...
首页> 外文期刊>Marine Geodesy >Impact of Satellite-Derived Diffuse Attenuation Coefficient on Upper Ocean Simulation Using High-Resolution Numerical Ocean Model: Case Study for the Bay of Bengal
【24h】

Impact of Satellite-Derived Diffuse Attenuation Coefficient on Upper Ocean Simulation Using High-Resolution Numerical Ocean Model: Case Study for the Bay of Bengal

机译:高分辨率数值海洋模型对卫星漫射衰减系数的影响对高洋模拟的影响:以孟加拉湾为例

获取原文
获取原文并翻译 | 示例
           

摘要

Impact of satellite-derived shortwave attenuation depth and its spatial variability on the upper ocean dynamics has been studied using a numerical ocean model over the Bay of Bengal. We conducted two simulations, differing in the spatial distribution of shortwave attenuation depth for the period 2014-2015. The control run use a constant attenuation depth of 23 m (the default case for Type-I water) while the experimental run (ER) use spatially varying attenuation depths derived from daily climatology of the diffuse attenuation coefficient (). Simulated parameters like sea surface temperature (SST) and mixed-layer depth (MLD) are sensitive to that limits the penetration of downwelling shortwave radiation into the ocean. It has been found that alters the upper ocean thermodynamics significantly. Validation has been performed using satellite, moored-buoy and profile data, for the year 2015. During spring, the errors in SST in the ER are reduced up to 35% at buoy location. The impact of improving shortwave attenuation depth is found to be maximum in the upper ocean (50-150 m). Error in simulated temperature at 100 m depth is reduced by 15% in the ER. MLD, barrier layer thickness, and the depth of 26 degrees C isotherm also show significant improvements in the ER.
机译:使用孟加拉湾上的数值海洋模型研究了卫星衍生的短波衰减深度及其空间变异性对上层海洋动力学的影响。我们进行了两个模拟,2014-2015年期间短波衰减深度的空间分布不同。对照运行使用恒定的23 m衰减深度(I型水的默认情况),而实验运行(ER)使用根据每日气候学得出的扩散衰减系数()随空间变化的衰减深度。诸如海面温度(SST)和混合层深度(MLD)之类的模拟参数对限制向下流短波辐射向海洋的渗透很敏感。已经发现,其显着改变了上层海洋的热力学。已使用2015年的卫星,系泊浮标和剖面数据进行了验证。在春季,ER的SST误差在浮标位置减少了35%。发现提高短波衰减深度的影响在上层海洋(50-150 m)中最大。在ER中,100 m深度的模拟温度误差降低了15%。 MLD,势垒层厚度和26摄氏度的等温线深度也显示出ER的显着改善。

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