicing process is numerically simulated using the present model following an icing tunnel experiment, and the results match well with those in the literatures, which validate the present model. Then, an in-flight deicing process is numerically studied to analyze the effect of heating sequence.
Reference Key
mu2018internationalnumerical Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Zuodong Mu;Guiping Lin;Xiaobin Shen;Xueqin Bu;Ying Zhou
Journal shanghai kou qiang yi xue = shanghai journal of stomatology
Year 2018
DOI
10.1155/2018/5362541
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