Measurements of gas exchange and momentum transfer in a circular wind-water tunnel
Open Access
- 1 August 1979
- journal article
- Published by Stockholm University Press in Tellus
- Vol. 31 (4) , 321-329
- https://doi.org/10.1111/j.2153-3490.1979.tb00911.x
Abstract
Gas exchange and momentum transfer have been studied by means of a small circular wind-water tunnel. Gas transfer velocity and friction velocity first grow linearly with wind speed. At a critical wind speed, with the onset of rough waves, both increase abruptly. The experiments clearly show the enhancement of air-water exchange processes by waves. Experimental conditions were varied-nitrogen/carbon dioxide atmosphere, temperature, circulation of water unconfined/confined by a dam-and found to influence gas exchange. This, and the differing results of various authors demonstrate that gas exchange is not a function of wind speed alone, nor of friction velocity, but that further parameters, such as wave spectra, have to be considered as well. DOI: 10.1111/j.2153-3490.1979.tb00911.xKeywords
This publication has 15 references indexed in Scilit:
- Gas exchange in a circular wind/water tunnelThe Science of Nature, 1979
- Gas transfer to and across an air-water interfaceTellus A: Dynamic Meteorology and Oceanography, 1977
- The influence of wind on CO2-exchange in a wind-wave-tunnel, including the effects of monolayers1977
- Enhancement of Gas Transfer by Interfacial RipplesPhysics of Fluids, 1971
- Gas-Liquid ReactionsJournal of the Electrochemical Society, 1970
- Effects of hydration on carbon dioxide exchange across an air-water interfaceJournal of Geophysical Research, 1969
- On the exchange of gases between the atmosphere and the seaDeep Sea Research and Oceanographic Abstracts, 1963
- On the Exchange of Carbon Dioxide between the Atmosphere and the SeaTellus A: Dynamic Meteorology and Oceanography, 1960
- Some factors affecting the rate of solution of oxygen in waterJournal of Chemical Technology & Biotechnology, 1955
- Die Löslichkeit der Kohlensäure in Alkohol zwischen −67° und + 45° C. In‐ und Evasionscoefficient bei 0°Annalen der Physik, 1900