...
首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Westward mountain-gap wind jets of the northern Red Sea as seen by QuikSCAT
【24h】

Westward mountain-gap wind jets of the northern Red Sea as seen by QuikSCAT

机译:北红海的西部山间隙风射流,如Quikscat所见

获取原文
获取原文并翻译 | 示例
           

摘要

We analyse ten years of QuikSCAT satellite surface winds to statistically characterize the spatio-temporal variability of the westward mountain-gap wind jets over the northern Red Sea. These wind jets bring relatively cold and dry air from the Arabian Desert, increasing heat loss and evaporation over the region similar to cold-air outbreaks from mid and subpolar latitudes. QuikSCAT captures the spatial structure of the wind jets and agrees well with in situ observations from a heavily instrumented mooring in the northern Red Sea. The local linear correlations between QuikSCAT and in situ winds are 0.96 (speed) and 0.85 (direction). QuikSCAT also reveals that cross-axis winds such as the mountain-gap wind jets are a major component of the regional wind variability. The cross-axis wind pattern appears as the second (or third) mode in the four vector Empirical Orthogonal Function analyses we performed, explaining between 6% to 11% of the wind variance. Westward wind jets are typical in winter, especially in December and January, but with strong interannual variability. Several jets can occur simultaneously and cover a large latitudinal range of the northern Red Sea, which we call large-scale westward events. QuikSCAT recorded 18 large-scale events over ten years, with duration between 3 to 8 days and strengths varying from 3-4 to 9-10 m/s. These events cause large changes in the wind stress curl pattern, imposing a remarkable sequence of positive and negative curl along the Red Sea main axis, which might be a wind forcing mechanism for the oceanic mesoscale circulation.
机译:我们分析了十年的Quikscat卫星表面风,以统计地描述了北红海的西部山间隙风射流的时空变异性。这些风力喷气机从阿拉伯沙漠中带来了相对寒冷和干燥的空气,增加了与来自中型和潜伏期不同的冷空气爆发的地区的热量损失和蒸发。 Quikscat捕获了风吹动的空间结构,并在北部红海的严重仪表系泊中吻合了良好的观察。 Quikscat和原位风之间的局部线性相关性为0.96(速度)和0.85(方向)。 Quikscat还揭示了跨轴风,如山间隙风力喷射是区域风变性的主要组成部分。横轴风图案在我们进行的四个载体经验正交函数分析中显示为第二(或第三)模式,解释了风差的6%至11%。 Westward Wind Jets在冬季典型,特别是12月和1月,但具有强大的际际变化。几个喷气机可以同时发生,覆盖北红海的大纬度范围,我们称之为大规模的向西事件。 Quikscat在十年内记录了18个大型事件,持续时间在3至8天之间,优势从3-4到9-10米/秒变化。这些事件导致风力卷曲模式的大变化,沿红海主轴施加着一种显着的正负卷曲序列,这可能是海洋媒体循环的风迫机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号