黄安宁,男,汉族,1979 年 8 月生,重庆大足人。现任南京大学大气科学学院教授、博导,气象系副主任,中国气象局-南京大学气候预测研究联合实验室副主任。1998年入云南大学大气科学系学习,2002年获气象学理学学士学位,同年进入南京大学大气科学学院学习,2007年获气象学理学博士学位并留校任教。2008-2010年间在加拿大环境部内陆水研究所(CCIW)进行了为期2年的访问研究。主要从事陆面过程模式发展与评估、陆-气相互作用以及东亚气候模拟与预测等方面的科研工作。主持国家级科研项目7项:4项国家自然科学基金项目(包括1项青藏高原重大研究计划项目)、1项重点研发计划项目课题和2项公益性行业专项重点项目课题;参与国家级科研项目6项;还主持了多项科研协作项目和实验室开放课题,获可支配科研经费1600余万。重点在东亚季风降水日变化及其形成和变化机制、气候模式陆面过程中次网格地形热力效应参数化方案设计及湖泊热力学模型改进、模式物理过程不确定性对东亚降水模拟的影响等研究领域取得了一系列创新性成果,发表论文140篇,其中SCI论文99篇,第一/通讯作者论文63篇(SCI论文43篇,其中30篇发表在国际一流期刊:13篇JGR-A; 6篇CD; 3篇JC; 3篇JGR-O; 2篇GRL; 1篇ERL; 1篇JAMES; 1篇JHM),大部分研究成果发表在Geophysical Research Letters、Journal of Geophysical Research: Atmospheres、Journal of Geophysical Research: Oceans、Journal of Climate、Climate Dynamics、Environmental Research Letters、Journal of Advances in Modeling Earth Systems、Theoretical and Applied Climatology等国际主流SCI期刊上,合作出版专著1部,WoS高影响指数H-Index为22,SCI论文总引用1800余次。担任GRL,JGR-A,JGR-O、JC,CD,AR,JHM,JAMES, TAAC,IJOC, Journal of Glaciology,Climate Research等10余种国际主流期刊以及科学通报、中国科学、气象学报等10余种国内重要期刊审稿人。获2014年度 “第十四届全国优秀青年气象科技工作者”,入选 2016 年度江苏高校“青蓝工程”优秀青年骨干教师培养对象。江苏省气象学会第十五届理事会理事,中国气象学会会员。
联系方式:anhuang@nju.edu.cn;办公室:大气楼B310.
研究兴趣:
陆面过程模式发展与评估
陆气相互作用及气候效应
陆面对区域气候变化影响
工作经历:
2015.12-今 南京大学大气科学学院 教授
2011.01-2015.12 南京大学大气科学学院 副教授
2008.10-2010.10 加拿大环境部内陆水研究所(CCIW) 访问学者
2007.07-2010.12 南京大学大气科学学院 讲师
获奖情况:
1. 第八届全国优秀青年气象科技工作者,2014
2. 江苏高校“青蓝工程”优秀青年骨干教师培养对象 ,2016
3. 南京市第十二届自然科学优秀学术论文,2016
4. 南京大学魅力导师奖,2020
5. 江苏省气象学会气象科技成果二等奖(1/4),2020
6. 江苏省气象学会气象科技成果二等奖(2/4),2021
7. 江苏省气象学会气象科技成果一等奖(3/3),2021
8.“区域极端降水成因及预报”获南京大学2022年度优秀毕业论文(团队)一等奖指导老师(2/4), 2022
承担课程:
1. 东亚季风(本科生高年级研讨课)
2. 地球系统数值模拟(研究生核心课程;本硕贯通课,入选南京大学“三个一百”优质课程项目)
3. 气候物理学(研究生选修课;本硕贯通课)
人才培养:
本科生创新创业计划项目:
1.张 蒙,谭雨虹,计晓龙,王梦瑶. 2013, 套卫星反演降水产品在青藏高原东部地区适用性评估(G1310284002).
2.黄慧琳,吴 阳,刘 浩,谢晓栋. 2013, 低空急流影响江淮汛期降水研究(XY1310284009).
3.戚鹏达,唐 滢,田栗嵘,孙 慧. 2014, 太湖局地气候效应数值模拟研究(X1410284001).
4.周 业,袁荪奕,陈世凡,唐 勇. 2017, BCC_CSM1.1m模式对中国夏季极端降水模拟性能评估(X201710284002).
5.程雪琦,都 昊,范以程,肖成龙. 2017, 川渝地区暖季极端降水日变化特征分析(G201710284007).
6.顾璐瑶,高伊曼,刘 冲,陈维轩. 2018, 高分辨率太阳能资源估算方案设计(X201810284070).
7.朱琳箫,王 秋,李泳潼,闵隽玉. 2020, 青藏高原湖泊热状况对全球气候变化的响应特征研究(202010284153Z).
8.周义植,潘云逸,吴佳根,汪隆祝. 2021, 中国日照时数的长期演变特征分析(202210284365Y).
毕业硕士研究生
1.吴昊旻,2010级(在职),毕业论文题目:10个CMIP5模式对中亚地区2011-2060年气温变化预估。工作单位: 浙江省丽水市气象局
2.张 维,2013级(在职),毕业论文题目:福建省前汛期降水日变化特征分析。工作单位: 福建省气候中心
3.顾春雷,2013级(在职),毕业论文题目:次网格坡地辐射参数化对RegCM4.1模式模拟东亚气候的影响。工作单位: 江苏省连云港赣榆气象局
4.方纯纯,2013级(在职),毕业论文题目:东北冷涡内部中尺度涡旋引起的冰雹天气数值模拟。工作单位: 中国民用航空东北地区空中交通管理局
5.刘士高,2013级(在职),毕业论文题目:徐州市不同类型固态降水天气特征及典型个例对比分析。工作单位: 安徽省芜湖市气象局
6.姜燕敏,2013级(在职),毕业论文题目:影响丽水茶叶生长的气候背景变化特征及其对茶叶开采期影响。工作单位: 浙江省丽水市气象局
7.阚梦云,2013级,南京大学保送研究生,毕业论文题目:长江流域暖季小时极端降水的气候学特征。获2015年度硕士研究生国家奖学金;2015年度南京大学优秀研究生。毕业去向: 国睿科技股份有限公司
8.王 前,2014级,南京大学保送研究生,毕业论文题目:南亚高压的多模态特征及其与新疆夏季降水的联系。获2016年度硕士研究生国家奖学金;2016年度南京大学优秀研究生。毕业去向: 中国民用航空华东地区空中交通管理局
