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Subseasonal variability during the South China Sea summer monsoon onset

机译:南海夏季风爆发期间的亚季节变化

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摘要

Analysis of the Tropical Rainfall Measuring Mission (TRMM) Microwave Imager (TMI) data for the period 1998-2007 reveals large subseasonal fluctuations in sea surface temperature (SST) of the South China Sea during the summer monsoon onset. These subseasonal SST changes are closely related to surface heat flux anomalies induced by surface wind and cloud changes in association with the summer monsoon onset. The SST changes feed back on the atmosphere by modifying the atmospheric instability. The results suggest that the South China Sea summer monsoon onset involves ocean-atmosphere coupling on subseasonal timescales. While the SST response to surface heat flux changes is quick and dramatic, the time lag between the SST anomalies and the atmospheric convection response varies largely from year to year. The spatial-temporal evolution of subseasonal anomalies indicates that the subseasonal variability affecting the South China Sea summer monsoon onset starts over the equatorial western Pacific, propagates northward to the Philippine Sea, and then moves westward to the South China Sea. The propagation of these subseasonal anomalies is related to the ocean-atmosphere interaction, involving the wind-evaporation and cloud-radiation effects on SST as well as SST impacts on lower-level convergence over the equatorial western Pacific and atmospheric instability over the Philippine Sea and the South China Sea.
机译:对1998-2007年热带雨量测量任务(TRMM)微波成像仪(TMI)数据的分析显示,夏季风爆发期间,南中国海的海表温度(SST)存在较大的季节性变化。这些夏季海温变化与与夏季风爆发相关的地表风和云变化引起的地表热通量异常密切相关。 SST通过改变大气的不稳定性来改变对大气的反馈。结果表明,南海夏季风爆发涉及亚季节时标上的海气耦合。尽管SST对地表热通量变化的响应迅速而显着,但SST异常与大气对流响应之间的时滞每年变化很大。亚季节异常的时空变化表明,影响南海夏季风爆发的亚季节变化始于赤道西太平洋,向北传播至菲律宾海,然后向西移动至南海。这些次季节异常的传播与海洋-大气相互作用有关,包括风的蒸发和云辐射对海表温度的影响,以及海表温度对赤道西太平洋低层辐合的影响以及菲律宾海和太平洋上大气的不稳定性。南中国海。

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