CFD prediction of phase change behavior and liquid film evolution on specimens based on the Eulerian wall film model of two-phase flow
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摘要:
提出了一種利用兩相流Eulerian Wall Film(EWF)模型和自定義結露量公式相結合來預測樣品表面相變行為及液膜變化的方法.首先利用自搭建環境實驗箱開展結露物理實驗,并分別基于兩相流EWF模型與單相流模型進行仿真實驗.結果表明,相對于單相流模型,EWF模型因考慮了相變過程而能夠更加精確地模擬樣品表面相變行為.然后通過自定義公式計算所得結露量與實測結露量的對比,驗證了所提出結露量公式的正確性.最后在模擬與實測的溫濕度曲線以及結露量吻合較好的前提下,模擬了樣品表面液膜變化過程,過程中液膜呈現的形態與物理實驗中原位攝像系統捕捉到的液膜形態初步吻合.
Abstract:A method was presented to predict phase change behavior and liquid film evolution on specimens by combining the Eulerian wall film (EWF) model of two-phase flow with the self-defined formula of dew amount. Firstly, a self-built environmental test chamber was used to carry out condensation physical tests, and simulated tests were respectively performed based on the EWF model and the single-phase flow model. It is found that the EWF model is more accurate than the single-phase flow model due to necessary consideration of the phase change process. Then, a self-defined formula was established to calculate the dew amount and it was verified by the physical tests. Finally, under the premise that simulated and tested temperatures, relatively humidity curves and dew amounts show good agreement, the changing process of liquid films on specimen surfaces was predicted, and the simulation prediction of liquid film shape on specimen surfaces is in consistent with in-situ video imaging morphology during the physical tests.
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