Evan Amato T, Vimont Daniel J, Heidinger Andrew K, Kossin James P, Bennartz Ralf
Cooperative Institute for Meteorological Satellite Studies, University of Wisconsin, Madison, WI 53706, USA.
Science. 2009 May 8;324(5928):778-81. doi: 10.1126/science.1167404. Epub 2009 Mar 26.
Observations and models show that northern tropical Atlantic surface temperatures are sensitive to regional changes in stratospheric volcanic and tropospheric mineral aerosols. However, it is unknown whether the temporal variability of these aerosols is a key factor in the evolution of ocean temperature anomalies. We used a simple physical model, incorporating 26 years of satellite data, to estimate the temperature response of the ocean mixed layer to changes in aerosol loadings. Our results suggest that the mixed layer's response to regional variability in aerosols accounts for 69% of the recent upward trend, and 67% of the detrended and 5-year low pass-filtered variance, in northern tropical Atlantic Ocean temperatures.
观测和模型表明,北大西洋热带地区的表层温度对平流层火山气溶胶和对流层矿物气溶胶的区域变化较为敏感。然而,这些气溶胶的时间变异性是否是海洋温度异常演变的关键因素尚不清楚。我们使用了一个简单的物理模型,并结合了26年的卫星数据,来估计海洋混合层对气溶胶负荷变化的温度响应。我们的结果表明,混合层对气溶胶区域变异性的响应占北大西洋热带地区近期上升趋势的69%,以及去趋势化和5年低通滤波方差的67%。