首页> 外文会议>International Conference on Nuclear Engineering >A STABILITY INVESTIGATION OF TWO-DIMENSIONAL SURFACE WAVES ON EVAPORATING, ISOTHERMAL OR CONDENSING LIQUID FILMS PART I THERMAL NON-EQUILIBRIUM EFFECTS ON WAVE VELOCITY
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A STABILITY INVESTIGATION OF TWO-DIMENSIONAL SURFACE WAVES ON EVAPORATING, ISOTHERMAL OR CONDENSING LIQUID FILMS PART I THERMAL NON-EQUILIBRIUM EFFECTS ON WAVE VELOCITY

机译:二维表面波在蒸发,等温或冷凝液膜部分上的稳定性研究I热非平衡对波速度的影响

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When the liquid film is in the process of evaporation or condensation, the interfacial thermal non-equilibrium conditions are evidently different from that of isothermal film, and this difference will affect the flow stability and wave velocity of thin liquid films. The temporal stability equation of the two dimensional traveling waves of evaporating or condensing liquid films falling down an inclined wall is established based on the Prandtl boundary layer theory and complete boundary conditions. The effects on wave velocity of evaporating, isothermal and condensing states, thermocapillarity, Reynolds number, fluid property and inclined angle are discussed, and are compared in different Reynolds numbers.
机译:当液体膜处于蒸发或缩合的过程中,界面热非平衡条件明显地与等温膜的过程,并且这种差异会影响薄液膜的流动稳定性和波速。基于PRANDTL边界层理论和完整的边界条件,建立落下倾斜壁的蒸发或冷凝液体膜的二维行驶波的时间稳定性方程。讨论了对蒸发,等温和冷凝状态,热量,雷诺数,流体性能和倾斜角度的影响,并在不同的雷诺数比较。

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