9.吴 阳,2015级,南京大学考研生,毕业论文题目:夏季青藏高原湖泊群区域气候效应及其作用机理的数值模拟研究。获2017年度硕士研究生国家奖学金;2017年度南京大学优秀研究生;2018届南京大学优秀毕业生。
10.肖成龙,2019级,南京大学保送研究生,毕业论文题目: 欧亚大陆冬季温度年代际趋势的模式评估和不同因子贡献的量化分析。获2020年度南京大学优秀研究生干部。毕业去向: 华为技术有限公司
11.谭 洁,2019级,成都信息工程大学考研生,毕业论文题目:CMIP6气候模式对中国气温、降水模拟能力评估和未来情景预估。获2021年度英才奖学金一等奖;2021年度南京大学优秀研究生。毕业去向: 国睿科技股份有限公司
12.唐 勇,2019级,南京大学保送研究生,毕业论文题目:主控中国东部夏季区域性极端降水事件的天气型及基于支持向量机预测建模研究。获2021年度硕士研究生国家奖学金;2021年度南京大学优秀研究生;2022届南京大学优秀毕业生。毕业去向: 华为技术有限公司
毕业博士研究生
1.朱雪妍,2018级,硕博连读,毕业论文题目:海温和海气耦合过程对BSISO预测的影响。获2021年度英才奖学金二等奖;2021年度南京大学优秀研究生;2022届南京大学优秀毕业生。毕业去向: 上海气象局气候中心
2.吴 阳,2019级,申请考核,毕业论文题目:青藏高原大型湖泊过程及其对气候变化的响应。获2021年度博士研究生国家奖学金;2019, 2020年度英才奖学金一等奖;2019, 2020年度南京大学优秀研究生;2021年度南京大学优秀研究生标兵;2022届南京大学优秀毕业生。毕业去向: 南京气象科技创新研究院
3.张馨丹,2019级(与江静老师合带),硕博连读,毕业论文题目:三维次网格地形太阳辐射效应参数化及其在陆面模式CoLM中的应用。获2021年度英才奖学金二等奖;2021年度南京大学优秀研究生干部;2022届南京大学优秀毕业生。毕业去向: 中国气象局地球系统数值预报中心
在读硕士研究生
1.赵志展,2020级,南京大学保送研究生,获2021、2022年度南京大学优秀研究生;获2022年度硕士研究生国家奖学金
2.石 异,2020级,南京信息工程大学长望班保送研究生,获2022年度南京大学优秀研究生;获2022年度国睿奖学金
3.张智煜,2021级,南京大学保送研究生
4.曾璟文,2021级,中山大学保送研究生
5.陈 爽,2022级,南京大学保送研究生,获南京大学2022年度优秀本科毕业论文(团队)一等奖 (2/4)
6.周雨辰,2022级,南京信息工程大学保送研究生
7.蔡忠瑞,2022级,南京大学考生,海洋一所联合培养
在读博士研究生
1.蔡舒心,2020级,硕博连读,获2021年度英才奖学金二等奖;2021年度南京大学优秀研究生。
2.许晓珂,2020级,申请考核,获2022年度英才奖学金二等奖
3.罗江鑫,2021级,申请考核
4.顾春雷,2021级(与张耀存老师合带),申请考核,博士中期考核优秀;获2022年度南京大学优秀研究生
5.王 欢,2022级,申请考核
科研项目:
51.国家重点研发计划项目“高分辨率全球陆面过程模式研发与应用”课题1“耦合人类活动的陆面物理过程建模” (2017YFA0604301), 2017.7-2022.6. 534万, 主持
50.国家自然科学面上基金项目“基于3维湖-气耦合模式的青藏高原大型湖泊气候效应及作用机理的数值模拟研究-以纳木错湖为例”(41975081), 2020.1-2023.12, 63万, 主持
49.国家自然科学基金重大研究计划培育项目“夏季青藏高原湖泊群区域气候效应及作用机理的数值模拟研究”(91537102), 2016.1-2018.12. 95万,主持
48.国家自然科学面上基金项目“青藏高原热力强迫对中国东部不同持续时间降水日变化影响的机理研究”(41175086), 2012.1-2015.12, 70万, 主持
47.国家自然科学青年基金项目“中国降水日变化的数值模拟及误差分析”(40805041),2009-2011. 20万, 主持
46.公益性行业专项重点项目“亚洲区域气候模式发展及在气候变化和短期气候预测中的应用”(GYHY201306046), 2013-2015. 43万, 第3课题负责人
45.公益性行业专项重点项目“气候系统模式中关键物理过程不确定性对东亚气候的影响”(GYHY201306020),2013-2016. 43万,第3课题负责人
44.国家重点研发计划项目“基于高分辨率气候系统模式的无缝隙气候预测系统研制与评估”课题4“次季节到年代际尺度的气候可预测性研究”(2016YFA0602104),2016.7-2021.6. 695万(可支配100万), 骨干
43.高原大气与环境四川省重点实验室开放课题"地形对川渝地区夏季区域性极端降水事件影响机制研究"(PAEKL-2023-K01),2023.1-2024.12, 2万,主持
42.关键地球物质循环前沿科学中心科技人才团队项目"极端降水多尺度水循环过程同位素示踪” (020914380103), 2022,6-2022.10, 50万(可支配17万), 骨干
41.中国科学院“西部之光”交叉团队项目-重点实验室合作研究专项“青藏高原湖-气相互作用及其生态环境效应研究”(E129030101,Y929641001),2021.1-2023.12, 200万(可支配40万), 骨干
40.寒旱区陆面过程与气候变化重点实验室科研协作项目“青藏高原湖泊生态环境效应模拟研究”, 2022.9-2023.5,10万,主持
39.成都高原气象研究所科研协作项目“山地辐射参数化方案在西南区域天气模式中的耦合应用”, 2022.10-2023.12,10万,主持
38.大气物理研究所科研协作项目“CAS-ESM季节预测系统中陆面过程模式的改进及影响”, 2022.6-2023.12, 10万, 主持
37.中国气象局科研协作项目“3D次网格地形太阳辐射效应参数化方案在BCC_CSM模式的耦合应用”, 2022.6-12, 7万, 主持
36.成都信息工程大学科研协作项目“华东沿海近地面风场特征研究”, 2022.6-12, 5万, 主持
35.大气物理研究所科研协作项目“中科院大气所预测系统FGOALS-f2汛期降水预测技巧检验评估”, 2021.9-2021.11, 18万, 主持
34.中国气象科学研究院灾害天气重点实验室开放课题重点项目“地形和城市对“21·7”河南暴雨的影响及机理”(2021LASW-A12),2021.9-2022.2,12万,主持.
