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1998年长江流域二度梅建立过程中西太平洋副热带高压异常调整的机制分析
引用本文:苏同华,吕思思,袁卓建.1998年长江流域二度梅建立过程中西太平洋副热带高压异常调整的机制分析[J].热带气象学报,2017,33(5):588-597.
作者姓名:苏同华  吕思思  袁卓建
作者单位:1.福建省气象台,福建 福州 350001
基金项目:国家自然科学基金青年科学基金项目41405056福建省自然科学基金青年创新项目2015J05078华东区域气象科技协同创新基金合作项目QYHZ201405
摘    要:基于NCEP2再分析资料,利用全型线性位势诊断方程详细分析了1998年7月长江流域二度梅建立过程中西太平洋副热带高压(副高)异常调整的物理机制。研究表明,1998年二度梅的重新建立是由于副高南撤增强所致,期间以副高南、北两侧位势高度的“此长彼消”为显著特征。这一调整过程可以分为副高的减弱南撤和增强维持两个阶段,而且是由高、低纬天气系统共同影响的结果。地转涡度项和摩擦力散度项在这其中起到重要贡献,尤以前者贡献最大。在不考虑边界条件作用下,地转涡度项对位势高度的贡献量级为101 gpm,而摩擦力散度项则为100 gpm,后者的影响仅局限于对流层低层。对于北侧位势高度而言,受中高纬度Rossby波调整所产生的低压槽影响,地转涡度项使其持续减弱,而南侧位势高度由于赤道反气旋加强北上,地转涡度项使其由减弱转为增强。摩擦力散度项则通过正反馈作用,分别使得上述的减弱趋势和增强趋势更明显。 

关 键 词:线型位势诊断方程    二度梅    西太平洋副热带高压    双脊线
收稿时间:2016-02-03

MECHANISM STUDY FOR ANOMALOUS VARIATION OF THE WESTERN PACIFIC SUBTROPICAL HIGH DURING THE REBUILDING PROCESS OF THE MEIYU OVER THE YANGTZE RIVER VALLEY IN 1998
Institution:1.Fujian Meteorological Observatory, Fuzhou 350001, China2.School of Atmospheric Sciences, Sun Yat-sen University, Guangzhou 510275, China
Abstract:Based on the NCEP Reanalysis 2 data, the variation of geopotential heights during the rebuilding process of the Meiyu over the Yangtze River valley in July 1998 is analyzed by using the linear geopotential equation. It is revealed that the rebuilding of the Meiyu is due to the southward retreat and enhancement of the western Pacific subtropical high(WPSH), which is mainly characterized by respective decrease and increase of geopotential heights in the northern and southern part of the WPSH. This process consists of two stages, i.e., the first stage of decreasing and southwardretreating, and the second stage of increasing and maintaining. Moreover, the weather systems in high and low latitudes play a collective role in the adjustment process. The vorticity-related geostrophic mode and the friction divergence are the two most important items. Specifically, without considering the boundary effect, the former's contribution order is 101 gpm and the latter's is 100 gpm, yet with the contribution constrained to the lower level of the troposphere. Due to deep depression troughs induced by Rossby waves in the middle and high latitudes, the geopotential height to the north of WPSH tends to decrease persistently under the impact of a vorticity-related geostrophic mode. Similarly, it is also this item that makes geopotential heights to the south turn to increase after reaching a minimum because of the northward movement of an equatorial anticyclone. Through positive feedback, the friction divergence item tends to accelerate the aforementioned decrease and increase trends. 
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