首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Effect of Unidirectional Vertical Wind Shear on Tropical Cyclone Intensity Change—Lower‐Layer Shear Versus Upper‐Layer Shear
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Effect of Unidirectional Vertical Wind Shear on Tropical Cyclone Intensity Change—Lower‐Layer Shear Versus Upper‐Layer Shear

机译:单向垂直风剪切对热带气旋强度变化 - 下层剪切的影响与上层剪切

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摘要

In this study, a quadruply nested, nonhydrostatic tropical cyclone (TC) model is used to investigate how the structure and intensity of a mature TC respond differently to imposed lower‐layer and upper‐layer unidirectional environmental vertical wind shears (VWSs). Results show that TC intensity in both cases decrease shortly after the VWS is imposed but with quite different subsequent evolutions. The TC weakens much more rapidly for a relatively long period in the upper‐layer shear than in the lower‐layer shear, which is found to be related to the stronger storm‐relative asymmetric flow in the middle‐upper troposphere and the larger vertical vortex tilt in the former than in the latter. The stronger storm‐relative flow in the former imposes a greater ventilation of the warm core in the middle‐upper troposphere, leading to a more significant weakening of the storm. The storm in the lower‐layer shear only weakens initially after the VWS is imposed but then experiences a quasi periodic intensity oscillation with a period of about 24 hr. This quasi periodic behavior is found to be closely related to the boundary layer thermodynamic “discharge/recharge” mechanism associated with the activity of shear‐induced outer spiral rainbands. There is no significant intensity oscillation for the storm embedded in the upper‐layer shear, even though outer spiral rainbands develop quasi periodically also. The boundary layer inflow is very weak in that case and the low equivalent potential temperature air induced by downdrafts in outer spiral rainbands therefore cannot penetrate into the inner core but remains in the outer region.
机译:在该研究中,用于研究成熟TC的结构和强度如何不同地对施加的下层和上层单向环境垂直风剪(VWSS)不同的嵌套的非水压热带气旋(TC)模型。结果表明,在大众施加大众之后,两种情况下,两种情况下的TC强度都会减少,但随后的后续演变相当不同。在上层剪切中比下层剪切在上层剪切中相对长的时间较长,TC更快地减弱,这被发现与中上层对流层中的较强的暴风雨相对不对称流动有关和较大的垂直涡流在前者倾斜而不是后者。前者的较强的风暴相对流动在中上层对流层中的温暖核心施加更大的通风,导致风暴更加显着弱化。在施加VW之后,下层剪切中的风暴最初较小,但随后经历了大约24小时的时期的准周期性强度振荡。发现该准周期性行为与与剪切诱导的外螺旋雨带活动相关的边界层热力学“放电/再充电”机制密切相关。对于嵌入在上层剪切中的风暴没有显着的强度振荡,即使外螺旋雨带也在周期性地开发准则。在这种情况下,边界层流入非常弱,并且由外螺旋雨带中的下降装置引起的低等效电位温度不能渗透到内芯中,而是保留在外区域。

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  • 作者单位

    Pacific Typhoon Research Center and Key Laboratory of Meteorological Disaster of Ministry of Education (KLME) Nanjing University of Information Science and Technology Nanjing China;

    International Pacific Research Center and Department of Atmospheric Sciences School of Ocean and Earth Science and Technology University of Hawai‘i at Mānoa Honolulu HI USA;

    Institute of Atmospheric Physics Johannes Gutenberg University Mainz Germany;

    Pacific Typhoon Research Center and Key Laboratory of Meteorological Disaster of Ministry of Education (KLME) Nanjing University of Information Science and Technology Nanjing China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Effect of Unidirectional; Vertical Wind Shear; Tropical Cyclone Intensity;

    机译:单向的效果;垂直风剪;热带气旋强度;

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