33.寒旱区陆面过程与气候变化重点实验室科研协作项目“青藏高原典型湖泊三维模拟研究”,2021.6-2022.12,9万, 主持
32.中国气象局科研协作项目“3D次网格地形辐射强迫参数化方案构建及在BCC_CSM中的耦合应用”,2021.6-2022.6,7万,主持
31.中国气象局上海台风研究所科研协作项目“三维次网格混合参数化方案在气候长期模拟中的测试”, 2021.9-2021.12, 4万,主持
30.中国气象局科研协作项目“不同土地利用和社会经济发展路径情景下的气候变化预估”, 2020.9-2021.6. 20.2万,主持
29.大气物理研究所科研协作项目“高分辨率气候系统模式FGOALS-f2青藏高原陡峭地形区模拟的检验评估技术服务”, 2020.11-2021.10, 18万, 主持
28.寒旱区陆面过程与气候变化重点实验室科研协作项目“青藏高原湖泊气候效应模拟研究", 2020.1-2021.6, 5万, 主持
27.中央高校基本科研业务专项资金“青藏高原大型湖泊-大气相互作用机理的数值模拟研究”, 2020.5-10, 25万, 主持
26.中国气象局科研协作项目“BCC_CSM气候模式海温初始化系统的改进和评估研究”, 2020.3-12, 20万, 主持
25.生态环境部南京环境科学研究所科研协作项目“淄博市区空气流场模拟与空气资源评估”, 2020.1-12. 10万, 主持
24.生态环境部南京环境科学研究所科研协作项目“东营市区空气流场模拟与空气资源评估”, 2020.1-12. 10万, 主持
23.中国气象局科研协作项目“山地地表辐射参数化方案研制及其在BCC_CSM模式中的耦合应用”, 2020.6-2021.5.10万, 主持
22.上海气候中心科研协作项目“多模式预报技巧评估及误差订正释用软件引进”, 2020.1-12. 5万, 主持
21.中国气象局科研协作项目“BCC_AIM模式对东亚季风区陆面过程模拟能力评估 ”, 2019.1-12. 10万, 主持
20.重庆气候中心科研协作项目“基于S2S气候模式和BCC_CSM模式的检验与释用 ”, 2019.4-8. 5万, 主持
19.中国气象局科研协作项目“266分辨率BCC_CSM模式湖泊模型改进及性能评估 ”, 2018.1-12.10万, 主持
18.中国气象局科研协作项目“BCC气候模式评估与物理过程改进”, 2017.1-12. 60万, 主持
17. 2016年度江苏高校“青蓝工程”培养对象-优秀青年骨干教师, 2016.5-2019.5. 2万,主持
16.中央高校基本科研业务专项资金“夏季青藏高原湖泊群区域气候效应及作用机理”, 2015-2016.30万,主持
15.中央高校基本科研业务专项资金“东亚季风降水的模拟与预测”, 2016.1-12.10万, 主持
14.寒旱区陆面过程与气候变化重点实验室开放基金“1D湖泊模型在青藏高原地区的适用性及改进”,2016.10-2018.10. 5万, 主持
13.重庆市气象局科研协作项目“川渝地区极端降水日变化特征及其影响机制研究”, 2016.10-2018.10. 15万,主持
12.中国气象局科研协作项目“BCC气候模式发展、评估与改进”, 2016.1-12. 8万, 主持
11.公益性行业专项重点项目“BCC_CSM中海冰模式的改进及其关键物理过程优化研究”,2016-2018. 280万(可支配10万), 骨干
10.乌鲁木齐沙漠气象研究所科研协作项目“水汽输送变化对天山山区气候增湿的影响研究”,2015-2016. 10万, 主持
9.中国气象局科研协作项目“BCC_CSM中海冰和湖模式性能改进初步研究”,2015.1-2015.12. 10万, 主持
8.中国气象局科研协作项目“BCC_CSM模式对东亚季风区降水日变化模拟性评估”, 2014.1-12. 10万, 主持
7.中国气象局科研协作项目“湖模式与 BCC_AVIM耦合”, 2013.1-12. 8万, 主持
6.中国气象局科研协作项目“内陆湖模式性能检验”, 2012.7-12. 5万, 主持
5.国家国际科技合作项目“中亚地区应对气候变化条件下的生态环境保护与资源管理联合调查与研究-中亚气候变化”(2010DFA927), 2012-2013. 15万, 骨干
4.国家自然科学重点基金项目“气候变化下黄河源区区域水循环模型与不确定性研究”(40830639), 2009.1-2012.12.10万, 骨干
3.国家自然科学青年基金项目“气候变化下流域水文极端事件的响应机制及预测-以东江为例”(40901016),2010-2012.8万, 骨干
2.公益性行业(气象)专项重点项目“高空急流月 -季尺度变异关键信号及其在短期气候预测中的应用研究”(GYHY201006019),2011-2013. 21万, 骨干
1.国家科技支撑计划项目“持续性异常气象事件预测业务技术研究”课题3 "延伸期数值预报关键技术研究"(2009BAC51B03), 2010-2013. 10万, 骨干
发表论文:
2023年(第一/通讯作者SCI论文3篇):
140. Xu Xiaoke, Anning Huang*, Danqing Huang, Yan Zhang, Chunlei Gu, Shuxin Cai, Yong Tang, Zhizhan Zhao, Jingwen Zeng, 2023, What are the Dominant Synoptic Patterns Leading to the Summer Regional Hourly Extreme Precipitation Events over Central-eastern Tibetan Plateau and Sichuan Basin? Geophysical Research Letters, 50, e2022GL102342, DOI:10.1029/2022GL02342. (通讯作者)paper.pdf
139. Luo Jiangxin, Anning Huang*, Shihua Lyu, Zhaohui Lin, Chunlei Gu, Zhaoguo Li, Mingshan Deng, Wen Zhao, Wanqing Liu, 2023, Improved Performance of CLM5.0 Model in Frozen Soil Simulation over Tibetan Plateau by Implementing the Vegetation Emissivity and Gravel Hydrothermal Schemes. Journal of Geophysical Research: Atmospheres, DOI:10.1029/2022JD038021 (通讯作者)paper.pdf
138.Huang Ying,Anning Huang*,Jie Tan.2023.The Climate Response to Global Forest Area Changes under Different Warming Scenarios in China. Advances in Atmospheric Sciences,doi:10.1007/s00376-022-2230-z.(通讯作者) paper.pdf
137. Yanlin Zhang, Xin Li, Aning Huang, et al., 2023.Sensitivity of Simulated Frozen Ground Temperatures to Different Solar Radiation and Air Temperature Products -- A Case Study in the Qilian Mountains on Northeastern Qinghai-Tibet Plateau in West China. Permafrost and Periglacial Processes, DOI:10.1002/PPP.2187.
