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  • 安光所博士导师
姓名:吴晓庆
地址:科学岛
类型:博导
所在科研单元:安光所
导师介绍
    吴晓庆,男,1963年10月出生,博士、博士生导师。中国科学院安徽光学精密机械研究所/大气光学中心,研究员。 1984年本科毕业于安徽师范大学物理系;1994年获中国科学院光学专业硕士学位;2004年获中国科学院光学专业博士学位。 目前作为项目负责人承担国家自然基金面上项目、国家自然基金重大计划(培育项目),作为主要成员承担中科院先导项目、国家863、973等课题研究。 招生专业:大气物理学与大气环境。欢迎大气科学(气象)、物理、计算机等专业的学生报考。 Phone:+86-0551-65595251 E-mail:xqwu@aiofm.ac.cn
Introduction
     Xiaoqing Wu,male,born in Oct. 1st of 1963,Ph. D.,Professor.Graduated from Anhui normal university in 1984,Obtained Master degree and Doctor degree from Chinese Academy of Sciences in 1994 and 2004 respectively.Dr Wu research area includes the parametrization and model estimation of atmospheric optical turbulence in different underlying surface(land,ocean,polar region,etc. ),turbulent flux,Astronomy site testing,and measuring method of atmospheric turbulence. Some research projects are supported by NSFC,863,973, etc. He has published over 30 papers as first author. The students major in Meteorology, Physics and Computer will be well received. Xiaoqing Wu,P.O. Box 1125,Anhui,Hefei 230031,P.R. China Phone:+86-0551-65595251 E-mail:xqwu@aiofm.ac.cn
研究领域
     本人主持过多项国家自然基金面上和重大研究计划项目、作为主要成员承担中科院先导项目、国家863、973等课题研究。主要研究方向为:不同下垫面(陆地、海洋、极地等)大气光学湍流参数化和模式估算、湍流通量、天文选址、低平流层小尺度湍流测量方法等研究。
招生专业
博士招生计划:           1、专业:光学招生方向:null           2、专业:环境科学与工程招生方向:null 学术硕士招生计划:           1、专业:计算机应用技术(硕士)招生方向:不区分研究所和研究方向           1、专业:计算机科学与技术(安大联培)招生方向:null 博士招生计划:           1、专业:光学招生方向:大气光学特性及其测量技术 学术硕士招生计划:           1、专业:计算机应用技术(硕士)招生方向:嵌入式系统 博士招生计划:           1、专业:环境科学与工程招生方向:大气参数测量和模式研究 学术硕士招生计划:           1、专业:光学(硕士)招生方向:大气光学特性及其测量技术 博士招生计划:           1、专业:环境科学与工程招生方向:大气参数测量和模式研究           2、专业:光学招生方向:大气光学特性及其测量技术 学术硕士招生计划:           1、专业:计算机应用技术(硕士)招生方向:光电信息处理           2、专业:环境科学与工程(硕士)招生方向:大气参数测量和模式研究 博士招生计划:           1、专业:光学招生方向:大气光学特性及其测量技术           2、专业:环境科学与工程招生方向:大气参数测量和模式研究 学术硕士招生计划:           1、专业:环境科学与工程(硕士)招生方向:大气参数测量和模式研究           2、专业:光学(硕士)招生方向:大气光学特性及其测量技术
研究成果
发表和指导学生发表多篇高质量的科研论文。曾获奖成果共4 项;其中:国家级1项,省部级3项。 自2016年以来,第一作者或以通讯作者发表在《光学学报》、《Optics Express》、《J.Opt.Soc.Am》、《Applied Optics》、《Mon. Not. R. Astron. Soc.》等期刊发表论文32篇,其中二区SCI论文11篇) [1]吴晓庆*,中尺度气象模式预报大气光学湍流的现状与展望,激光与光电子学进展,激光与光电子学进展,2017,54(010001) (EI) [2]吴晓庆*,田启国,金鑫淼,姜鹏,青春,蔡俊,周宏岩,常规气象参数估算南极泰山站近地面大气光学湍流强度,物理学报,物 理 学 报,2017, 66(3):039201~039209 (SCI) [3]吴晓庆*,大气光学湍流强度估算和预报方法研究,安徽师范大学学报:自然科学版(特约稿),2016,39(6)(核心期刊) [4]吴晓庆*,近地面大气光学湍流强度估算方法研究进展,安徽师范大学学报:自然科学版(特约稿),2019,42(6)(核心期刊) [5]吴晓庆*,大气光学湍流廓线估算方法研究进展,安徽师范大学学报:自然科学版(特约稿),2021,44(1)(核心期刊) [6]Qing Chun,Wu Xiaoqing,Huang Honghua,Tian Qiguo,Zhu Wenyue,Rao Ruizhong,Li Xuebin*,Estimating