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国家自然科学基金(41375058)

作品数:28 被引量:196H指数:8
相关作者:丁治英沈新勇黄海波王勇赵向军更多>>
相关机构:南京信息工程大学中国气象科学研究院中国科学院大气物理研究所更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划江苏高校优势学科建设工程资助项目更多>>
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28 条 记 录,以下是 1-10
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THE RELATIONSHIP BETWEEN HORIZONTAL VORTICITY INDUCED BY VERTICAL SHEAR AND VERTICAL MOTION DURING A SQUALL LINE PROCESS被引量:3
2018年
The horizontal vorticity equation used in this study was obtained using the equations of motion in the pressure coordinate system without considering friction, to reveal its relationship with vertical shear. By diagnostically analyzing each term in the horizontal vorticity equation during a squall line process that occurred on 19 June 2010, we found that the non-thermal wind term had a negative contribution to the local change of upward movement in the low-level atmosphere, and that its impact changed gradually from negative to positive with altitude, which could influence upward movement in the mid-and upper-level atmosphere greatly. The contribution of upward vertical transport to vertical movement was the largest in the low-level atmosphere, but had negative contribution to the upper-level atmosphere. These features were most evident in the development stage of the squall line. Based on analysis of convection cells along a squall line, we found that in the process of cell development diabatic heating caused the subsidence of constant potential temperature surface and non-geostrophic motion, which then triggered strong convergence of horizontal acceleration in the mid-level atmosphere and divergence of horizontal acceleration in the upper-level atmosphere. These changes of horizontal wind field could cause a counterclockwise increment of the horizontal vorticity around the warm cell, which then generated an increase of upward movement. This was the main reason why the non-thermal wind term had the largest contribution to the strengthening of upward movement in the mid-and upper-level atmosphere. The vertical transport of large value of horizontal vorticity was the key to trigger convection in this squall line process.
ZHAO Xiang-junDING Zhi-ying
A Fourteen-Year Climatology of the Southwest Vortex in Summer被引量:17
2014年
Statistical studies were conducted on the southwest vortex(SWV) during the summers of 2000–13 using high-resolution reanalysis data with a horizontal resolution of 0.5°× 0.5°. A total of 578 SWVs were detected, with a maximum interannual frequency of 55. The variation of the interannual frequency featured a period of around six years. The most active period of SWVs was early July and the maximum occurrence of SWVs appeared in early morning(0200–0800 Beijing Standard Time(BST)). Most of the SWVs were short-lived, with only 66 cases(11.4%) lasting for more than 24 h. In addition, the moving tracks and three-dimensional shape of long-lived(≥ 36 h) SWVs are also presented. For those SWVs that lasted for more than 12 h, four types of SWVs(Types I–IV) were identified using a new method, and the results indicated that the dynamical and thermodynamical conditions before the formation of SWVs are effective indicators of the subsequent evolution of the vortex and associated severe weathers. Moreover, a further level of classification was also constructed for Type II SWVs, which accounted for the largest proportion out of Types I–IV, and the results indicated that the lifespan, radius and maximum 6-h precipitation were all closely related to the intensity of precipitation before the formation of SWVs.