2022年(第一/通讯作者SCI论文12篇)
136.Huang Anning, Chunlei Gu, Yaocun Zhang, Weiping Li, Lujun Zhang,et al., 2022. Development of a clear-sky 3D Sub-grid Terrain Solar Radiative Effect Parameterization Scheme Based on the Mountain Radiation Theory. Journal of Geophysical Research: Atmospheres,127, e2022JD036449. https://doi.org/10.1029/2022JD036449.paper.pdf
135.Chunlei Gu, Anning Huang*, Yaocun Zhang, Ben Yang , Shuxin Cai , Xiaoke Xu, Jiangxin Luo, Yang Wu, 2022.The Wet Bias of RegCM4 over Tibet Plateau in Summer Reduced by Adopting the 3D Sub-grid Terrain Solar Radiative Effect Parameterization Scheme.Journal of Geophysical Research: Atmosphere,127, e2022JD037434. https://doi.org/10.1029/2022JD037434.(*通讯作者) paper.pdf
134. Zhang Xindan, Anning Huang*, Yongjiu Dai, et al. 2022. Influences of 3D Sub-grid Terrain Radiative Effect on the Performance of CoLM over Heihe River Basin, Tibetan Plateau. Journal of Advances in Modeling Earth Systems,14, e2021MS002654, https://doi.org/10.1029/2021MS002654.(*通讯作者)paper.pdf
133.Shi Yi, Anning Huang*, Weiqiang Ma, Lijuan Wen, Lazhu, Xianyu Yang, Yang Wu, Chunlei Gu, 2022. Drivers of Warming in Lake Nam Co on Tibetan Plateau over the Past 40 Years. Journal of Geophysical Research: Atmospheres.127,e2021JD036320, https://doi.org/10.1029/2021JD036320. (*通讯作者) paper.pdf
132. Zhao Zhizhan, Anning Huang*, Weiqiang Ma, Yang Wu, Lijuan Wen, Lazhu, Chunlei Gu,2022.Effects of Lake Nam Co and Surrounding Terrain on Extreme Precipitation over Nam Co Basin, Tibetan Plateau: A Case Study. Journal of Geophysical Research: Atmospheres, 127, e2021JD036190, https://doi.org/10.1029/2021JD036190.(*通讯作者) paper.pdf
131. Song Yaoming, Anning Huang*, Haishan Chen, 2022.The Persistence and Reemergence of Atmospheric Anomaly Signals in Soil Temperature.Journal of Geophysical Research: Atmospheres,127, e2022JD037218, https://doi.org/10.1029/2022JD037218. (*通讯作者) paper.pdf
130.Song Yaoming, Anning Huang*, Haishan Chen, 2022. The Storage of Antecedent Precipitation and Air Temperature Signals in Soil Temperature over China. Journal of Hydrometeorology, DOI: https://doig.org.10.1175 /JHM-D-21.0126.1. (*通讯作者)paper.pdf
129. Xu Xiaoke, Anning Huang*, Qian Huang, et al., 2022. Impacts of Horizontal Resolution of the Lateral Boundary Conditions and Downscaling Method on the Performance of RegCM4.6. Earth and Space Science.9, e2022EA002433, https://doi. org/10.1029/2022EA002433(*通讯作者)paper.pdf
128.Zhu Xueyan, Xiangwen Liu, Anning Huang*, et al., 2022. Impacts of SST Configuration on Monthly Prediction of Western North Pacific Summer Monsoon in Coupled and Uncoupled Models. Climate Dynamics, 59: 1687-1702, 10.1007/s00382-021 -06063-6 (*通讯作者)paper..pdf
127.Fu Zhipeng, Anning Huang*, and Qu Guo. 2022. Improvements of the Subseasonal Precipitation Predicted by the BCC S2S Forecast System over Eastern China in Summer by the Singular Value Decomposition Bias Correction Method.Frontiers in Earth Science. DOI: 10.3389/feart.2021.770167. (*通讯作者 )
126.Yang Xianyu, Jun Wen, Anning Huang*, Yaqiong Lu, Xianhong Meng, Yong Zhao, Yurun Wang, and Lixia Meng. 2022. Short-term Climatic Effect of Gyaring and Ngoring Lakes in the Yellow River Source Area, China. Frontiers in Earth Science. DOI:10.3389/feart.2021.770757. (*通讯作者)
125. Jiang Yanmin, Anning Huang*, Haomin Wu, Xindan Zhang. 2022. GIS-Based Climate Suitability Regionalization of Loquat in Lishui, Zhejiang Province of China. Environmental Research Communications.
DOI: https://doi.org/10.1088/2515-7620/ac4a3c.(*通讯作者 )
124.Su Dongsheng , Lijuan Wen, Anning Huang, Yang Wu, Xiaoqing Gao, Mengxiao Wang, Yixin Zhao, and Georgiy Kirillin, 2022. Simulation of the potential impacts of lakes on glacier behavior over the Tibetan Plateau in summer.Climate Dynamics, https://doi.org/10.1007/s00382-022-06517-5.
123.Xiao Chenglong, Cheng Qian, Anning Huang, Ruixia Guo, Xueyuan Kuang, 2022. Evaluation of AMIP models from CMIP6 in simulating winter surface air temperature trends over Eurasia during 1998–2012 based on dynamical adjustment. Climate Dynamics, https://doi.org/10.1007/s00382-022-06295-0.
122.Wu Tingfeng, Boqiang Qin, Anning Huang, Yongwei Sheng, Shunxin Feng, and Céline Casenave. 2022. Reconsideration of wind stress, wind waves, and turbulence in simulating wind-driven currents of shallow lakes in the Wave and Current Coupled Model (WCCM) version 1.0. Geoscientific Model Development, DOI:10.5194/gmd-2021-29.
121. Rao Xiaona, Kun Zhao, Xingchao Chen, Anning Huang, Sheng Hu, Dongming Hu, Xiantong Liu. 2022. Roles of Multi-Scale Orography in Triggering Nocturnal Convection at a Summer Rainfall Hotspot over the South China Coast: A Case Study.Journal of Geophysical Research: Atmospheres, DOI: 10.1029/2022JD036503.
120.Feng Fan, Yong Zhao, Anning Huang, Yang Li, Xin Zhou. 2022.Different Seasonal Precipitation Anomaly Patterns in Central Asia Associated with Two Types of El Niño during 1951-2016. Frontiers in Earth Science, DOI:10.3389/feart.2022.771362.
119.Zhang Shaobo , Lixia Meng, Yong Zhao, Xianyu Yang and Anning Huang, 2022. The influence of the Tibetan Plateau monsoon on summer precipitation in Central Asia. Frontiers in Earth Science,
doi:10.3389/feart.2022.771104.
118. Zhu La, Kun Yang, Jun Qin, Juzhi Hou, Yanbin Lei, Junbo Wang,Anning Huang, Yingying Chen, Baohong Ding, Xin Li. 2022. A strict validation of MODIS lake surface water temperature on the Tibetan Plateau. Remote Sensing. 14, 5454.https://doi.org/10.3390/rs14215454
117. Yang Ben,Minghuai Wang,Guang Zhang,Zhun Guo,Yong Wang,Guoqing Dai, Anning Huang,Yaocun Zhang, Yun Qian.2022. Parameterizing Convective Organization Effects with a Moisture-PDF Approach in Climate Models: Concept and a Regional Case Simulation. Journal of Advances in Modeling Earth Systems. DOI:10.1029/2021MS002942.
116.Shujun Liu, Ben Yang, Zhun Guo, Minghuai Wang, Yun Qian, Anning Huang, and Yaocun Zhang. 2022.Quantifying the Local and Remote Impacts of Sub-Grid Physical Processes on the Southeast Pacific Sea Surface Fluxes in the Community Atmosphere Model Version 5 by a Limited-Area Parameter-Perturbation Approach. International Journal of Climatology, 42(3): 1369-1387.
115.王彩霞,黄安宁*,郑鹏,刘凯,侯敏. 2022.中国第一代全球陆面再分析(CRA40/Land)气温和降水产品在中国大陆的适用性评估. 高原气象,41(5):1325-1334, DOI:10.7522/j.issn.1000-0534.2021.00056.(通讯作者)
114.谭洁,黄安宁*, 史学丽,张宇, 张艳武, 曹璐, 吴阳. 2022. BCC_CSM2-MR模式对中国陆面过程模拟能力评估.高原气象,41(5):1335-1347,DOI:10.7522/j.issn.1000-0534.2021.00057. (通讯作者)
113. 董新宁, 吴遥, 黄安宁, 唐红玉. 2022. 川渝地区夏季极端降水日变化特征分析.大气科学.10.3878/j.issn.1006-9895.2108.21032.
