首页> 外文学位 >An analysis of the impacts of western north pacific tropical cyclones on their local and large scale environment.
【24h】

An analysis of the impacts of western north pacific tropical cyclones on their local and large scale environment.

机译:西北太平洋热带气旋对其局部和大规模环境的影响分析。

获取原文
获取原文并翻译 | 示例

摘要

The following study examines the spatiotemporal response of the local scale and large scale environment to tropical cyclone (TC) passage. The research presented here is broken up into three chapters that can be separated into two parts. Given that the analysis of the environmental response to TC passage heavily relies upon the use of atmospheric reanalysis datasets, the first half of this dissertation (Chapter 2) will examine the fidelity of TC intensity, position, and intensity life cycle within five reanalyses to determine what reanalyses can be used for when studying TCs. The results of this analysis show an underestimation of reanalysis TC intensity beyond what can be attributed to the coarse grid resolution of reanalyses. Moreover, the mean life cycle of normalized TC intensity within reanalyses exhibits an underestimation of pre-peak intensification rates as well as a delay in the timing of peak TC intensity relative to the Best Track. Significant discrepancies between reanalysis and Best-Track TC position are noted to exist particularly in regions that are observation deficient. Of the five reanalyses examined, the NCEP Climate Forecast System Reanalysis (CFSR) and JMA 25-yr Japanese Reanalysis (JRA-25) have the most robust representation of TCs particularly within the North Atlantic (NATL) and Western North Pacific (WPAC).;The second half of this study examines the local scale (Chapter 3) and large scale (Chapter 4) impacts of WPAC TCs upon their environment using storm-relative composites. On local scales, TCs are found to cool sea surface temperatures (SSTs) for at least a month following TC passage. The feedbacks from the SST cold wake combined with an initial net flux divergence of energy from the column yields a significant cooling and drying of the atmosphere that is strongest in the lower troposphere. Restoration of the environment is eventually achieved through a return of SSTs to climatology and a net flux convergence of potential energy aloft.;The large scale response of the environment is primarily associated with an anomalous drying of the lower and middle tropospheric atmospheric environment to the west and southwest of the TC. The drying appears to be caused by upper level convergence resulting from the interaction of the TC outflow with its environment. On the western side of the TC, both the upper level flow from the anticyclone of the Asian monsoon and the increasing inertial stability with latitude due to the meridional gradient of planetary vorticity limit the ventilation to the west of the TC yielding upper level convergence and subsidence. The area of anomalous drying to the southwest is associated with the convergent upper level flow from the right exit region of the anticyclonically curved equatorward outflow jet of the TC. Lastly, the meridional transport of total energy by TCs results in a substantial cross hemispheric export of dry static energy nearly 4000 km southwards as result of the upper level outflow jet of the TC. The meridional dry static energy transports by TCs appear to comprise a substantial portion of the total atmospheric dry static energy transports at the equator during late summer and early fall. In their totality, these results suggest that TCs may significantly impact their environment both on long temporal scales and large spatial scales with potentially significant aggregate climate impacts in the WPAC given the high frequency of TC occurrence.
机译:下面的研究检查了热带气旋(TC)通道的局部规模和大规模环境的时空响应。这里介绍的研究分为三章,可以分为两部分。鉴于对TC传递的环境响应的分析在很大程度上依赖于大气再分析数据集的使用,因此本文的前半部分(第2章)将在5次重新分析中检查TC强度,位置和强度生命周期的保真度,以确定研究TC时可以使用什么重新分析。分析的结果表明,重新分析的TC强度被低估了,超出了可归因于重新分析的粗网格分辨率的范围。此外,再分析中归一化TC强度的平均生命周期显示出峰前强化率的低估以及TC强度峰值相对于最佳轨迹的延迟。重新分析和最佳跟踪TC位置之间存在明显差异,特别是在观察不足的地区。在所审查的五次再分析中,NCEP气候预测系统再分析(CFSR)和JMA 25年日本再分析(JRA-25)具有最强大的TC表示,特别是在北大西洋(NATL)和西北太平洋(WPAC)内。 ;本研究的下半部分使用相对于风暴的复合材料,研究了WPAC TC对当地规模(第3章)和大规模(第4章)的影响。在当地范围内,发现TC在TC通过后至少一个月会冷却海面温度(SST)。来自SST冷尾流的反馈与来自塔的能量的初始净通量发散相结合,产生了对流层下部最强烈的大气层的明显冷却和干燥。环境的恢复最终是通过使海温恢复到气候状态和高位势能的净通量收敛来实现的;环境的大规模响应主要与对流层中低层大气环境向西异常干燥有关和TC的西南部。干燥似乎是由于TC流出与其周围环境相互作用而引起的高层收敛所致。在热带气旋的西侧,来自亚洲季风的反气旋的高空流动以及由于行星涡度子午线梯度而增加的惯性和纬度的惯性稳定性都限制了热带气旋以西的通风,从而产生高层的收敛和下沉。 。西南向异常干燥的区域与来自TC反旋曲线的赤道流出口的右出口区域的会聚高层水流有关。最后,由于TC的高水平流出射流,TC的子午经向运输导致向南向近4000 km的干半球大量跨半球出口。 TC的子午干静态静能量传输似乎占夏末和初秋赤道总大气干静态静能量传输的很大一部分。总体而言,这些结果表明,TC可能会在较长的时间尺度和较大的空间尺度上对环境产生重大影响,考虑到TC发生的频率很高,WPAC中可能会对气候产生重大的总体影响。

著录项

  • 作者

    Schenkel, Benjamin A.;

  • 作者单位

    The Florida State University.;

  • 授予单位 The Florida State University.;
  • 学科 Meteorology.;Atmospheric Sciences.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 214 p.
  • 总页数 214
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:43

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号