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Mass-induced sea level change in the northwestern North Pacific and its contribution to total sea level change

机译:mass-induced sea level change in the northwestern North pacific and its contribution to total sea level change

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摘要

Over the period 2003-2011, the Gravity Recovery and Climate Experiment (GRACE) satellite pair revealed a remarkable variability in mass-induced sea surface height (MSSH) in the northwestern North Pacific. A significant correlation is found between MSSH and observed total sea surface height (SSH), indicative of the importance of barotropic variability in this region. For the period 2003-2011, MSSH rose at a rate of 6.1 +/- 0.7mm/yr, which has a significant contribution to the SSH rise (8.3 +/- 0.7mm/yr). Analysis of the barotropic vorticity equation based on National Centers for Environmental Prediction/National Center for Atmospheric Research reanalysis product, GRACE, and altimetry data suggests that the MSSH signal is primarily caused by negative wind stress curl associated with an anomalous anticyclonic atmospheric circulation. Regression analysis indicates that trends in MSSH and surface wind are related to the Pacific Decadal Oscillation, whose index had a decreasing trend in the last decade.
机译:在2003年至2011年期间,重力恢复和气候实验(GRACE)卫星对揭示了西北太平洋西北部质量诱发的海面高度(MSSH)的显着变化。在MSSH和观测到的总海面高度(SSH)之间发现了显着相关性,表明该地区正压变化的重要性。在2003-2011年期间,MSSH的增长速度为6.1 +/- 0.7毫米/年,这对SSH的增长做出了重大贡献(8.3 +/- 0.7毫米/年)。根据国家环境预测中心/国家大气研究中心再分析产品GRACE和测高仪数据对正压涡度方程进行的分析表明,MSSH信号主要是由与反气旋大气环流异常相关的负风应力卷曲引起的。回归分析表明,MSSH和地表风的趋势与太平洋年代际涛动有关,后者的指数在最近十年中呈下降趋势。

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