首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Trends in pre-summer frontal and diurnal rainfall activities during 1982-2012 over Taiwan and Southeast China: characteristics and possible causes
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Trends in pre-summer frontal and diurnal rainfall activities during 1982-2012 over Taiwan and Southeast China: characteristics and possible causes

机译:台湾和中国东南部1982-2012年夏季前额和日降水量的变化趋势:特征和可能的原因

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摘要

Frontal convection (FC) and diurnal convection (DC) are the two most frequently observed weather systems affecting the pre-summer (May and June, MJ) rainfall formation over Taiwan and Southeast China. Focusing on the time period of 1982-2012 MJ months, this study found that the occurrence frequency of FC has declined, but the occurrence frequency of DC has significantly increased over Taiwan and Southeast China. Diagnoses of the atmospheric thermodynamic conditions over the East Asian-Western North Pacific (EAWNP) region indicate that the area favourable for the FC formation (i.e. the area with a locally enhanced meridional temperature gradient) has shifted northward from 20(o)-30(o)N to north of 30(o)N during the recent three decades; this shift has led to a decline in FC numbers over Taiwan and Southeast China. Analyses also indicate that the recent increase in DC activities over Taiwan and Southeast China after 1982 occurred in association with an observed strengthening of the daytime land-sea thermal contrast coupled with an intensification of the afternoon sea-breeze over the EAWNP region and a locally enhanced moisture flux convergence over Taiwan and Southeast China. Possible causes for the observed changes in the atmospheric thermodynamic conditions over the EAWNP region are also discussed.
机译:正面对流(FC)和昼间对流(DC)是影响台湾和中国东南部夏季(5月和6月,MJ)降雨形成的最常见的两个天气系统。着眼于1982-2012 MJ月的时间段,研究发现FC的出现频率有所下降,但DC的出现频率在台湾和中国东南部显着增加。对东亚-西北太平洋(EAWNP)区域大气热力学条件的诊断表明,有利于FC形成的区域(即子午温度梯度局部增强的区域)已从20(o)-30(在最近的三十年中,北至北30(o)N;这种转变导致台湾和中国东南部的FC数量下降。分析还表明,1982年之后台湾和中国东南部最近的DC活动增加与观测到的白天陆海热反差增强,EAWNP地区午后海风加剧和局部增强有关。台湾和中国东南部的水汽通量收敛。还讨论了在EAWNP区域观测到的大气热力学条件变化的可能原因。

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