基本情况

张强,甘肃省气象局一级巡视员、总工程师、二级研究员。中国民盟甘肃委员会常委,硕士,研究员,博士生导师,博士后合作导师,新世纪百千万人才工程国家级人选,甘肃省领军人才第1层次人选,国家“863”项目评审专家,国家科技进步奖评审专家,国家中小企业融资项目评审咨询专家,甘肃省优秀专家,享受国务院政府特殊津贴专家。曾应邀去美国ARIZONA大学大气科学系工作访问近一年,并先后多次去美国、德国、挪威、瑞典、丹麦、意大利、澳大利亚、日本、越南、台湾和香港等国家或地区交流访问。

 

研究领域

干旱区气候与环境、大气边界层、大气湍流、干旱区陆面过程、城市大气环境污染、中小尺度数值模拟、海洋强对流降水参数化等领域的研究工作

 

教育背景

1993-09--1996-07   南京大学   硕士

1983-09--1987-07   成都气象学院   学士

 

工作经历

2019-5~现在 甘肃省气象局, 一级巡视员、总工程师、二级研究员

2003-11~2019-5 甘肃省气象局,副局长、研究员

2003-04~现在 甘肃省(中国气象局)干旱气候变化与减灾重点实验室, 主任

2002-05~2008-08 中国气象局兰州干旱气象研究所, 所长、研究员

1999-12~2002-05 中科院寒区旱区环境与工程研究所, 研究员

1998-01~1999-12 中科院兰州高原大气所高原气候与环境开放实验室, 副主任

1987-07~1998-01 中科院兰州高原大气所,研实员、助研、副研

 

荣誉奖励

中国科协生态环境产学联合体2022年中国生态环境十大科技进展(2023)。

中国气象服务协会科学技术奖气象科技创新奖二等奖(2023)

甘肃省科技进步奖一等奖的第一完成人(2023年)

甘肃省科技进步奖一等奖的第一完成人(2021年)

全国大气科学基础研究成果奖一等奖(2018年)(中国气象学会)

中国产学研合作创新奖(2017年)(中国产学研合作创新与促进奖奖励办公室)

杰出工程师奖(2022)(中华国际科学交流基金会)

中国气象科学技术进步成果奖二等奖的第一完成人(2015年)。

甘肃省科技进步奖二等奖的第一完成人(2014年)

甘肃省科技进步奖二等奖的第一完成人(2013年)。

国家科学技术进步二等奖的第一完成人(2013年)。

甘肃省科技进步奖二等奖的第一完成人(2010年)。

甘肃省科技进步奖三等奖的第一完成人(2011年)。

甘肃省科技进步奖二等奖的第一完成人(2008年)。

中国气象局气象科技工作奖二等奖的第一完成人(2006年)。

甘肃省科技进步奖三等奖的第一完成人(2006年)。

中国科学院自然科学奖三等奖的项目第二完成人(1995年)。

荣获首届“赵九章优秀中青年科学家工作奖”(1994年)。

中科院自然科学奖一等奖的第十完成人之一(1992年)。

 

专利成果

干旱半干旱区地表水分循环全分量监测与识别方法, 2020, 第 1 作者, 专利号: CN111947707A

 

论文发表

[1]    Qiang Zhang Sheng Wang Ping Yue Variation characteristics of non-rainfall water and its contribution to crop water requirements in China's summer monsoon transition zone Journal of Hydrology 2019578 124039 https://doi.org/10.1016/j.jhydrol. (SCI收录) .

[2]    Zhang Qiang Zeng Jian Yao Tong  Interaction of aerodynamic roughness length and windflow condition and its parameterization over vegetation surface Chinese Science Bulletin 2012 5713),1559-1567doi: 10.1007/s11434-012-5000-y. (SCI收录)..

