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首页> 外文期刊>Science in China. Series D, Earth sciences >Possible mechanism of the effect of convection over Asian-Australian 'land bridge' on the East Asian summer monsoon onset
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Possible mechanism of the effect of convection over Asian-Australian 'land bridge' on the East Asian summer monsoon onset

机译:亚澳“陆桥”对流影响东亚夏季风爆发的可能机制

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The Asian-Australian "land bridge" is an area with the most vigorous convection in Asian monsoon region in boreal spring, where the onset and march of convection are well associated with the onset of East Asian summer monsoon. The convection occurs over Indo-China Peninsula as early as mid-April, which exerts critical impact on the evolution of monsoon circulation. Before mid-April there are primarily sensible heatings to the atmosphere over Indo-China Peninsula and Indian Peninsula, so the apparent heating ratios over them decrease with height. However, after mid-April it changes into latent heating over Indo-China Peninsula due to the onset of convection, and the apparent heating ratio increases with height in mid- and lower troposphere. The vertical distribution of heating ratio and its differences between Indo-China Peninsula and Indian Peninsula are the key factors leading to the splitting of boreal subtropical high belt over the Bay of Bengal. Such mechanism is strongly supported by the fact that the evolution of the vertical heating ratio gradient above Indo-China Peninsula leads that of 850 hPa vorticity over the Bay of Bengal. Convections over Indo-China Peninsula and its surrounding areas further increase after the splitting. Since then, there is a positive feedback lying among the convective heating, the eastward retreat of the subtropical high and the march of monsoon, which is a possible mechanism of the advance of summer monsoon and convection from Indo-China Peninsula to South China Sea.
机译:亚澳“陆桥”是北方春季亚洲季风地区最活跃的对流地区,对流的发生和进行与东亚夏季风的发生有很好的联系。对流早在4月中旬就发生在印度支那半岛上,这对季风环流的演变具有至关重要的影响。在4月中旬之前,印度支那半岛和印度半岛的大气主要受到明显的加热,因此它们的表观加热率随高度而降低。然而,由于对流的发生,4月中旬之后它变成了印度支那半岛的潜热,表观加热率随着对流层中低层的升高而增加。印度支那半岛和印度半岛之间的加热比的垂直分布及其差异是导致孟加拉湾北部副热带高压带分裂的关键因素。印支半岛上空的垂直加热比梯度的演化导致孟加拉湾上空850 hPa涡旋的演变,为这种机理提供了有力的支持。分裂后,印度支那半岛及其周边地区的对流进一步增加。此后,对流加热,副热带高压向东退缩和季风行进之间存在正反馈,这可能是夏季季风推进和印度支那半岛向南海对流的可能机制。

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