首页> 外文会议>Conference on Atmospheric and Environmental Remote Sensing Data Processing and Utilization: Readiness for GEOSS >Analysis of Interannual Features of Tropical Cyclones Originating from the Monsoon Trough in the Western North Pacific
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Analysis of Interannual Features of Tropical Cyclones Originating from the Monsoon Trough in the Western North Pacific

机译:北太平洋西部季风槽的热带气旋际特征分析

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Based on 1979-2005 typhoon data and NCEP/DOE AMIP-II reanalysis, a study is performed of behaviors of tropical cyclones generated in the monsoon trough (MTTC hereinafter) in the western North Pacific as well as effects of the monsoon trough strength on their production. Evidence suggests that (1) during this period the MTTC yearly number experiences stages as follows: normal (1979-87), more MTTCs (1988-94), and fewer MTTCs (1995-2005); MTTC variation is marked by quasi-4 and -2 yearly periods, with 1994 as the change from more to fewer MTTCs in annual number; (2) in the years of anomalous MTTC number there are great difference in the onset/ending day and genesis position. In the years of fewer (more) MTTCs in comparison to mean, MTCC starts its activity later (earlier), terminating on an earlier (later) day, its genesis area is smaller (bigger), located south-^s(north-) and/or west-^s(eastward) of mean; 3) the ITCZ intensity affects the MTTC genesis position and yearly number When the lower-level western North Pacific subtropical high is positioned south-^s(north-) of normal, cross-equatorial flows at Somali and 90~160°E are weaker (stronger), the monsoon trough is weaker (stronger) with its position south- and/or westward (north- and/or eastward) with respect to normal. At that time, in the tropopause, the south-Asian high is east-^s(westward) of mean and the oceanic upper-air trough is south- and/or westward (north- and/or eastward). And the distribution in the high and lower troposphere allows the small-value band of vertical wind shear to decrease (increase) for a smaller (bigger) domain for MTTC genesis, and convection is suppressed (intensified), leading to positive (negative) OLR anomalies over waters east of the Philippine so that MTTC is generated south- and/or westward (north- and/or eastward) relative to normal and MTTC annual number is anomalously smaller (greater).
机译:基于1979-2005台风数据和NCEP / DOE AMIP-II重新分析,在北太平洋西部季风谷(MTTC)中产生的热带气旋的行为进行了一项研究,以及季风槽强度对其的影响生产。证据表明(1)在此期间,MTTC年度数字经验阶段如下:正常(1979-87),更多MTTCS(1988-94),更少的MTTCS(1995-2005); MTTC变异由准4和-2年度为期一年,1994年,随着时间的变化,每年数量较少; (2)在异常的MTTC号码中,发病/结束日和创世纪位置存在很大差异。在比较(更多)MTTC的年份与均值相比,MTCC以后(早)开始其活动,终止于早期(后来)的一天,其成因区域较小(更大),位于南 - ^ S(North-)和/或西 - ^ s(东部)的平均值; 3)ITCZ强度影响MTTC成因位置和年数当索马里和90〜160°E处于正常,逆赤道流量的南方(North-)时(更强),季风槽较弱(更强),其位于南 - 和/或向西(北 - 和/或向东)相对于正常情况。那时,在对象,南亚高位是East-^ S(西向西)的平均值,海洋上空槽是南方和/或向西(北 - 和/以东)。高且下层对流层的分布允许垂直风剪切的小值带减少(增加)MTTC成因的较小(更大)域的(增加),并抑制了对流(加剧),导致正(负)OLR在菲律宾东部的水域异常,使MTTC相对于正常和MTTC年度数量产生南 - 和/或向西(北 - 和/或向西),并且MTTC年度数量较小(更大)。

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