112.许长义, 卜清军, 黄安宁, 2022. 环渤海湾连续两条阵风锋的关联与成因分析.气象. 48(6): 729-745.
111.杨显玉,吕雅琼,文军,马耀明,孟宪红,黄安宁,田辉,张少波,王禹润,赵林.2022.扎陵湖和鄂陵湖夏季典型地表水热交换特征的数值模拟.高原气象,40(1): 143-152.
2021年(第一/通讯作者SCI论文5篇):
110.Tang Yong, Anning Huang*, Peili Wu, Danqing Huang,Daokai Xue,Yang Wu, 2021. Drivers of summer extreme precipitation events over East China. Geophysical Research Letters. DOI: 10.1029/2021GL093670. (*通讯作者 )paper .pdf
109. Wu Yang, Anning Huang*, Youyu Lu, Lazhu, Xianyu Yang, Bo Qiu, Zhiqi Zhang, Xindan Zhang, 2021. Numerical Study of the Thermal Structure and Circulation in a Large and Deep Dimictic Lake over Tibetan Plateau, Journal of Geophysical Research: Oceans, DOI: 10.1029/2021JC017517. (*通讯作者 )paperpdf
108.Cai Shuxin, Anning Huang*,Kefeng Zhu, et al., 2021. Diurnal Cycle of Summer Precipitation over the Eastern Tibetan Plateau and Surrounding Regions Simulated in a Convection-Permitting Model. Climate Dynamics, 57:611-632.DOI:10.1007/S00382-021-05729-5. (*通讯作者 )paper.pdf
107.Zhu Xueyan, Xiangwen Liu, Anning Huang*, et al., 2021. Impact of the observed SST frequency in the model initialization on the BSISO prediction. Climate Dynamics, 57:1097-1117. (*通讯作者 )paper.pdf
106.Mu Xiyu, Anning Huang*, Yang Wu, Qi Xu, Yuanyuan Zheng, Huijuan Lin, Dexian Fang, Xindan Zhang, Yong Tang and Shuxin Cai. 2021. Characteristics of the precipitation diurnal variation and underling mechanisms over Jiangsu, eastern China during warm Season. Frontiers in Earth Science, DOI: 10.3389/feart.2021.703071. (*通讯作者 )
105.Wang Chenli, Kun Zhao,Anning Huang,Xingchao Chen, Xiaona Rao. 2021. The Crucial Role of Synoptic Pattern in Determining the Spatial Distribution and Diurnal Cycle of Heavy Rainfall over the South China Coast. Journal of Climate, 37(7): 2441–2458.
104. Hu Qin, Yong Zhao, Anning Huang, Pan Ma and Jing Ming. 2021. Moisture Transport and Sources of the Extreme Precipitation Over Northern and Southern Xinjiang in the Summer Half-Year During 1979–2018. Frontiers in Earth Science, 9:770877.doi: 10.3389/feart.2021.770877.
103.Ben Yang, Minghuai Wang, Guang J. Zhang, Zhun Guo, Anning Huang, Yaocun Zhang, Yun Qian, 2021. Linking Deep and Shallow Convective Mass Fluxes via an Assumed Entrainment Distribution in CAM5‐CLUBB: Parameterization and Simulated Precipitation Variability. Journal of Advances in Modeling Earth Systems, DOI: 10.1029/2020ms002357.
102.Wu, Tongwen, Yu, Rucong, Lu, Yixiong, Jie, W., Fang, Y., Zhang, J., Zhang, L., Xin, X., Li, L., Wang, Z., Liu, Y., Zhang, F., Wu, F., Chu, M., Li, J., Li, W., Zhang, Y., Shi, X., Zhou, W., Yao, J., Liu, X., Zhao, H., Yan, J., Wei, M., Xue, W., Huang, Anning, Zhang, Y., Zhang, Y., Shu, Q., and Hu, A. 2021. BCC-CSM2-HR: a high-resolution version of the Beijing Climate Center Climate System Model,Geoscientific Model Development,14, 2977–3006.
101. 郭渠, 黄安宁*, 付志鹏等. 2021. 北京气候中心次季节-季节预测系统对西南地区夏季降水次季节预报技巧评估及误差订正. 高原气象. 40(3), 644-655. (* 通讯作者 )
100. 侯 敏, 黄安宁*, 黄鹤等. 2021. 天津生态城太阳辐射特征分析及算法评估. 气象科学, 41(1): 8-16. (* 通讯作者 )
99. 王晨宇,姚素香,黄安宁,高千惠. 2021. 不同纬度天气尺度扰动影响2020年夏季梅汛期降水的数值模拟.大气科学学报, 44(2): 228-239.
2020年(第一/通讯作者SCI论文5篇):
98.Qiu Bo, Anning Huang*, et al., 2020. Implementation and Evaluation of an Improved Lake Scheme in Beijing Climate Center Atmosphere-Vegetation Interaction Model. Journal of Geophysical Research: Atmospheres,
97. Gu Chunlei, Anning Huang*, et al., 2020. Effects of Sub-grid Terrain Radiative Forcing on the Ability of RegCM4.1 in the Simulation of Summer Precipitation over China. Journal of Geophysical Research: Atmospheres, 125,e2019JD032215. https://doi.org/10.1029/2019JD032215. (* 通讯作者 )paper.pdf
96.Wu Yang, Anning Huang*, et al., 2020. Improvements of the Coupled WRF-Lake Model over Lake Nam Co, Central Tibetan Plateau. Climate Dynamics, 55, 2703-2724. (* 通讯作者 )paper.pdf
95. Zhao Yong, Anning Huang*, et al., 2020. Characteristics of Hourly Extreme Precipitation along the Yangtze River Basin,China during Warm Season. Scientific Reports. DOI: 10.1038/s41598-020-62535-5.(* 通讯作者 ) paper.pdf
94. Meng Lixia, Yong Zhao, Anning Huang*, Tianzhu Wang, Yang Wu. 2020.Impact of South Asian monsoon on summer dust weather occurrence over the Tarim basin in Northwest China. Enviromental Research Communications. https://doi.org/10.1088/2515-7620/abbd89.(通讯作者)
93.Zheng Lina,Yaocun Zhang, Anning Huang, 2020. Sub-seasonal prediction of the 2008 extreme snowstorms over South China.Climate Dynamics, 55,1979-1994.
92.Qian Shimeng, Lujun Zhang, Ben Yang, Anning Huang, and Yaocun Zhang. 2020. Analysis of Intraseasonal Oscillation Characteristics of Arctic Summer Sea Ice. Geophysical Research Letters, DOI:10.1029/2019GL086555.
91.Yang Ji, Kun Zhao, Xingchao Chen, Anning Huang, Yuanyuan Zhen, Kangyuan Sun. 2020. Sub-seasonal and diurnal variability in lightning and storm activity over the Yangtze River Delta, China during Meiyu season. Journal of Climate, 33(12):5013-5033.
90.Yang Ben, M. Wang, G. Zhang, Z. Guo, Y. Qian, Anning Huang, and Y. Zhang, 2020. Simulated precipitation diurnal variation with a deep convective closure subject to shallow convection in Community Atmosphere Model Version 5 coupled with CLUBB. Journal of Advances in Modeling Earth Systems. DOI: 10.1029/2020MS002050.