[3]    Qiang Zhang Zesu YangXiaocui HaoPing YueConversion features of evapotranspiration responding to climate warming in transitional climate regions in northern ChinaClimate Dynamics201952:3891-3903DOI 10.1007/s00382-018-4364-3(SCI收录)

[4]    Qiang ZhangLanying Han Zeng Jian.Climate factors during key periods affect the comprehensive crop losses due to drought in Southern China Climate Dynamics2020DOI: 10.1007/s00382-020-05379-z.(SCI收录)

[5]    Qiang ZhangJinhu Yang Zeng Jian. The eastward expansion of the climate humidification trend in northwest China since the start of this century and the synergistic influences on the circulation mechanism Climate Dynamics20225924812497https://doi.org/10.1007/s00382-022-06221-4. (SCI收录)

[6]    Zhang Qiang Wang Sheng Michael Barlage Tian Wenshou Huang Ronghui The Characteristics of the Sensible Heat and Momentum Transfer Coefficients over the Gobi in the Northwest China International Journal of Climatology 2011 31(4) 621-629. (SCI收录)

[7]    Zhang Qiang Wang wenyu Wang sheng Increasing Trend of Pan Evaporation over the Semiarid Loess Plateau under a Warming Climate Journal of Applied Meteorology and Climatology201655(9) DOI: http://dx.doi.org/10.1175/JAMC-D-16-0041.1 . (SCI收录)

[8]    Zhang Qiang Huang Ronghui Parameters of land surface processes for Gobi in Northwest China Boundary-Layer Meteorology 2004 110(3) 471-478. (SCI收录).

[9]    Zhang Qiang Wang Sheng Yang Fulin Yue Ping The Characteristics of Dew Formation/Distribution and Its Contribution to the Surface Water Budget over a Semi-arid Region in ChinaBoundary-Layer Meteorology 2015,,154(2)317-331. DOI 10.1007/s105476-014-9971-x. (SCI收录)

[10]  Q. Zhang W. Wang and F. Yang Drought-stress modified crop coefficients for estimation of evapotranspiration of spring wheat in the southwest Loess Plateau of ChinaJournal of Soil and Water Conservation 2019742),91-100. doi:10.2489/jswc.74.2.91(SCI收录)

[11]  Zhang Q Han L. Management of Drought Risk Under Global WarmingTheoretical and Applied Climatology2015DOI: 10.1007/s00704-015-1503-1. .(SCI收录)

[12]  Zhang  Q Han L.North-South differences in Chinese agricultural losses due to climate-change-influenced droughtsTheoretical and Applied Climatology2016DOI: 10.1007/s00704-016-2000-x. (SCI收录)

[13]  Zhang Q Yao Y Wang Y et al. Characteristics of drought in Southern China under climatic warming the risk and countermeasures for prevention and control[J]. Theoretical and Applied Climatology 2018: 1-17. 10.1007/s00704-018-2541-2. (SCI收录)

[14]  Zhang Q Zeng J Yue P et al. On the land-atmosphere interaction in the summer monsoon transition zone in East Asia [J]. Theoretical and Applied Climatology 2020: 1-16. https://doi.org/10.1007/s00704-020-03239-8. (SCI收录)

[15]  Qiang Zhang Ying Wang Distribution of hazard and risk caused by agricultural drought and flood and their correlations in summer monsoonaffected areas of China Theoretical and Applied Climatology2022 HYPERLINK "https://doi.org/10.1007/s00704-022-04093-6" https://doi.org/10.1007/s00704-022-04093-6(SCI收录)

[16]  Zhang Q. Yang Z. Hao X. et al. Dynamic response of landatmosphere-coupling parameters to precipitation in the sparse-vegetated Asian summer monsoon transition zoneEnvironmental Earth Sciences201978:524) 1-19. https://doi.org/10.1007/s12665-019-8525-4 (SCI收录)

[17]  Zhang Qiang Wei Guoan Huang RonghuiThe bulk transfer coefficients of the atmospheric momentum and sensible heat over desert and Gobi in arid climate region of Northwest China Science in China (Series D) 2002 45(5)468-480. (SCI收录).

