用机载多频微波散射仪测量实验海面对短重力-毛细波的阻尼

V. Wismann, R. Theis, W. Alpers, H. Huhnerfuss
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引用次数: 9

摘要

作为美德联合SAXON-FPN实验的一部分,利用机载五频(L-, S-, C-, X-和ku -波段)微波散射仪测量了五种不同粘弹性性能的实验单分子海浮油的雷达特征。在布拉格波长范围为2 ~ 40 cm的不同微波频率和入射角下,测量了无光滑海面和有光滑海面的后向散射雷达功率比。当风速高达6米/秒时,该比率表现出与马兰戈尼阻尼理论相一致的波数依赖性,该理论描述了在厘米到分米波长范围内海洋表面波的粘弹性表面膜的阻尼。当风速在9 ~ 11m /s之间时,在k= 60m /sup -1/和k= 300m /sup -1/的波数范围内,该比值减小。在1.5 m/s ~ 6 m/s风速范围内,雷达观测方向和雷达极化对阻尼比的影响无统计学意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The damping of short gravity-capillary waves by experimental sea slicks measured by an airborne multi-frequency microwave scatterometer
As a part of the joint US-German SAXON-FPN experiment radar signatures of five experimental monomolecular sea slicks of different visco-elastic properties were measured by an airborne five-frequency (L-, S-, C-, X- and Ku-band) microwave scatterometer. The ratio of the backscattered radar power from slick-free and slick-covered sea surfaces were measured at different microwave frequencies and incidence angles such that the Bragg wavelength ranged from 2 to 40 cm. At wind speeds up to 6 m/s this ratio exhibits the wavenumber dependence that is consistent with the Marangoni damping theory, which describes the damping of ocean surface waves by visco-elastic surface films in the centimeter to decimeter wavelength region. At wind speeds between 9 and 11 m/s the ratio decreases in the wavenumber range between k=60 m/sup -1/ and k=300 m/sup -1/. No statistically significant dependence of the damping ratio on radar look direction and polarization of the radar was measured at wind speeds between 1.5 m/s and 6 m/s.<>
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