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Effect of air-sea exchange parameters on Ocean Model simulations: Comparison with TRITON observations

机译:海空交换参数对海洋模型模拟的影响:与TRITON观测值的比较

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摘要

A detailed analysis and validation of ocean thermodynamic variables, simulated, using an Ocean general circulation Model (OGCM) forced by QuikSCAT scatterometer (QS-R) has been carried out in this study. The results are discussed in terms of comparison of vertical profiles of temperature against TRITON observations for the year 2004. Root mean square error (RMSE) of Sea Surface Temperature (SST) simulated by QS-R showed an error of the order of 0.6℃. QS-R SST also has a cooler bias. Another OGCM simulation was carried out in which the National Center for Environmental Prediction (NCEP) reanalysis winds (NCEP-R) were used to force the OGCM. The simulated SST resulted in lesser RMSE (~0.5℃) and there was no bias. However, variabilities in SST were captured more realistically in scatterometer forced solution. However the RMSE in SST was higher which could be partly due to physical inconsistency between scatterometer winds and other air-sea exchange parameters used from NCEP. A detailed statistics of the model simulated temperatures at different depths show excellent performance of scatterometer forced simulations as compared to NCEP-R. Maximum error in the temperature profile was in the thermocline region (~1.5℃) in QS-R as against 3.5℃ in NCEP-R. Possible causes of these errors in relation to air-sea exchange parameters used in forcing the OGCM are described in this work.
机译:在这项研究中,已使用QuikSCAT散射仪(QS-R)强制使用的海洋总循环模型(OGCM)对海洋热力学变量进行了详细的分析和验证。讨论了结果与2004年TRITON观测的垂直温度廓线的比较。QS-R模拟的海表温度(SST)的均方根误差(RMSE)的误差约为0.6℃。 QS-R SST的偏置也较低。进行了另一次OGCM模拟,其中使用了国家环境预测中心(NCEP)再分析风(NCEP-R)来强制OGCM。模拟的SST导致RMSE较小(〜0.5℃),并且没有偏差。但是,在散射仪强制解决方案中,可以更现实地捕获SST的变化。但是,SST中的RMSE较高,部分原因是散射计风与NCEP使用的其他海气交换参数之间存在物理不一致。与NCEP-R相比,模型模拟温度在不同深度的详细统计数据显示了散射仪强制模拟的出色性能。温度曲线的最大误差在QS-R的温跃层区域(约1.5℃),而NCEP-R则为3.5℃。在这项工作中,描述了与强迫OGCM所使用的海气交换参数有关的这些错误的可能原因。

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