马登-朱利安涛动和准双周涛动对孟加拉湾和南海初夏热带气旋成因的影响

IF 4.8 2区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of Climate Pub Date : 2024-01-15 DOI:10.1175/jcli-d-23-0376.1
Weizhen Chen, Chang-Hoi Ho, Song Yang, Zeming Wu, Hongjing Chen
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引用次数: 0

摘要

摘要 马登-朱利安振荡(MJO)和准双周振荡(QBWO)是热带印度洋-太平洋季内振荡的重要组成部分。本研究考察了 1979-2021 年间 5-6 月间孟加拉湾(BOB)和南海(SCS)季内尺度的热带气旋(TC)成因。结果表明,与两类季节内振荡相关的对流同时调节着两个大洋盆地的热带气旋成因。随着 MJO/QBWO 对流的传播,TC 在两个海盆交替形成,在 MJO/QBWO 对流(非对流)阶段,TC 生成频率显著增加(减少)。根据与 MJO/QBWO 相关的异常成因潜力指数,进一步评估了各种因素对热气旋成因的影响。中层相对湿度和低层相对涡度在 MJO/QBWO 对热气旋成因的调节中起着关键作用。MJO 主要增强了大尺度跨赤道水汽输送,导致水汽显著辐合,而 QBWO 则普遍加强了季风槽,并导致北太平洋西部副热带高压后退,增加了区域低层相对涡度。潜在强度和垂直风切变的影响较小或为负。这项研究为了解邻近海盆热带气旋在季内尺度上的关系提供了见解,有望改善区域热带气旋活动的短期预测。
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Modulations of Madden-Julian Oscillation and Quasi-biweekly Oscillation on Early Summer Tropical Cyclone Genesis over Bay of Bengal and South China Sea
Abstract The Madden-Julian oscillation (MJO) and the quasi-biweekly oscillation (QBWO) are prominent components of the intraseasonal oscillations over the tropical Indo-Pacific Ocean. This study examines the tropical cyclone (TC) genesis over the Bay of Bengal (BOB) and the South China Sea (SCS) on an intraseasonal scale in May–June during 1979–2021. Results show that the convection associated with the two types of intraseasonal oscillations simultaneously modulates TC genesis in both ocean basins. As the MJO/QBWO convection propagated, TCs form alternately over the two basins, with a significant increase (decrease) in TC genesis frequency in the convective (non-convective) MJO/QBWO phase. Based on the anomalous genesis potential index associated with the MJO/QBWO, an assessment of the influence of various factors on TC genesis is further assessed. Middle-level relative humidity and lower-level relative vorticity play key roles in the MJO/QBWO modulation on TC genesis. The MJO primarily enhances large-scale cross-equatorial moisture transport, resulting in significant moisture convergence, while the QBWO generally strengthens the monsoon trough and induces the retreat of the western North Pacific subtropical high, increasing the regional lower-level relative vorticity. The potential intensity and vertical wind shear make small or negative contributions. This study provides insights into the neighboring basin TC relationship at intraseasonal scales, which has a potential to improve the short-term prediction of regional TC activity.
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来源期刊
Journal of Climate
Journal of Climate 地学-气象与大气科学
CiteScore
9.30
自引率
14.30%
发文量
490
审稿时长
7.5 months
期刊介绍: The Journal of Climate (JCLI) (ISSN: 0894-8755; eISSN: 1520-0442) publishes research that advances basic understanding of the dynamics and physics of the climate system on large spatial scales, including variability of the atmosphere, oceans, land surface, and cryosphere; past, present, and projected future changes in the climate system; and climate simulation and prediction.
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