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利用PIV技术测试了膜面附近的气液两相流动力学特性,在2.5m3/h曝气强度下,对1、2、3 mm三种曝气孔径条件下的气泡动力学特性进行了研究,同时分析了不同孔径下对应的液相速度场、涡量场和雷诺应力分布规律.结果表明,在曝气强度较低的情况下,孔径大小是影响气泡大小的重要几何因素,3mm孔径所形成的气液两相流中液相速度、涡量值和雷诺应力均是最大的,表现在膜过滤过程中,能更好地促进膜表面浓差极化层的物料混合.

参考文献

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