[18]  Zhang Qiang Zhang Jie Qiao Juan Wang Sheng Relationship of atmospheric boundary layer depth with thermodynamic processes at the land surface in arid regions of China Science China Earth Sciences 201254 (10): 15851594. doi: 10.1007/s11430-011-4207-0 (SCI收录)

[19]  Zhang Q Li H Y Zhao J H et al. Modification of the land surface energy balance relationship by introducing vertical sensible heat advection and soil heat storage over the Loess Plateau. Science China Earth Sci,, 2012 554):580-589.

[20]  Zhang Q. Zeng J Zhang L Y. Characteristics of land surface thermal-hydrologic processes for different regions over North China during prevailing summer monsoon period Science China Earth Sci 2012 55(11): 18721880doi: 10.1007/s11430-012-4373-8. (SCI收录)

[21]  Zhang Q Zhang LHuang J. The Spatial Distribution of Surface Energy Fluxes over Loess Plateau in China and its Relationship with Climate and Environment Science China Earth Sci.2014 57(9) 2135-2147 (SCI收录)

[22]  Zhang Qiang Yao Tong Yue Ping Development and test of a multifactorial parameterization scheme of aerodynamic roughness length for flat land surfaces with short vegetation Science China Earth Sci. 2016.59(2).: 281295. (SCI收录)

[23]  Zhang Qiang Wang Sheng Wang Shanshan,, Influence factors and variation characteristics of water vapor absorption by soil in semi-arid regionScience China Earth Sci.201659(11)22402251. doi:10.1007/s11430-015-5531-5. (SCI收录)

[24]  Zhang Q Lin J Liu W et al. Precipitation seesaw phenomenon and its formation mechanism in the eastern and western parts of Northwest China during the flood season[J]. Science China Earth Sciences 2019 62(12)2083-2098.doi/10.1007/s11430-018-9357-y (SCI收录)

[25]  Zhang Qiang Li Hongyu,, A study of the relationship between air pollutants and inversion in the ABL over the city of Lanzhou. Adv. Atmos. Sci. 201128(4) 879886DOI: 10.1007/s00376-010-0079 -z (SCI收录)

[26]  Zhang Qiang Wei GuoanCao Xiaoyan Huang Ronghui Observation and study of land surface parameters over Gobi in typical arid region Adance in atmospheric science 200219(1)121-135. (SCI收录)

[27]  Zhang QiangHuang Ronghui and Tian Hui A Parameterization Scheme of Surface Turbulent Momentum and Sensible over Gobi Underlying SurfaceAdance in atmospheric science 200320(1)111-118. (SCI收录)

[28]  Zhang QiangWei GuoanHuang RonghuiZhang QiangWei GuoanHuang RonghuiCharacteristics of Hydrologic Transfer Between Soil and Atmosphere over Gobi Near Oasis at the End of Summer Adance in atmospheric science 200320(3)442-452(SCI收录).

[29]  Zhang Qiang Huang Ronghui Water Vapor Exchange Between Soil and Atmosphere over a Gobi Surface Near An Oasis in Summer Journal of Applied Meteorology 200443(12)1917-1928(SCI收录)

[30]  Qiang Zhang Sheng Wanga Ping Yue A measurement quantitative identification and estimation method(QINRW) of non-rainfall water component by lysimeterMethodsX2019628732881(SCI收录)

[31]  Zhang QiangZhang JieSun Guowu Di XiaohongResearch on Water-vapor Distribution in the Air over Qilian MountainsACTA Meteor Sinica 2008 221), 107-118(SCIE收录)

[32]  Zhang QiangWang ShengSun Zhaoxuan A study of Atmospheric Boundary layer structure during a clear day in the Arid Region of Northwest ChinaACTA Meteor Sinica 2009 233), 327-337(SCIE收录)

[33]  Zhang Qiang Wang ShengWen Xiaomei Li Hongyu Experimental Study of the Imbalance of Water Budget over the Loess Plateau of China  Acta Meteorologica Sinica 2011256),756-773(SCIE收录)

[34]  Zhang Qiang Yao Tong Yue PingThe Influences of Thermodynamic Characteristics on Aerodynamic Roughness Length over Land SurfaceActa Meteorologica Sinica 2013272),249-262 doi: 10.1007/s13351-013-0209-5.(SCIE收录)

