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On model validation for meso/submesoscale currents: Metrics and application to ROMS off Central California

机译:关于中/亚中尺度电流的模型验证:度量标准及其在中加州以外地区的ROMS中的应用

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ROMS with horizontal grid spacing of 3.5 km for the region off Central California was compared to RAFOS float observations and satellite altimetry on meso/submesoscales. The approach introduced and used two new metrics for model-data comparison, as well as suggested how to calculate these metrics for different spatio-temporal scales. The first metric consisted of the first two moments of exit time and was used to compare ROMS against RAFOS float observations at mid-depths (between 300 m and 350 m). Exit time is the time a float launched at a point takes to leave a domain for the first time. The second metric was spectral entropy and was used to estimate how well ROMS reproduced variability of the sea surface height (SSH) anomaly field extracted from an AVISO data set (1992-2007) for specified temporal and spatial scales. Calculations showed that ROMS reproduced the mid-depth mesoscale/Submesoscale Currents next to the coast in a very accurate manner (low-order exit time statistics of floats were reproduced by ROMS with an accuracy better than 95%); but ROMS overestimated the speed of westward drift of floats by as much as 20-30% at distances greater than 350 kin from the coastline. ROMS predicted the variability of the mesoscale (100-400 km) SSH anomaly field for temporal scales of 1-12 months with a reasonable accuracy. A wavelet transform modulus maxima technique applied to the spectral entropy of SSH anomaly also demonstrated good agreement between ROMS and satellite altimetry for mesoscales characterized by singular exponents and multi-fractal spectra for 1-12 month time scales. (c) 2009 Elsevier Ltd. All rights reserved.
机译:将中加州以外地区的水平网格间距为3.5 km的ROMS与RAFOS浮法观测和中/亚中尺度的卫星测高进行了比较。该方法引入并使用了两个新指标进行模型数据比较,并建议了如何针对不同时空尺度计算这些指标。第一个度量标准由出口时间的前两个时刻组成,用于比较ROMS与RAFOS浮标在中等深度(300 m至350 m之间)的观测值。退出时间是指某个点启动的浮动广告素材首次离开域所花费的时间。第二个指标是频谱熵,用于估计ROMS从指定时间和空间尺度从AVISO数据集(1992-2007年)中提取的海面高度(SSH)异常场的变异性。计算表明,ROMS以非常准确的方式复制了靠近海岸的中深度中尺度/亚中尺度水流(ROMS再现了浮标的低阶退出时间统计信息,其准确性优于95%);但是ROMS高估了从海岸线到350 kin以上距离时,浮标向西漂移的速度高达20%至30%。 ROMS以合理的精度预测了1-12个月时间尺度的中尺度(100-400 km)SSH异常场的变化。将小波变换模极大值技术应用于SSH异常的频谱熵,还证明了ROMS与卫星测高法对于以1-12个月时间尺度的奇异指数和多重分形谱为​​特征的中尺度具有良好的一致性。 (c)2009 Elsevier Ltd.保留所有权利。

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