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Quantitative calculation of reaction performance in sonochemical reactor by bubble dynamics

机译:基于气泡动力学的声化学反应器反应性能定量计算

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In order to design a sonochemical reactor with high reaction efficiency, it is important to clarify the size and intensity of the sonochemical reaction field. In this study, the reaction field in a sonochemical reactor is estimated from the distribution of pressure above the threshold for cavitation. The quantitation of hydroxide radical in a sonochemical reactor is obtained from the calculation of bubble dynamics and reaction equations. The distribution of the reaction field of the numerical simulation is consistent with that of the sonochemical luminescence. The sound absorption coefficient of liquid in the sonochemical reactor is much larger than that attributed to classical contributions which are heat conduction and shear viscosity. Under the dual irradiation, the reaction field becomes extensive and intensive because the acoustic pressure amplitude is intensified by the interference of two ultrasonic waves.
机译:为了设计具有高反应效率的声化学反应器,重要的是弄清楚声化学反应场的大小和强度。在这项研究中,声化学反应器中的反应场是根据高于空化阈值的压力分布估算的。声化学反应器中氢氧根自由基的定量是通过气泡动力学和反应方程的计算获得的。数值模拟的反应场分布与声化学发光的分布一致。声化学反应器中液体的吸声系数比传热和剪切粘度的经典贡献大得多。在双重辐射下,由于声压振幅由于两个超声波的干扰而增强,因此反应场变得广泛而密集。

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