[35]  Zhang Q. Y. B. Yao Y. H. Li et al. 2020: Causes and changes of drought in China: Research progress and prospects. J.Meteor. Res. 34(3) 460-481 doi: 10.1007/s13351-020-9829-8 (SCIE收录)

[36]  Zhang Q. J. H. Yang W. Wang et al. 2021: Climatic warming and humidification in the arid region of Northwest China: Process multi-scale characteristics and impacts on ecological vegetation. J. Meteor. Res. 35(1) 1–15 doi: 10.1007/s13351-021-0105-3

[37]  张强,李宏宇,黄土高原地表能量不闭合度与垂直感热平流的关系,物理学报, 2010598),5888-5895。(被SCI收录)

[38]  张强,李宏宇,岳平,陇中黄土高原自然植被下垫面陆面过程及其参数对降水波动的气候响应,物理学报, 2013621),019201。(被SCI收录)。

[39]  张强,黄菁,张良,黄土高原区域气候暖干化对地表能量交换特征的影响,,物理学报, 20136213),139202(被SCI收录)。

[40]  张强,王胜,西北地区戈壁地表物理过程参数化的研究,地球物理学报,2003465),616-623(SCIE收录).

[41]  张强,孙昭萱,王胜,黄土高原定西地区陆面物理量变化规律研究,地球物理学报,2011547),1727-1737DOI:10.3969/j.issn.0001-5733.2011.07.005(SCIE收录).

[42]  Jianshu Wang Qiang ZhangYing Wanget al.The global pattern and development trends & directions on the drought monitoring research from 1983 to 2020 by using bibliometric analysisBulletin of the American Meteorological Society2022E2081-2107https://doi.org/10.1175/bams-d-21-0324.1(SCI收录,通讯作者).

[43]  Yue Ping Zhang Qiang Yang Yang Seasonal and inter-annual variability of the Bowen smith ratio over a semiaridarid grassland in the Chinese Loess PlateauAgricultural and Forest meteorology201825299-108. (SCI收录,通讯作者)

[44]  Ping Yue,, Qiang Zhang Liang Zhang Long-term variations in energy partitioning and evapotranspiration in a semiarid grassland in the Loess Plateau of China Agricultural and Forest Meteorolog2019278 107671. (SCI收录,通讯作者)

[45]  Ying Wang Wen  Zhao Qiang  Zhang Characteristics of droughtvulnerability for maize in the eastern part of Northwest China Scientific Reports  2019 9:964 | https://doi.org/10.1038/s41598-018-37362-4. (SCI收录,通讯作者)

[46]  Jian Zeng Qiang Zhang The trends in land surface heat fluxes over global monsoon domains and their responses to monsoon and precipitationScientific Reports  2019 9:964 | https://doi.org/ 10.1038/s41598-020-62467-0. (SCI收录,通讯作者)

[47]  Su-Ping Wang Qiang Zhang Yu-Zhi Liu et al  Effects of global warming on drought onset in China Journal of Hydrology2024130964. https://doi.org/10.1016/j.jhydrol.2024.130964(SCI收录,通讯作者)

[48]  Jian ZengQiang ZhangA humidity index for the summer monsoon transition zone in East AsiaClimate Dynamics2020https://doi.org/10.1038/s41598-020-62467-0 (SCI收录,通讯作者)

[49]  Yang F Zhang Q Wang R Zhou J Evapotranspiration Measurement and Crop Coefficient Estimation over a Spring Wheat Farmland Ecosystem in the Loess Plateau. PLoS ONE20149(6): e100031. doi:10.1371/journal.pone.0100031(SCI收录,通讯作者)

[50]  Yang Z. Zhang Q. Hao X. & Yue P.Changes in evapotranspiration over global semiarid regions 19842013. Journal of Geophysical Research:Atmospheres 2019124 29462963. https:// doi.org/10.1029/2018JD029533(SCI收录,通讯作者)

