首页> 外文会议>ISPRS Technical Commission VIII Mid-Term Symposium >SPATIAL COHERENCE OFWINDS AND WAVES OVER THE ARABIAN SEA AND BAY OF BENGAL AND THEIR EVOLUTION DURING SW MONSOON: A NOVEL APPLICATION OF ALONG-TRACK RADAR ALTIMETER MEASUREMENTS FROM SPACE
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SPATIAL COHERENCE OFWINDS AND WAVES OVER THE ARABIAN SEA AND BAY OF BENGAL AND THEIR EVOLUTION DURING SW MONSOON: A NOVEL APPLICATION OF ALONG-TRACK RADAR ALTIMETER MEASUREMENTS FROM SPACE

机译:在SW季风的阿拉伯海和孟加拉海湾和孟加拉湾的空间相干性:沿着空间沿轨道雷达高度计测量的新颖应用

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We have examined, for the first time, the spatial coherence of oceanic parameters, namely, the ocean surface wind and significant wave height (SWH), using near-instantaneous along-track sampling over vast oceanic tracks provided by Poseidon-2 Radar Altimeter onboard Jason-1. The spatial coherence length scales over the Arabian Sea and the Bay of Bengal regions, derived using Auto correlation analysis, display interesting characteristics in relation to onset and evolution of SW Monsoon over India. The estimated spatial coherence scales are found to be of the order of 100-500 km. Generally, SWH coherence lengths over Arabian Sea are observed to increase from June to July during good monsoon year (2012). This trend is not followed for the poor monsoon year (2002). Similar trend is observed for spatial coherence scales for wind speed. The temporal evolution of analyzed spatial coherence scales of winds and waves over Arabian Sea clearly brings out the distinction between a 'good' (2012) and a 'poor' (2002) monsoon year. The spatial coherence lengths of these parameters over the Bay of Bengal are found to be shorter and do not show any systematic relation to onset and evolution of SW monsoon. Anisotropy in coherence lengths is also analyzed by treating ascending and descending tracks separately. Generally, the descending tracks measurements show higher spatial coherence lengths than the ascending ones. Like the spatial coherence scales, the anisotropy of the coherence scales over the Arabian Sea also mimics the behaviour of the strength of SW Monsoon.
机译:我们首次审查了海洋参数的空间相干性,即海面风和显着的波浪高度(SWH),在Poseidon-2雷达高度计上的庞大的海洋轨道上使用近瞬间沿着轨道抽样杰森-1。使用自相关分析来源的阿拉伯海和孟加拉湾的空间相干长度尺度和孟加拉区域的湾,展示了与印度的SW季风的发作和演变相关的有趣特征。估计的空间相干尺度被发现为100-500公里。一般来说,在良好的季风年度期间,从6月到7月开始增加阿拉伯海的SWH相干长度(2012年)。贫困季风年(2002年)没有遵循这种趋势。对于风速的空间相干尺度观察到类似的趋势。分析的空间相干尺度的风和波浪在阿拉伯海的潮空间的时间演变显然在“良好”(2012年)和“贫困”(2002)季风年之间区分了区别。这些参数在孟加拉湾的这些参数的空间相干长度被发现更短,并没有显示与SW季风的发作和演变的任何系统关系。还通过单独处理上升和下降轨道来分析相干长度的各向异性。通常,下降轨道测量显示比上升的空间相干长度更高。像空间相干尺度一样,阿拉伯海相干尺度的各向异性也模仿了SW季风的力量的行为。

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