89. Bo Zhongkai, Xiangwen Liu, Weizong Gu, Anning Huang, Yongjie Fang, et al., 2020. Impacts of atmospheric and oceanic initial conditions on boreal summer intraseasonal oscillation forecast in the BCC model. Theoretical and Applied Climatology, 142:393-406.
88.Yang Ben, Yaocun Zhang, Zhun Guo, Yun Qian, Anning Huang and Yang Zhou, 2020. Investigating the linkage between simulated precipitation climatology and ENSO-related precipitation anomaly based on multi-model and perturbed parameter ensembles. Theoretical and Applied Climatology, 139, 533-547.
87.Yang, Ben, Zhang, Y., Qian, Y., Song F., Leung L., Wu P., Guo Z., Lu Y., and Anning Huang, 2020. Better monsoon precipitation in coupled climate models due to bias compensation. NPJ Clim Atmos Sci, 2, 43, doi:10.1038/s41612-019-0100-x.
86.He Huanran, Suxiang Yao, Anning Huang, and Kejian Gong. 2020. Evaluation and Error Correction of the ECMWF Subseasonal Precipitation Forecast over Eastern China during Summer. Advances in Meteorology, Article ID 1920841.
85.方德贤, 董新宁, 邓承之,吴钲,海川,高松,黄安宁等. 2020. 2008~2016 年重庆地区降水时空分布特征. 大气科学, 44(2): 1−14.
84.杨显玉,吕雅琼,文军,马耀明,黄安宁等,2020. 不同参数化方案和再分析资料在典型高原湖泊地区的适用效果评估分析.高原气象,39(6):1195-1206.
2019年(第一/通讯作者SCI论文2篇):
83.Huang Anning, Lazhu, Junbo Wang, Yongjiu Dai, Kun Yang. 2019. Evaluating and Improving the Performance of Three 1-D Lake Models in a Large Deep Lake of the Central Tibetan Plateau. Journal of Geophysical Research: Atmospheres, 124, 3143–3167. paper.pdf
82. Wu Yang, Huang Anning*, Ben Yang, et al., 2019, Numerical study on the climatic effect of the lake clusters over Tibetan Plateau in summer. Climate Dynamics, 53: 5215-5236.(* 通讯作者 )paper.pdf
81. Zhou Y., B. Yang*, H. Chen, Y. Zhang, Anning Huang, and M. La, 2019. Effect of the Madden-Julian Oscillation on 2-m AirTemperature Prediction over China during Boreal Winter in the S2S Database. Climate Dynamics, 52(11): 6671-6689.
80.Song Y., Z. Wang, L. Qi and Anning Huang. 2019. Soil moisture memory and its effect on the surface water and heat fluxes on seasonal and interannual time scales. Journal of Geophysical Research: Atmospheres, 124(20): 10730-10741
798.Rao X, K Zhao,X Chen, Anning Huang, M Xue, Q Zhang and M Wang, 2019.Influence of Synoptic Pattern and Low-Level Wind Speed on Intensity and Diurnal Variations of Orographic Convection in Summer over Pearl River Delta, South China. Journal of Geophysical Research: Atmospheres, 124, 6157–6179.
78.Huang D, Yan, P., Xiao, X., Zhu, J., Tang, X., Anning Huang, 2019. The tri-pole relation among daily mean temperature, atmospheric moisture and precipitation intensity over China. Glob. Planet. Change, 179: 1-9.
77.Li, W, Y Zhang, X Shi, W Zhou, Anning Huang, M Mu, B Qiu and J Ji. 2019. Development of land surface model BCC_AVIM2.0 and its preliminary performance in LS3MIP/CMIP6. J. Meteor. Res. , 33(5): 851-869.
76.Yang, Ben, Zhang, Y., Qian, Y., Song F., Leung L., Wu P., Guo Z., Lu Y., and Anning Huang, 2019. Better monsoon precipitation in coupled climate models due to bias compensation. NPJ Clim Atmos Sci, 2, 43, doi:10.1038/s41612-019-0100-x.
75.Wu, T., Lu, Y., Fang, Y., Xin, X., Li, L., Li, W., Jie, W., Zhang, J., Liu, Y., Zhang, L., Zhang, F., Zhang, Y., Wu, F., Li, J., Chu, M., Wang, Z., Shi, X., Liu, X., Wei, M., Anning Huang, Zhang, Y., and Liu, X. 2019. The Beijing Climate Center Climate System Model (BCC-CSM): Main Progress from CMIP5 to CMIP6. Geosci. Model Dev., 12, 1573-1600.
74.慕熙昱, 徐琪, 潘玉洁 , 孙世玮 , 李昕, 黄安宁. 2019. 雷达径向速度资料同化中不同坐标转换方案的对比试验. 高原气象, (03), pp 625-635.
2018年(第一/通讯作者SCI论文1篇):
73.Wu Yang,Anning Huang*, Danqing Huang, Fei Chen, Yang Zhou, Dexian Fang, Lujun Zhang and Lijuan Wen, 2018. Diurnal variations of summer precipitation over the regions east to Tibetan Plateau. Climate Dynamics,51: 4287-4307.(*通讯作者)paper.pdf
72.Yang Ben, Yang Zhou, Yaocun Zhang,Anning Huang, Yun Qian, Lujun Zhang, 2018. Simulated precipitation diurnal cycles over East Asia using different CAPE-based convective closure schemes in WRF model. Climate Dynamics, 50: 1639-1658.
71.Zhou Y., B. Yang, Y. Zhao, J. Jiang,Anning Huang, and M. La, 2018. Effects of the Ground Surface Temperature Anomalies over the Tibetan Plateau on the Rainfall over Northwestern China and Western Mongolia in July. Theoretical and Applied Climatology, 134: 645-667.
70.Liu Dongqing, Ben Yang, Yaocun Zhang, Yun Qian,Anning Huang,Yang Zhou, Lujun Zhang, 2018. Combined impacts of convection and microphysics parameterizations on the simulations of precipitation and cloud properties over Asia. Atmospheric Research, 212:172-185.
69.Zhao Yong, Yang Zhou, Minzhong Wang, Wen Hou,Anning Huang,Xinhua Yang, Fan Yang, 2018. Annual distributions and variations of dust weather occurrence over the Tarim Basin, China. Theoretical and Applied Climatology, 132: 209-217.
68.戴永久, 魏楠, 黄安宁, 朱司光, 上官微, 袁华, 张树鹏, 刘少峰, 2018. 通用陆面模式(CoLM)湖泊过程方案与性能评估. 科学通报,63: 3002-3021.
67.赵勇,王前, 黄安宁. 2018.南亚高压伊朗高压型与新疆夏季降水的联系. 高原气象,37(3): 651-661.
66.顾春雷, 方德贤, 周洋, 黄安宁. 2018.次网格坡地辐射参数化对RegCM4.1模式模拟东亚夏季气候的影响. 气象科学, 38(5):585-595.
65.慕熙昱, 徐琪, 周林义, 陶星, 黄安宁, 2108. 基于AWOS数据的南京禄口机场低能见度特征统计研究. 高原气象,37(4): 1129-1142.