[51]  Funian Zhao Qiang Zhang Jun Lei et al. Establishing a water-use boundary function for potato through crop modeling Field Crops Research2024 315109445. https://doi.org/10.1016/j.fcr.2024.109. (SCI收录,通讯作者)

[52]  Xiao Guoju Zhang Qiang Xiong Youcai Lin Miaozi Wang Jing. Integrating rainwater harvesting with supplemental irrigation into rain-fed spring wheat farming. Soil & Tillage Research. 200793(2)429-437. (SCI收录,通讯作者)

[53]  Xiao Guoju Zhang Qiang Yao Yubi. Effects of temperature increase on water use and crop yields in a peaspring wheat potato rotation system in semiarid regions of China. Agricultural water management 200791(3) .86-91. (SCI收录,通讯作者)

[54]  Xiao Guoju Zhang Qiang Yao Yubi. Impact of recent climatic change on the yield of winter wheat at at low and high altitudes in semi-arid northwestern China Agriculture Ecosystems and Environment 2008 127(2) .37-42. (SCI收录,通讯作者).

[55]  Yang Fulin Zhang Qiang Zhou Jing Yue Ping. East Asian summer monsoon substantially affects the inter-annual variation of carbon dioxide exchange in semi-arid grassland ecosystem in Loess Plateau. Agriculture Ecosystems and Environment 2019 272 218-229. (SCI收录,通讯作者).

[56]  Guoju XiaoQiang Zhang Runyuan WangImpact of temperature increase on the yield of winter wheat at low and high altitudes in semi-arid northwestern China Agricultural water management 201097 .1360-1364. (SCI收录,通讯作者)。

[57]  Ping Yue Qiang Zhang Xueyuan Ren Zesu Yang Environmental and biophysical effects of evapotranspiration in semiarid grassland and maize cropland ecosystems over the summer monsoon transition zone of China, , Agricultural water management 202297 . 264 107462 www.elsevier.com/locate/agwat. (SCI收录,通讯作者)。

[58]  Yue Qi Qiang Zhang Shujuan Hu et.al. Applicability of stomatal conductance models comparison for persistent water stress processes of spring maize in water resources limited environmental zone Agricultural Water Management2023 www.elsevier.com/locate/agwat. (SCI收录,通讯作者)

[59]  Li Yu Zhang Qiang Wang Runyuan et al. Temperature changes the dynamics of trace element accumulation in Solanum tuberosum L Climatic Change  2012 112655-672DOI 10.1007/s10584-011-0251-1. (SCI收录,通讯作者)。

[60]  Zesu Yang Qiang Zhang Yang Yang Evaluation of evapotranspiration models over semi-arid and semi-humid areas of China Hydrol. Process. 2016 DOI: 10.1002/hyp.10824. (SCI收录,通讯作者).

[61]  Guoju X. Qiang Z. Runyuan W. Climate warming: Does northwest China face a stark food security challenge?[J]. Applied Ecology and Environmental Research 2016 14(3):613-636. (SCI收录,通讯作者)。

[62]  Zhang H. Q. Zhang P. Yue L. Zhang Q. Liu S. Qiao and P. Yan (2016) Aridity over a semiarid zone in northern China and responses to the East Asian summer monsoon J. Geophys. Res. Atmos. 121 1-18doi:10.1002/2016JD025261. (SCI收录,通讯作者)。

[63]  Yu H. Zhang Q. Wei Y. et al. Bias-corrections on aridity index simulations of climate models by observational constraintsInternational Journal of Climatology 2021 DOI: 10.1002/joc.7279 (SCI收录,通讯作者)

[64]  Yu H. Wei Y. Zhang Q. Liu X. Huang J. & Feng T. et al. Multi-model assessment of global temperature variability on different time scales. International Journal of Climatology.2019 DOI: 10.1002/joc.6209. (SCI收录,通讯作者)

[65]  Yu Li Longqing LiQiang ZhangInfluence of temperature on the heavy metals accumulation of five vegetable species in semiarid area of northwest ChinaChemistry and Ecology2013DOI:10.1080/02757540.2013.769970 (SCI收录,通讯作者)。

