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Titlebook: Recent Advances in the Study of Oceanic Whitecaps; Twixt Wind and Waves Penny Vlahos,Edward C. Monahan Book 2020 Springer Nature Switzerlan

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Introduction,ic and changing climate, it is our challenge to understand and constrain this interface in order to accurately predict future climate conditions. Edward C. Monahan set out to tackle one of the most esoteric aspects of this interaction, namely the physics that can describe the nature of breaking wave
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Rain, Wave Breaking and Spray sea surface interface. Hinting to its dynamics, I then focus on the key process of white-capping. I stress how much we still have to learn, discussing in particular the relevance of rain as an example of a process whose implications, for white-capping hence spray, are practically ignored. I frame t
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Measurements of Airside Shear- and Wave-Induced Viscous Stresses over Strongly Forced Wind Wavesular interest because it involves phenomena over a large spectrum of length and temporal scales from aerodynamic drag in large storm systems, down to the wind-wave generation problem at sub-centimeter scales. At the smaller scales, while there is a body of theoretical and experimental work which sug
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The Role of Physical Chemical Properties of Gases in Whitecap Facilitated Gas Transferuantifying gas exchange under the range of temperatures, wind speeds and gases has been recognized as a priority over the last three decades and parameterizations have improved over this period. To date however, there remains a concern of applying parameterizations tuned to a subset of gases broadly
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Sea Spray and Gas Transfered in the surface ocean under breaking waves, sea spray is generated from the bubble plumes and the breaking waves themselves. In the same way as bubble plumes, the size distribution and volume flux of sea spray is related to wind speed. The work involving sea spray has been modest relative to its c
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