2017年(第一/通讯作者SCI论文1篇):
64.Zhang W.,Anning Huang*, 2017. Diurnal Cycle of Precipitation over Fujian Province during the Pre-summer Rainy Season in Southern China. Theoretical and Applied Climatology, 130(3-4): 993-1006.(*通讯作者)
63.Fangy Y.,P. Wu, T. Wu, Z. Wang, L. Zhang, X. Wu, X. Xiao,Anning Huang, 2017. An evaluation of borealsummer intraseasonal oscillation simulated by BCC_AGCM2.2. Climate Dynamics,48: 3409-3423.
62.Shu Lei, M Xie, D Gao, T Wang, D Fang, Q Liu, Anning Huang, and Liwen Peng, 2017. Regional severe particle pollution and its association with synoptic weather patterns in the Yangtze River Delta region, China. Atmos. Chem. Phys., 17: 12871-12891.
61.韩函, 黄安宁*. 2017. 华北地区夏季降水日变化的时空分布特征. 大气科学,41(2):263-274.(*通讯作者)
60.计小龙, 吴昊旻, 黄安宁*. 2017.青藏高原夏季降水日变化特征分析. 高原气象,36(5): 1188-1200.(*通讯作者)
59.赵勇, 王前, 黄安宁. 2017. 中亚和南亚热力差异对塔里木盆地夏季降水的影响. 气候与环境研究,22(5): 574-586.
58.王前,赵勇,黄安宁,杨清. 2017.南亚高压的多模态特征及其与新疆夏季降水的联系. 高原气象,36(5): 1209-1220.
57.董新宁, 方德贤, 黄安宁等. 2017.两种垂直风廓线的对比及应用I:一致性分析. 高原气象,36(3):788-800.
56.方德贤, 董新宁, 黄安宁等. 2017.两种垂直风廓线的对比及应用II:不同降水条件下风廓线特征. 高原气象,36(4): 971-983.
2016年(第一/通讯作者SCI论文3篇):
55.Huang Anning,Yong Zhao, Yang Zhou,2016.Evaluation of multi-satellite precipitation products by use of ground based data over China. Journal of Geophysical Research: Atmospheres,121: 10654–10675.
54.Wang Q.,Anning Huang*,2016.Evaluation of the Precipitation Seasonal Variation over Eastern China Simulated by BCC_CSM Model with Two Horizontal Resolutions. Journal of Geophysical Research: Atmospheres,121:8374-8389.(*通讯作者)
53.Zhao Y., Anning Huang*,2016. The impact of the summer Plateau Monsoon over Tibetan Plateau on the rainfall in Tarim Basin. China.Theoretical and Applied Climatology,126: 265-272.(*通讯作者)
52.Zhou Y., Y. Lu, B. Yang, J. Jiang,Anning Huang,2016. On the relationship between the Madden-Julian Osillation and 2m air temperature over Central Asia in boreal winter. Journal of Geophysical Research: Atmospheres, 121: 13250-13272.
51.Wang L., Y. Qian, Y. Zhang, C. Zhao, R. Leung, Anning Huang,2016.Observed variability of summer precipitation pattern and extreme events in East China associated with variations of the East Asian summer monsoon. International Journal of Climatology,36: 2942–295.
50.张蒙, 黄安宁*, 2016. 五种卫星反演降水资料在青藏高原东部地区的适用性分析. 高原气象,35(1):34-42.(*通讯作者)
49.吴昊旻, 黄安宁*, 2016. 不同分辨率BCC_CSM模式对中亚夏季降水模拟能力评估. 干旱区地理,39(6):1305-1318.(*通讯作者)
48.唐滢,黄安宁*,2016.夏季太湖局地气候效应的数值模拟研究. 气象科学, 36(5): 647-654.(*通讯作者)
47.赵勇,黄安宁,王前, 杨青,2016.青藏高原地区5月热力差异和后期夏季北疆降水的联系, 气候与环境研究 ,6:653-662.
46.朱新胜,朱宽广,谢旻,黄安宁等,2016.江苏省人为热排放现状及未来变化趋势分析. 气候与环境研究,21(3)306-312.
2015年(第一/通讯作者SCI论文2篇):
45.Kan M.,Aning Huang*,Y. Zhao, Y. Zhou,2015.Evaluation of the summer precipitation over China simulated by BCC_CSM model with different horizontal resolutions during the recent half century. Journal of Geophysical Research: Atmospheres, 120,4657-4670,doi:10.1002/2015JD023131.(*通讯作者)
44.Zhou Y.,Anning Huang*,2015.Influence of the Sea Surface Temperature Anomaly over the Indian Ocean in March on the Summer Rainfall in Xinjiang. Theoretical and Applied Climatology, 119(3-4): 781-789.(*通讯作者) .
43.Yang B.,Y.Zhang, Yun Qian,Anning Huang,2015.Calibration of a convective parameterization scheme in the WRF model and its impact on the simulation of East Asian Summer Monsoon precipitation. Climate Dynamics,44(5-6): 1661-1684.
42.Yang B.,Yaocun Zhang, Yun Qian, Tongwen Wu,Anning Huang,and Yongjie Fang,2015.Parametric sensitivity analysis for the Asian summer monsoon precipitation simulation in the Beijing Climate Center AGCM version 2.1. Journal of Climate, 44(5-6): 1661-1684.
41.Huang Y.,Y.Zhang,Anning Huang,2015:Analysis of the Simulated Different-class Meiyu Precipitation and Associated Circulation by the BCC_AGCM2.0.1. Theoretical and Applied Climatology,120(3-4): 631-641.
40.姜燕敏,黄安宁*,2015.不同水平分辨率BCC_CSM模式对中亚地面气温模拟能力评估. 大气科学,39(3): 535-547.(*通讯作者).
39.吴昊旻,黄安宁*,2015.RegCM4.1区域气候模式对中国区域气候模拟能力评估. 气象科学, 35(1):17-25.(*通讯作者).
2014年(第一/通讯作者SCI论文2篇):
38.Huang Anning,Yang Zhou,Yaocun Zhang,2014.Changes of the Annual Precipitation over Central Asia in the 21st Century Projected by Multi-models of CMIP5. Journal of Climate,27(12): 6627-6646.
37.Zhao Y.,Anning Huang*,2014.Impact of the Middle and Upper Tropospheric Cooling over Central Asia on the Summer Rainfall in the Tarim Basin, China. Journal of Climate,27: 4721-4732.(*通讯作者).
36.Zhou Y.,Anning Huang,2014.Modeled Interaction between the Sub-Seasonal Evolving of the East Asian Summer Monsoon and the Direct Effect of Anthropogenic Sulfate. Journal of Geophysical Research: Atmospheres,119: 1993-2016.
35.Zhao Y., M. Wang,Anning Huang, H. Li, W. Huo,2014.Relationships between the West Asian subtropical westerly jet and summer precipitation in northern Xinjiang.Theoretical and Applied Climatology,116: 403-411.
34.Huang D., J. Zhu, Y. Zhang, and Anning Huang,2014.The Different Configurations of the East Asian Polar Front Jet and Subtropical Jet and the Associated Rainfall Anomalies over Eastern China in Summer. Journal of Climate,27: 8205–8220.
