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The role of free-surface turbulence and surfactants in air-water gas transfer

机译:自由表面湍流和表面活性剂在空气-水气传递中的作用

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摘要

Laboratory measurements of gas-transfer velocity and free-surface hydrodynamics were made for oscillating grid-stirred turbulence. Air-water gas-transfer velocities were determined from the waterside dissolved oxygen mass balance, and an innovative digital particle image velocimetry technique was used to measure the two-dimensional free-surface flow field. The impact of adventitious and purposely introduced surfactant films on free-surface turbulence and gas-transfer rates was explored quantitatively. As expected, bulk turbulence was unable to provide a unique relationship for the gas-transfer rates observed, owing predominantly to surfactant effects. However, the surface divergence computed from the free-surface velocity field was capable of reconciling the gas-transfer data. This is possible evidence confirming that the free-surface divergence is an important process involved in interfacial gas transport. A relationship for the gas-transfer velocity in terms of the surface divergence and the surface pressure is presented that successfully relates the interactions between surface renewal, surfactants, and gas transfer.
机译:实验室测量了气体传输速度和自由表面流体动力学,以用于振荡网格搅拌湍流。从水侧溶解氧质量平衡确定空气-水的气体传输速度,并使用创新的数字粒子图像测速技术测量二维自由表面流场。定量研究了不定和故意引入的表面活性剂薄膜对自由表面湍流和气体传输速率的影响。不出所料,主要由于表面活性剂的影响,整体湍流无法为观察到的气体传输速率提供唯一的关系。但是,根据自由表面速度场计算出的表面散度能够调和气体传输数据。这可能证实自由表面发散是界面气体传输中涉及的重要过程。提出了根据表面发散和表面压力的气体转移速度的关系,该关系成功地关系了表面更新,表面活性剂和气体转移之间的相互作用。

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