FU Shen-MingZHANG Jing-PingSUN Jian-HuaSHEN Xin-Yong
1980-2010年冬季北极涛动季节内振荡的成因分析被引量:2
2016年
采用NCEP/NCAR日平均再分析资料,对冬季热带外低频振荡(大气角动量收支及地形力矩)与AO(Arctic Oscillation)指数进行计算,通过功率谱和统计分析发现,它们都存在30~60 d的周期,大气角动量收支与山脉力矩的变化为正相关,且显著响应AO变化。通过动力学诊断分析初步认为,北半球两大地形的山脉力矩作用于纬向大气角动量,副热带纬向西风发生变化,改变南北西风偶极子结构,使得AO产生变化,而且在两大地形中以喜马拉雅山脉地形作用为主。通过对喜马拉雅山脉地区的动力学诊断发现,在高(低)AO指数阶段,喜马拉雅山脉地区激发准定常行星波并作用于副热带西风,导致副热带西风偏弱(偏强),高纬西风偏强(偏弱),因而AO偏强(偏弱),平流层极涡偏强(偏弱),极涡强(弱)中心偏向东北亚。
沈新勇王涛王涛赵南黄伟王乙舒
关键词:低频振荡AO大气角动量
“莫拉克”台风螺旋雨带与水平涡度的关系被引量:5
2018年
利用实况资料和WRF模拟资料,分析2009年8月6—10日"莫拉克"台风在台湾地区造成强降水过程中台风螺旋雨带与水平涡度的关系。结果表明:模式较好地模拟出了本次台风暴雨的发生发展过程。在7日00时—9日00时,台风外围有两条螺旋雨带,一支位于台湾的中部偏南,一支位于台湾的南部,暴雨主要位于这两支螺旋雨带上;暴雨出现在环流上升支附近,在中低层,雨带对应着较大的指向东的水平涡度,且随着水平涡度大值区移动而移动,显示出两者较密切的联系;水平涡度的大值区与垂直涡度的大值区也有较好的对应关系,存在水平涡度向垂直涡度的转化;水平涡度的旋度正值区对应上升运动区,其旋度的大值区对应强的螺旋雨带与降水。当水平涡度减小时,若水平涡度的旋度正值区存在,雨带仍然可以维持。
丁治英黄海波赵向军黄海波
关键词:螺旋雨带暴雨
东北冷涡的最新研究进展被引量:30
2016年
本文系统性回顾2010年以来关于东北冷涡的气候特征、暴雨特征、强对流特征、冷涡的结构和发生发展机制、冷涡与平流层相互作用等方面的最新研究成果。这些研究的范围不仅包括直接受冷涡控制的东北地区,还包括冷涡外围地区,如华北、华中、华东、华南、西北和西南地区,这有利于加深对东北冷涡天气系统的全面认识,从而提高冷涡天气的预报水平。并且展望了东北冷涡未来研究的重点方向,即采用新理论方法和较高分辨率资料,不局限于研究其内部结构、发生发展机制,以及冷涡产生的中尺度对流系统结构、运动特征、发展和触发机制,还应探讨冷涡与其他天气系统相互作用的物理机制,特别是冷涡外围地区。另外,冷涡与平流层的相互作用也值得进一步关注。
李爽丁治英戴萍刘云桦韩颖
关键词:东北冷涡暴雨强对流平流层
城市燃气电厂噪声治理设计被引量:1
2018年
大型燃气电厂在城市周边投产运行,其噪声污染给周边环境造成一定影响。分析了燃气电厂各噪声源的特点及治理措施,并用噪声软件对治理效果进行了预测,为降噪设计提供参考。
孟宪彬丁宁丁国光付铁郑玥
关键词:燃气电厂声源噪声治理消声器声屏障
青藏高原夏季带状MCSs的分类以及形成原因被引量:8
2013年
利用2007—2011年夏季TBB(black body temperature)资料筛选出夏季青藏高原地区特征比较稳定的带状MCSs加以归类,结合NCEP资料及后向轨迹模型对其成因进行逐类探讨。结果表明,特征稳定的带状MCSs共有37例,可以按形状分为三类:北凸型、南界型和纬向型,其中北凸型发生得最多,纬向型最少。整个夏季有接近30%的时间,特别是在7月有近50%的时间都出现这种稳定的带状MCSs。高层南亚高压以及高空急流和低层500 hPa切变线辐合及其南侧的高温高湿是带状MCSs生成的主要原因。500 hPa上,纬向型带状MCSs一般发生在高原南北两侧较平直的东、西风气流中;北凸型发生时,高原北部为平直的西风气流,孟湾为较强的槽,高原东、南部受西南偏南气流影响;南界型时高原一般为西北气流,南侧有较强的孟湾气旋控制。围绕高原有4个水汽的辐散源地,带状MCSs对流区的水汽主要通过高原南侧和高原东南部的辐散源地进入对流区。
丁治英王小龙高松郭宏杰史永强
关键词:水汽输送
CONVECTIVE-STRATIFORM RAINFALL PARTITION BY RADIANCE-DERIVED CLOUD CONTENT:A MODELING STUDY
2016年
A new scheme that separates convective-stratiform rainfall is developed using threshold values of liquid water path(LWP) and ice water path(IWP).These cloud contents can be predicted with radiances at the Advanced Microwave Sounding Unit(AMSU) channels(23.8,31.4,89,and 150 GHz) through linear regression models.The scheme is demonstrated by an analysis of a two-dimensional cloud resolving model simulation that is imposed by a forcing derived from the Tropical Ocean Global Atmosphere Coupled Ocean-Atmosphere Response Experiment(TOGA COARE).The rainfall is considered convective if associated LWP is larger than 1.91 mm or IWP is larger than1.70 mm.Otherwise,the rainfall is stratiform.The analysis of surface rainfall budget demonstrates that this new scheme is physically meaningful.
