首页> 外文会议>Geoscience and Remote Sensing Symposium, 1999. IGARSS '99 Proceedings. IEEE 1999 International >Analysis of mesoscale variability of oceanic surface wind fields: contribution of active microwave sensors
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Analysis of mesoscale variability of oceanic surface wind fields: contribution of active microwave sensors

机译:海洋表面风场的中尺度变化分析:有源微波传感器的贡献

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The low spatial resolution of conventional observational networks over the ocean have restricted most field investigations to either consideration of large scale (greater than 2000 km) or very small scale (less than 10 km) wind and sea-state variability. However, the energy contained in intermediate scales has been recognized to play an important role in the dynamics of the atmosphere, in the atmospheric forcing of the ocean and in air-sea interaction processes. These intermediate scales can not be resolved by most measuring techniques. In recent years, the use of satellite data from sensors such as scatterometers and radar altimeters has lead to improvements in our knowledge of these intermediate scales. Wind vectors measured by the ERS-1 satellite Scatterometer (SCATT) and wind speed measurements from radar altimeters are analyzed to determine the spatial mesoscale structure of oceanic surface winds over wavelength from /spl sim/10 to 2000 km. The results of these analyses are compared to the two-dimensional isotropic turbulence.
机译:海洋上常规观测网络的低空间分辨率将大多数野外调查限制在考虑大尺度(大于2000 km)或极小尺度(小于10 km)的风和海态变化。但是,人们已经认识到中间尺度中包含的能量在大气动力学,海洋的大气强迫和海-气相互作用过程中起着重要的作用。这些中间规模无法通过大多数测量技术来解决。近年来,使用来自散射仪和雷达高度计等传感器的卫星数据已导致我们对这些中间标尺的了解有所提高。分析ERS-1卫星散射仪(SCATT)测得的风向矢量和雷达高度计的风速测量值,以确定在/ spl sim / 10至2000 km波长范围内的海洋表面风的空间中尺度结构。将这些分析的结果与二维各向同性湍流进行比较。

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