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Numerical Simulations of Hydrodynamics and Heat Transfer in Wavy Falling Liquid Films on Vertical and Inclined Walls

机译:垂直和倾斜壁上波浪状降落液膜的流体动力学和传热的数值模拟

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The flow of thin falling liquid films is unstable to long-wave disturbances. The flow instability leads to development of waves at the liquid-gas interface. The effect of the waves on heat and mass transfer in falling liquid films is a subject of ongoing scientific discussion. In this work, numerical investigation of the wave dynamics has been performed using a modified volume-of-fluid (VOF) method for tracking the free surface. The surface tension is described using the continuum surface force (CSF) model. With low disturbance frequency, solitary waves of large amplitude are developed, which are preceded by low-amplitude capillary waves. With high disturbance frequency, low amplitude sinusoidal waves are developed. The waveforms dependent on the Reynolds number and disturbance frequency are summarized in a form of a regime map. A correlation describing the separation curve between the sinusoidal waves regime and solitary waves regime is proposed. The wave parameters (peak height, length, and propagation speed) are computed from the simulation results and compared with available experimental correlations in a wide range of parameters. The effects of the disturbance frequency and the plane inclination angle on the wave dynamics have been studied. The interaction of waves initiated by simultaneous disturbances of two different frequencies has been investigated. The heat transfer in the wavy film has been simulated for the constant wall temperature boundary condition. The effects of Prandtl number and disturbance frequency on local and global heat transfer parameters have been investigated. It has been shown that the influence of waves on heat transfer is significant for large Prandtl numbers in a specific range of disturbance frequencies.
机译:下降的薄液膜的流动对于长波干扰是不稳定的。流动的不稳定性导致在液-气界面处产生波。波对下落的液膜中的热和质量传递的影响是正在进行的科学讨论的主题。在这项工作中,已使用改进的流体体积(VOF)方法对波动力学进行了数值研究,以跟踪自由表面。使用连续表面力(CSF)模型描述表面张力。在低干扰频率下,会产生大振幅的孤立波,然后是低振幅毛细管波。在高干扰频率下,会产生低振幅正弦波。取决于雷诺数和干扰频率的波形以状态图的形式汇总。提出了描述正弦波形式和孤立波形式之间的分离曲线的相关性。根据仿真结果计算出波浪参数(峰高,长度和传播速度),并将其与各种参数中可用的实验相关性进行比较。研究了扰动频率和平面倾角对波浪动力学的影响。已经研究了由两个不同频率的同时扰动引起的波的相互作用。对于恒定的壁温边界条件,已经模拟了波浪形膜中的热传递。研究了普朗特数和扰动频率对局部和整体传热参数的影响。已经表明,在特定的扰动频率范围内,波对热传递的影响对于大的Prandtl数是很重要的。

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