the surface layer refractive index structure constant over snow and sea ice using Monin-Obukhov similarity theory with a mesoscle atmospheric model,Optics Express,2016,24(18)(SCI, 二区IF= 3.669, Top期刊) [7]Qing Chun,Wu Xiaoqing*,Li Xuebin, Zhu Wenyue,Qiao Chunhong, Rao Ruizhong,Mei Haiping,Use of weather research and forecasting model outputs to obtain near-surface refractive index structure constant over the ocean, Optics Express,2016,24(12)( SCI, 二区IF= 3.669, Top期刊) [8] Chun Qing,Xuebin Li,Xiaoqing Wu,Qiguo Tian,Dong Liu, Ruizhong Rao,and Zhu Wenyue*,Simulation the refractive index structure constant(Cn2)in the surface layer at Antarctica with a mesoscale model,the Astronomical journal,2018,155(37):1-13(SCI) [9]Chun Qing,Xiaoqing Wu,Xuebin Li,Tao Luo,Changdong Su,Wenyue Zhu*,Mesoscale optical turbulence simulations above Tibetan plateau:first attempt, Optics Express,2020,28(4) ( SCI,二区IF=3.669,Top期刊) [10]蔡俊,李学彬,詹国伟,武鹏飞,徐春燕,青春,吴晓庆*,一个新的海边光学湍流外尺度和Cn2的廓线模式,物理学报,2018,67(1):014206-1-15(SCI) [11]蔡俊,李学彬,武鹏飞,吴晓庆*,利用Tatarski方案估算不同环境下的光学湍流廓线,红外与激光工程,2018,47(11):1111002-1-7(EI) [12] 徐春燕,詹国伟,青春,蔡俊,吴晓庆*,陆地和近海面大气光学湍流估算与测量,强激光与粒子束,2018,30(2):021003-1-5(EI) [13]胡晓丹,吴晓庆*,青春,Thorpe 尺度估算South Pole大气湍流廓线,极地研究,2019,31(3):301-308 [14]胡晓丹,苏昶东,罗涛,青春,孙刚,刘庆,李学彬,朱文越,吴晓庆*. Thorpe尺度估算库尔勒、茂名、拉萨大气光学湍流廓线[J].强激光与粒子束,2019,31(8):31081002 [15] Yajuan Han, Qike Yang, Nana Liu,Ke Zhang, Chun Qing, Xuebin Li, Xiaoqing Wu*,Tao Luo,Analysis of wind speed profiles and optical turbulence above Gaomeigu and the Tibetan plateau using ERA5 data,Mon. Not. R. Astron. Soc., 2021, 501(4):4692-4702 (SCI,二区,IF=5.356,Top期刊) [16]Yajuan Han,Xiaoqing Wu*,Tao Luo,Chun Qing,Qike Yang,Xiaomei Jin,Nana Liu,Su Wu,Changdong Su,New Cn2 statistical model based on first radiosonde turbulence observation over Lhasa,Journal of the optical society of America A,2020,37(6) (SCI,三区,IF=1.791) [17]韩亚娟,吴晓庆*,罗涛,苏昶东,青春,吴骕,杨期科,张坤,拉萨光学湍流探空测量与模式分析,光学学报,2020, 40, 0601002. (EI) [18] Su Wu,Xiaodan Hu,Yajuan Han,Xiaoqing Wu*,Changdong Su,Tao Luo, Xuebin Li,Measurement and analysis of atmospheric optical turbulence in Lhasa based on thermosonde,Journal of atomopheric and Solar-Terrestrial physics,2020, 201:105241(SCI,四区,IF=1.53) [19] Su Wu,Changdong Su,Xiaoqing Wu*,Tao Luo,Xuebing Li,A simple method to estimate the refractive index structure parameter(Cn2) in the atmosphere,The astronomical society of the Pacific,2020,132:084501(SCI,三区,IF=3.98) [20] Su Wu, Qike Yang, Jiangyue Xu, Tao Luo, Chun Qing, Changdong Su, Chan Huang, Xiaoqing Wu*, Xuebin Li.. A reliable model for estimating the turbulence intensity and integrated astroclimatic parameters from sounding data [J] Monthly Notices of the Royal Astronomical Society. 