[66]  Li Yu Li Longqing Zhang QiangInfluence of temperature on the heavy metals accumulation of five vegetable species in semiarid area of northwest ChinaChemistry and Ecology2013http://dx.doi.org/10.1080/02757540.2013.769970(SCI收录,通讯作者)。

[67]  Wang Y. Zhang Q. & Yao Y. Drought vulnerability assessment for maize in the semiarid region of northwestern China. Theor Appl Climatol (2020).https://doi.org/10.1007/s00704-020-03138-y(SCI收录,通讯作者)。

[68]  Wang S. Zhang Q. Yue P. & Wang. Y.  Effects of evapotranspiration and precipitation on dryness wetness changes in ChinaTheor Appl Climatol (2020). (2020). https://doi.org/10.1007/s00704-020-03336-8. (SCI收录,通讯作者)。

[69]  Wang Y. Wang C. Zhang Q.. Synergistic effects of climatic factors and drought on maize yieldin the east of Northwest China against the background of climatechange Theor Appl Climatol (2020). https://doi.org/10.1007/s00704-020-03457-0(SCI收录,通讯作者)。

[70]  Wang Y. Wang J. & Zhang Q.. Analysis of ecological drought risk characteristics and leading factors in the Yellow River Basin Theor Appl Climatol (2024). https://doi.org/10.1007/s00704-023-04720-w(SCI收录,通讯作者)。

[71]  Yang J Zhang Q Wang P Yue P Li Y Liang Zand Liu X (2024)  Characteristics of summer drought circulation and the synergistic effect of multiple factors in the Northern drought-prone belt of China.Front. Environ. Sci. 202412:1464917.doi: 10.3389/fenvs.2024.1464917(SCI收录,通讯作者)

[72]  Weicheng Liu Qiang ZhangChenrui LiLili XuWei Xiao The infuence of soil moisture on convective activity a reviewTheor Appl Climatol2022DOI10.1007/s00704-022-04046-z(SCI收录,通讯作者)

[73]  BaiB.;ZhangQ.;TanD.;HuangP.;YinF. Responses of the Optical Propertiesand Distribution of Aerosols to n the Summer Monsoonin the Main Climate Zones of China. Atmosphere 2021 12(4) 482; https://doi.org/10.3390/atmos12040482(SCI收录,通讯作者)。

[74]  Lanying HanQiang ZhangZhengcai Zhanget al. Drought area intensity and frequency changes in China under climate warming 19612014 Journal of Arid Environment2021193104596. (SCI收录,通讯作者)

[75]  Weicheng Liu Qiang Zhang Zhao FuAnalysis and Estimation of Geographical and Topographic Influencing Factors for Precipitation Distribution over Complex Terrains A Case of the Northeast Slope of the Qinghai–Tibet Plateau Atmosphere 2018 9 349; doi:10.3390/atmos9090349. (SCI收录,通讯作者)

[76]  Bing Bai Qiang Zhang Wei Shao The Response of the Aerosol Distribution to Monsoon Intensity over the Summer Monsoon Transition ZoneFrontiers in Earth Science20207356doi: 10.3389/feart.2019.00356(SCI收录,通讯作者)

[77]  Rong WangQiang Zhang Ping Yueet al. Characteristics of boundary layer height and its influencing factors in global monsoon regions-Global and Planetary Change2023231104309(SCI收录,通讯作者)

[78]  Peilong Y Qiang Zhang Jianshun WangInterdecadal shifts and associated atmospheric circulation anomalies of heavy precipitation during the warm-season in the Upper Yellow River Basin over the past 40 years-Atmospheric Research,,Atmospheric Research2025314107801. (SCI收录,通讯作者)

[79]  Jinyu Zhang Ping Yue Qiang Zhang Impact of tropospheric polar vortex on winter cold extremes over Northeast ChinaAtmospheric Research2023294106942. (SCI收录,通讯作者)

[80]  Yan X Cheng P Zhang Q Li X He JYan X Zhao W and Wang LComparisons of climate change characteristics in typical arid regions of the Northern Hemisphere. Front. Environ. Sci. 10:1033326. doi: 10.3389/fenvs.2022.1033326(SCI收录,通讯作者)

