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首页> 外文期刊>International Journal of Heat and Mass Transfer >Lattice Boltzmann modeling of two-phase behavior under acoustic excitation: Capillarity-wettability interaction
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Lattice Boltzmann modeling of two-phase behavior under acoustic excitation: Capillarity-wettability interaction

机译:声激发下两相行为的格子玻尔兹曼模型:毛细管-润湿性相互作用

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摘要

We report capillarity-wettability interaction of the trapped nonwetting phase. The displacement of immiscible nonwetting phase subject to oscillatory acoustic excitation in a sinusoidal channel is analyzed with the lattice Boltzmann method. The effect of the surface wettability, frequency and geometry of the channel on two-phase behavior is discussed. The effect of capillarity induced resonance on mobilization of trapped nonwetting phase blob is explored for a range of capillary number for uniform and mixed-wet surfaces. It is observed that transport of a nonwetting phase can be achieved by exciting with the frequencies near to the resonant frequency which is vital in mobilization of the trapped nonwetting phase in the application like recovery of oil and two-phase flows.
机译:我们报告了被困的非润湿阶段的毛细管-润湿性相互作用。用晶格玻尔兹曼方法分析了正弦波通道中受到振荡声激发的不混溶非润湿相的位移。讨论了通道的表面润湿性,频率和几何形状对两相行为的影响。对于均匀和混合湿表面的一定范围的毛细管数,探索了毛细管现象引起的共振对捕获的非润湿相斑点动员的影响。可以观察到,通过以接近共振频率的频率激励可以实现非润湿相的传输,这对于在应用中(如油和两相流的回收)动员捕获的非润湿相至关重要。

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