2021,503,4 : 5692-5703 (SCI, 二区,IF=5.356 Top期刊) [21] Su Wu, Xiaoqing Wu*, Changdong Su, Qike Yang, Jiangyue Xu, Tao Luo, Chan Huang, Chun Qing. A reliable model to estimate the profile of the refractive index structure parameter and integrated astroclimatic parameters in the atmosphere. Optics Express ,2021,29, 12454-12470 (SCI,二区, IF=3.669, Top期刊) [22] Changdong Su,Xiaoqing Wu*,Tao Luo,Su Wu,Chun Qing,Adaptive niche-genetic algorithm based on backpropagation neural network for atmospheric turbulence forcasting,Applied optics,2020,59(12) (SCI,三区,IF:1.961) [23] Changdong Su, Xiaoqing Wu*, Su Wu, Qike Yang, Yajuan Han, Chun Qing, Tao Luo, Yi Liu. In situ measurements and neural network analysis of the profiles of optical turbulence over the Tibetan Plateau[J]. Monthly Notices of the Royal Astronomical Society, 2021, 506(3): 3430-3438. (SCI,二区,IF=5.356 Top期刊) [24]Changdong Su, Xiaoqing Wu*, Yiming Guo. Restoration of turbulence degraded images using the modified convolutional neural network, Applied Intelligence, 2022. (SCI,二区, IF=5.086, 已录用) [25]杨期科,吴晓庆*,韩亚娟,青春,运用Polar WRF 研究南极泰山站湍流 数据,极地研究,2020,32(3):343-351 (核心期刊) [26]Qike Yang,Xiaoqing Wu*,Yajuan Han,Chun Qing,Estimation of behavior of optical turbulence during sumer in the surface layer above the Antarctic Plateau using the Polar WRF model,Applied Optics,2021,60(14):4084-4094(SCI, 三区, IF=1.888) [27]Qike Yang,Xiaoqing Wu*,Su Wu,Yajuan Han,Changdong Su,Shitai Zhang,and Chun Qing,Simple method to estimate the Optical turbulence over snow and ice,Journal of the optical society of America A,2021,38(10):1483-1488(SCI,三区,IF=:1.791) [28]Qike Yang,Xiaoqing Wu*,Yajuan Han,Chun Qing,Su Wu,Changdong Su,Pengfei Wu,and Shitai Zhang,Model for estimating the astronomical seeing at Dome A,Antarctica,Optics Express,2021,29(22):35238-35246(SCI,二区, IF=3.669, Top期刊) [29]Qike Yang,Xiaoqing Wu*Yajuan Han,Chun Qing,Su Wu,Changdong Su,Pengfei Wu,Tao Luo,and Shitai Zhang,Estimating the astronomical seeing above Dome A using Polar WRF based on the Tatarskii equation,Optics Express,2021,29(26):44000-44011 (SCI,二区, IF=3.669, Top期刊) [30] Qike Yang,Xiaoqing Wu*, Tao Luo, Chun Qing,Renmin Yuan, Changdong Su,Changshun Xu,Yang Wu,Xuebin Ma,Zhiyuan Wang,Forecasting surface-layer optical turbulence above the Tibetan Plateau using the WRF model,Optics&Laser Technology,2022 (SCI 二区,Accepted) [31]张世泰,吴晓庆*,吴骕,韩亚娟,郭一鸣,苏昶东,杨期科, 近地面风速湍流内尺度的直接测量[J].光学学报,2022,(已接收) [32]郭一鸣,吴晓庆*,苏昶东,张世泰,毕翠翠,陶志炜,基于双向多尺度特征融合的湍流退化图像快速复原,激光与光电子学进展,2022,59(22)
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