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A numerical study for the interdecadal variation in the Northern Hemisphere winter circulation.

机译:北半球冬季环流年代际变化的数值研究。

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摘要

It has been revealed in previous studies that one possible mechanism responsible for the interdecadal change of the Northern-Hemisphere (NH) circulation is the interdecadal sea-surface temperature (SST) change. It is thus hypothesized that the interdecadal SST change is one of the possible mechanisms to induce the interdecadal change of the NH winter circulation. To test this hypothesis, two multi-decade (1946-92) climate simulations were performed with the R15 resolution of the NCAR CCM1: one incorporating the 12 calendar month climatological SSTs, the other using the real-time SSTs. By contrasting the results of these two climate simulations, the effect of SST anomalies on the interdecadal change of the NH winter circulation was found to induce (1) the equatorward expansion of the circumpolar vortex, (2) the deepening of three climatological troughs, and (3) three interdecadal variation modes of stationary eddies: Pacific/North America (PNA), PNA west (PNAW), and North Atlantic (NA) modes. These three interdecadal modes were found to be equivalent barotropic in their vertical structure. Horizontally, both the PNA and PNAW modes exhibited a teleconnection pattern over the Pacific/North American region, while the NA mode possessed a north-south three-cell structure over the Greenland/North Atlantic region. The temporal variations of these three modes consisted of a decadal trend and 15-20 year low-frequency oscillations.; The interdecadal variation of general circulation statistics is regulated by that of the atmospheric circulation. In the thermal field, the transient heat flux diverges out of the warm anomalies and converges toward the cold anomalies. In the dynamic field, the cyclone activity over the midlatitude storm track region is affected by the variability of the north-south wind shear which is induced by the equatorward expansion of the circumpolar vortex.; It is further demonstrated by linearized model simulations that (1) the tropical heating anomalies dominate over the extratropical heating anomalies as the primary mechanism to maintain the interdecadal change of the NH winter circulation, (2) the transient forcing anomalies are not important to the interdecadal circulation variability, and (3) the effect of the polar cooling is to amplify the stationary eddies.
机译:在先前的研究中已经揭示,造成北半球(NH)年代际变化的一种可能机制是年代际海表温度(SST)变化。因此,假设年代际SST变化是引起NH冬季循环年代际变化的可能机制之一。为了验证该假设,使用NCAR CCM1的R15分辨率进行了两个十年(1946-92)气候模拟:一个模拟包含12个历月的气候SST,另一个模拟使用实时SST。通过对比这两个气候模拟的结果,发现SST异常对NH冬季循环年代际变化的影响导致(1)绕极涡的赤道扩张,(2)三个气候槽的加深,以及(3)年代际涡旋的三种年代际变化模式:太平洋/北美(PNA),西向PNA(PNAW)和北大西洋(NA)模式。发现这三个年代际模式在垂直结构上是等正压。在水平方向上,PNA和PNAW模式在太平洋/北美地区均表现出遥相关模式,而NA模式在格陵兰/北大西洋地区则具有南北三小区结构。这三种模式的时间变化包括年代际趋势和15-20年的低频振荡。总体环流统计的年代际变化受大气环流的调节。在热场中,瞬态热通量从暖异常中扩散出来,并向冷异常中收敛。在动态场中,中纬度风暴道区域上的旋风活动受到南北风切变的影响,南北切变是由绕极涡的赤道扩张引起的。线性模型模拟进一步证明:(1)热带热异常占温带热异常的主要机制,是维持冬季NH年代际变化的主要机制;(2)瞬变强迫异常对年代际不重要(3)极地冷却的作用是放大固定涡流。

著录项

  • 作者

    Chen, Jau-Ming.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Physics Atmospheric Science.
  • 学位 Ph.D.
  • 年度 1995
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);
  • 关键词

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