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Laser-induced fluorescence studies of oxygen transfer across an air-water interface.

机译:激光诱导的荧光研究了氧气在空气-水界面上的转移。

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Oxygen transfer across unsheared flat and wavy air-water interfaces is studied using a laser-induced fluorescence (LIF) technique. The LIF technique measures dissolved oxygen (DO) concentration through oxygen quenching of fluorescence from dissolved pyrene butyric acid (PBA). Fluorescence intensities in a two dimensional plane in the water near the interface are imaged (instantaneously) with a high-resolution CCD camera. A series of image processing and image analysis steps corrects the intensities for variations in the fluorescence attributed to factors other than oxygen quenching and transforms the corrected fluorescence intensities into spatial measurements of DO concentration. Near-interface vertical oxygen concentration profiles and two-dimensional concentration fields result. Estimates were obtained for the concentration boundary layer thickness, δc , and the mass transfer coefficient, kl, along flat and wavy interfaces. A several fold increase in mass transfer rates is observed for an unsheared wavy air-water interface. The concentration field measurements suggest that this is attributed to a thinner δ c and the presence of detached concentration layers. The effect of convection (due to evaporative cooling) on the mass transfer coefficient was explored. Comparisons were made with sheared flat and wavy air-water interfaces.
机译:使用激光诱导荧光(LIF)技术研究了未剪切的平坦和波浪形空气-水界面之间的氧气转移。 LIF技术通过对来自溶解的pyr丁酸(PBA)的荧光进行氧猝灭来测量溶解氧(DO)的浓度。使用高分辨率CCD相机(瞬时)对界面附近水中二维平面中的荧光强度进行成像。一系列图像处理和图像分析步骤校正了归因于除氧猝灭以外的因素的荧光变化的强度,并将校正后的荧光强度转换为DO浓度的空间测量值。得到近界面垂直氧浓度分布图和二维浓度场。获得了浓度边界层厚度δ c 和传质系数 k l 的估计值,沿着平坦和波浪形的界面。对于未剪切的波浪形空气-水界面,传质速率提高了几倍。浓度场测量结果表明,这是由于δ c 变薄以及存在分离的浓度层所致。探讨了对流(由于蒸发冷却)对传质系数的影响。用剪切的平坦和波浪形的空气-水界面进行了比较。

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