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TropFlux wind stresses over the tropical oceans: evaluation and comparison with other products

机译:TropFlux风在热带海洋上的压力:与其他产品的评估和比较

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摘要

In this paper, we present TropFlux wind stresses and evaluate them against observations along with other widely used daily air-sea momentum flux products (NCEP, NCEP2, ERA-Ⅰ and QuikSCAT). TropFlux wind stresses are computed from the COARE v3.0 algorithm, using bias and amplitude corrected ERA-I input data and an additional climatological gustiness correction. The wind stress products are evaluated against dependent data from the TAO/TRITON, PIRATA and RAMA arrays and independent data from the OceanSITES mooring networks. Wind stress products are more consistent amongst each other than surface heat fluxes, suggesting that 10 m-winds are better constrained than near-surface thermodynamical parameters (2 m-humidity and temperature) and surface downward radiative fluxes. QuikSCAT overestimates wind stresses away from the equator, while NCEP and NCEP2 underestimate wind stresses, especially in the equatorial Pacific. QuikSCAT wind stress quality is strongly affected by rain under the Inter Tropical Convergence Zones. ERA-I and TropFlux display the best agreement with in situ data, with correlations >0.93 and rms-differences <0.012 Nm~(-2). TropFlux wind stresses exhibit a small, but consistent improvement (at all timescales and most locations) over ERA-I, with an overall 17 % reduction in root mean square error. ERA-I and TropFlux agree best with long-term mean zonal wind stress observations at equatorial latitudes. All products tend to underestimate the zonal wind stress seasonal cycle by ~ 20 % in the western and central equatorial Pacific. TropFlux and ERA-I equatorial zonal wind stresses have clearly the best phase agreement with mooring data at intraseasonal and interannual timescales (correlation of ~0.9 versus ~0.8 at best for any other product), with TropFlux correcting the ~13 % underestimation of ERA-I variance at both timescales. For example, TropFlux was the best at reproducing westerly wind bursts that played a key role in the 1997-1998 El Nino onset. Hence, we recommend the use of TropFlux for studies of equatorial ocean dynamics.
机译:在本文中,我们介绍了TropFlux风应力,并将其与其他广泛使用的日常海-海动量通量产品(NCEP,NCEP2,ERA-Ⅰ和QuikSCAT)一起用于观测评估。 TropFlux风应力是根据COARE v3.0算法使用偏差和幅度校正的ERA-I输入数据以及附加的气候突变校正来计算的。根据来自TAO / TRITON,PIRATA和RAMA阵列的相关数据以及来自OceanSITES系泊网络的独立数据评估了风应力产品。风应力积之间的相互关系比表面热通量更一致,这表明10 m风比近表面热力学参数(湿度和温度2 m)和表面向下辐射通量受到更好的约束。 QuikSCAT高估了远离赤道的风压,而NCEP和NCEP2低估了风压,特别是在赤道太平洋。热带间汇合带下的降雨严重影响了QuikSCAT的风应力质量。 ERA-1和TropFlux与原位数据显示出最好的一致性,相关性> 0.93,有效值差<0.012 Nm〜(-2)。与ERA-1相比,TropFlux风应力显示出较小但始终如一的改善(在所有时标和大多数位置),并且均方根误差总体降低了17%。 ERA-I和TropFlux与赤道纬度的长期平均纬向风应力观测最吻合。在赤道中西部的太平洋地区,所有产品都低估了纬向风应力季节周期约20%。 TropFlux和ERA-I赤道纬向风应力显然与季节内和年际尺度上的系泊数据具有最佳的相位一致性(对于任何其他产品,相关系数分别为〜0.9和〜0.8,最好为〜0.8),其中TropFlux校正了ERA-I低估了〜13%的情况。我在两个时间尺度上都变化。例如,TropFlux最擅长再现西风爆发,这在1997-1998年厄尔尼诺现象的发作中发挥了关键作用。因此,我们建议使用TropFlux来研究赤道海洋动力学。

著录项

  • 来源
    《Climate dynamics》 |2013年第8期|2049-2071|共23页
  • 作者单位

    Physical Oceanography Division, National Institute of Oceanography, Council of Scientific and Industrial Research, Dona Paula, Goa 403004, India;

    Laboratoire d'Oceanographie Experimentation et Approches Numeriques, CNRS, UPMC, IRD, Paris, France;

    Physical Oceanography Division, National Institute of Oceanography, Council of Scientific and Industrial Research, Dona Paula, Goa 403004, India,Laboratoire d'Oceanographie Experimentation et Approches Numeriques, CNRS, UPMC, IRD, Paris, France;

    National Institute of Oceanography, Regional Centre, Council of Scientific and Industrial Research, Vishakhapatnam, India;

    NOAA/Pacific Marine Environmental Laboratory, Seattle, WA, USA;

    NOAA/Pacific Marine Environmental Laboratory, Seattle, WA, USA;

    Laboratoire d'Oceanographie Experimentation et Approches Numeriques, CNRS, UPMC, IRD, Paris, France;

    Department of Meteorology and Oceanography, Centre for Bay of Bengal Studies, Andhra University, Vishakhapatnam, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    tropflux; tropics; air-sea momentum fluxes; wind stress products validation;

    机译:对流热带;海海动量通量;风应力产品验证;

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