沈新勇梅海霞庆涛李小凡
THE ANALYSIS OF MECHANISM OF IMPACT OF AEROSOLS ON EAST ASIAN SUMMER MONSOON INDEX AND ONSET
2017年
RegCM4.3, a high-resolution regional climate model, which includes five kinds of aerosols(dust, sea salt,sulfate, black carbon and organic carbon), is employed to simulate the East Asian summer monsoon(EASM) from 1995 to 2010 and the simulation data are used to study the possible impact of natural and anthropogenic aerosols on EASM.The results show that the regional climate model can well simulate the EASM and the spatial and temporal distribution of aerosols. The EASM index is reduced by about 5% by the natural and anthropogenic aerosols and the monsoon onset time is also delayed by about a pentad except for Southeast China. The aerosols heat the middle atmosphere through absorbing solar radiation and the air column expands in Southeast China and its offshore areas. As a result, the geopotential height decreases and a cyclonic circulation anomaly is generated in the lower atmosphere. Northerly wind located in the west of cyclonic circulation weakens the low-level southerly wind in the EASM region. Negative surface radiative forcing due to aerosols causes downward motion and an indirect meridional circulation is formed with the low-level northerly wind and high-level southerly wind anomaly in the north of 25° N in the monsoon area, which weakens the vertical circulation of EASM. The summer precipitation of the monsoon region is significantly reduced,especially in North and Southwest China where the value of moisture flux divergence increases.
沈新勇黄文彦陈宏波
A NOVEL METHOD FOR CALCULATING VERTICAL VELOCITY:A RELATIONSHIP BETWEEN HORIZONTAL VORTICITY AND VERTICAL MOVEMENT被引量:7
2016年
The present work provides a novel method for calculating vertical velocity based on continuity equations in a pressure coordinate system.The method overcomes the disadvantage of accumulation of calculating errors of horizontal divergence in current kinematics methods during the integration for calculating vertical velocity,and consequently avoids its subsequent correction.In addition,through modifications of the continuity equations,it shows that the vorticity of the vertical shear vector(VVSV) is proportional to-ω,the vertical velocity in p coordinates.Furthermore,if the change of ω in the horizontal direction is neglected,the vorticity of the horizontal vorticity vector is proportional to-ω.When ω is under a fluctuating state in the vertical direction,the updraft occurs when the vector of horizontal vorticity rotates counterclockwise;the downdraft occurs when rotating clockwise.The validation result indicates that the present method is generally better than the vertical velocity calculated by the ω equation using the wet Q-vector divergence as a forcing term,and the vertical velocity calculated by utilizing the kinematics method is followed by the O'Brien method for correction.The plus-minus sign of the vertical velocity obtained with this method is not correlated with the intensity of d BZ,but the absolute error increases when d BZ is >=40.This method demonstrates that it is a good reflection of the direction of the vertical velocity.
丁治英赵向军高松罗亚丽
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