2013年(第一/通讯作者SCI论文2篇):
33.Huang Anning,Y Zhang, Z Wang, T Wu,2013.Extended range simulations of the extreme snow storms over southern China in early 2008 with the BCC_AGCM2.1 model. Journal of Geophysical Research: Atmospheres, 118: 8253-8273.
32.Zhao Y.,Anning Huang*,2013.The impact of the winter NAO on the frequency of spring dust storms over Tarim Basin in northwest China in the past half century. Environ. Res. Lett.,8024026(5pp), doi: 10.1088/1748-9326/8/2/024026.(*通讯作者).
31.Zhou Y., J. Jiang,Anning Huang,2013.Possible contribution of heavy pollution to the decadal change of rainfall over eastern China during the summer monsoon season. Environ. Res. Lett., doi:10.1088/1748-9326/8/4/044024.
30.Huang D., J. Zhu,Y. Zhang, and Anning Huang,2013.Uncertainties on the simulated summer precipitation over Eastern China from the CMIP5 models. Journal of Geophysical Research: Atmospheres,118: 9035-9047.
29.Zhu J.,D. Huang, Y. Zhang,Anning Huang, X. Kuang, and Y. Huang,2013.Decadal changes of Meiyu rainfall around 1991 and its relationship with two types of ENSO. Journal of Geophysical Research: Atmospheres,118:9766-9777.
28.Fang Y., Y. Zhang,Anning Huang, and B. Li,2013.Seasonal and intraseasonal variations of East Asian summer monsoon precipitation simulated by a regional air-sea coupled model. Advances in Atmospheric Sciences, 30(2): 315-329
27.Wang D., Y. Zhang, and Anning Huang,2013.Climatic features of the southwesterly low Level jet over southeast China and its association with precipitation over East China. Asia Pacific Journal of Atmospheric Sciences, 49(3): 259-270.
26.Zhao Y., H. Li,Anning Huang, Q. He, W. Huo,2013.Relationship between thermal anomalies in Tibetan Plateau and summer dust storm frequency overTarim Basin, China. Journal of Arid Land,5(1): 25-31.
25.Zhou,Y., J. Jiang,Y Lu,and Anning Huang,2013.Revealing the effects of the ElNino Southern oscillation tropical cyclone intensity over the estern North Pacific from a model sensitivity study. Advances in Atmospheric Sciences, 30(4): 1117-1128.
24.Guo L., W. Perrie, Z. Long, J. Chassé, Y. Zhang,Anning Huang,2013.Dynamical Downscaling over the Gulf of St. Lawrence using the Canadian Regional Climate Model. Atmosphere-Ocean,51(3):265-283.
23.吴昊旻,黄安宁*,2013.BCC_CSM1.1模式预估中亚地区未来50年地面气温时空变化特征. 气象学报,71(2):261-274.(*通讯作者).
22.吴昊旻,黄安宁*,2013.10个CMIP5模式预估中亚地区未来50年降水时空变化特征. 干旱区地理,36(4):669-678.(*通讯作者).
21.赵勇,黄安宁,杨青,2013.青藏和伊朗高原热力异常与北疆夏季降水的关系. 气象学报,71(4):660-667.
20.吴昊旻,黄安宁,姜燕敏,2013.华东地区不同等级降水日数的时空分布特征. 气候与环境研究,18(3):387-396.
2012年(第一/通讯作者SCI论文1篇):
19.Huang Anning,Yerubandi R.Rao,Weitao Zhang,2012.On Recent Trends in Atmospheric and Limnological Variables in Lake Ontario.Journal of Climate, 25:5807-5816
18.Rao Y. R.,Anning Huang and Wayne R.Rouse,2012.Modeling of physical processes and assessment of climate change impacts in Great Bear Lake.Atmosphere-Ocean, 50(3): 317-333.
17.Zhao Y., Y. Fang, C. Cui, and Anning Huang,2012. Effects of irrigation Oasis on precipitation in arid region. Journal of Arid Land, 42(2): 132-139.
16.吴昊旻, 黄安宁, 黄旋旋, 2012. 近50年长三角地区季节的气候变化特征 .中国农业气象, 33(3): 317-324.
2010年(第一/通讯作者SCI论文2篇):
15.Huang Anning,Yerubandi R. Rao,Youyu Lu,2010. Evaluation of a 3-D hydrodynamic model and atmospheric forecast forcing using observations in Lake Ontario.Journal of Geophysical Research-Oceans,115, C02004, doi:10.1029/2009JC005601.
14.Huang Anning,Yerubandi R,Rao, Youyu, Lu,and Jun Zhao,2010, Hydrodynamic modeling of Lake Ontario: An intercomparison of three models.Journal of Geophysical Research-Oceans,115,C12076, doi:10.1029/ 2010JC006269
2009年(第一/通讯作者SCI论文1篇):
13.Huang Anning ,Zhang Yaocun,Zhu Jian, 2009. Effects of the physical ensemble technique on simulation of the summer precipitation over China. Acta. Meteor. Sinica, (6): 713-724.
12.Liu Peng,Yongfu Qian,and Anning Huang,2009. Impacts of land surface and sea surface temperatures on the onset data of the South China Sea summer monsoon.Advances in Atmospheric Sciences, 26(3): 493-502.
11.黄安宁,张耀存,朱坚,2009.中国夏季不同强度降水模拟对不同积云对流参数化方案的敏感性研究. 大气科学,33(6): 1212-1224.
10.黄安宁,张耀存,2009.不同辐射传输方案对P-σRCM9区域气候模式性能的影响. 高原气象, 28(1): 1-11.
2008年:
9.黄安宁,张耀存,黄丹青,2008.南海海温异常影响南海夏季风的数值模拟研究. 大气科学, 32(3): 640-652.
8.黄安宁,张耀存,朱坚,2008.物理过程参数化方案对中国夏季降水日变化模拟的影响. 地球科学进展, 23(11): 1174-1184.
7.黄安宁,张耀存,高国栋,2008.中国东部地区NCEP/NCAR再分析地表能量平衡资料的检验. 南京大学学报,44(3):227-236.
6.顾茗,黄安宁,2008.不同积云对流参数化方案对中国东部降水模拟的对比分析. 气象科学, 5: 488-493.
2008年之前(第一/通讯作者SCI论文1篇):
5.Huang Anning,Y. Zhang and X. Gao, 2007.Impact of coast SST variability on East Asia summer monsoon. Advances in Atmospheric Sciences,24(2):259-270.
4.黄安宁,张耀存,2007.BATS1e陆面模式对P-σ九层区域气候模式性能的影响. 大气科学,31(1):155-166.
3.Zhang, Yaocun,Anning Huang,Xinsheng Zhu,2006.Parameterization of the thermal impacts of sub-grid orography on numerical modeling of the surface energy budget over East Asia.Theoretical and Applied Climatology, 86(1-4): 201-214.
2.黄安宁,张耀存,2004.海温季节和年际变化对东亚区域气候变率模拟的影响. 南京大学学报,40(3):319-329.
1.王卫国,吴涧,黄安宁,罗燕,2004.大气臭氧垂直分布的非均匀结构, 云南大学学报,26(2): 144-149.