[81]  Bing Bai Qiang Zhang Liang Zhang Characteristics of Aerosols over the Summer Monsoon Transition Zone Advances in Meteorolog2019 ID 43829471-7(SCI收录,通讯作者)

[82]  Zhu B.; Zhang Q.; YangJ.-H.; Li C.-H. Response of Potential Evapotranspiration to Warming and Wetting in Northwest China. Atmosphere 2022 13 353. https://doi.org/10.3390/atmos13020353(SCI收录,通讯作者)

[83]  Xinyang Yan Qiang Zhang Xueyuan Ren Climatic Change Characteristics towards the WarmingWetting Trend in the Pan-Central-Asia Arid Region Atmosphere 2022 13(3) 467; https://doi.org/10.3390/atmos130304676(SCI收录,通讯作者)

[84]  Ying Wang Qiang ZhangDistribution characteristics ofdrought andflood hazards innorthern China againstthebackground ofclimate warmingNatural Hazards2024https://doi.org/10.1007/s11069-024-06468-6(SCI收录,通讯作者)

[85]  Yang Z.; Zhang Q.; ZhangY.; Yue P.; Zhang L.; Zeng J.; Qi Y. Hydrothermal Factors Influence on Spatial-Temporal Variation of Evapotranspiration-Precipitation Coupling over Climate Transition Zone of North China. Remote Sens. 2022 14 1448. https://doi.org/10.3390/rs14061448. (SCI收录,通讯作者)

[86]  Hu YanbinZhang QiangHu Shujuan et al., ,Research progress and prospects of ecosystem carbon sequestration under climate change (19922022) Ecological Indicator 2022 https://doi.org/10.1016/j.ecolind.2022.109656.(SCI收录,通讯作者)

[87]  Qi Y.; Zhang Q.; Hu S.; et al. Effects of High Temperature and Drought Stresses on Growth and Yield of Summer Maize during Grain Filling in North China. Agriculture 2022 12 1948. https:// doi.org/10.3390/agriculture12111948.(SCI收录,通讯作者)

[88]  Hu Y. Zhang Q. HuS. Xiao G. Zhang L. Han L. Yue P. Wang J.Qi Y. & Ye P. (2023). Crop yield and carbon sink potential with precipitation in maize and potato cropland ecosystems over the summertime monsoon transition zone of China. Soil Use and Management 00 115. https://doi.org/10.1111/sum.12878(SCI收录,通讯作者)

[89]  Zhao F. Zhang Q. Liu J. Can Leaf Gas Exchange Serve as a Reliable Indicator for Predicting Spring Wheat Yield in Response to Drought? International Journal of Plant Production2024 https://doi.org/10.1007/s42106-023-00276-x.

[90]  LI Wang YU Haiying,,ZHANG Qiang Responses of aboveground biomass of alpine grass- lands to climate changes on the Qinghai-Tibet Plateau J. Geogr. Sci. 2018 28(12): 1953-1964(SCI收录,通讯作者).

[91]  Yu H Wei Y Zhang Q et al. Multi-model assessment of global temperature variability on different time scales. Int J Climatol. 2019;119. https://doi.org/10.1002/joc.6209. (SCI收录,通讯作者).

[92]  Guoju X Yanbin H Qiang Z et al. Impact of cultivation on soil organic carbon and carbon sequestration potential in semiarid regions of China[J]. Soil Use and Management 201936:8392.DOI: 10.1111/sum.12540. (SCI收录,通讯作者)

[93]  Zhang H.; Zhang L.;Zhang Q.; Liu Q.; You X.; Wang L.Analysis of the Difference betweenClimate Aridity Index andMeteorological Drought Index in theSummer Monsoon Transition Zone.Remote Sens.202315 1175. https://doi.org/10.3390/rs15051175(SCI收录,通讯作者)

[94]  Yang Z. S. Q. Zhang Y. Zhang P. Yue J. Zeng L. X. Meng and Y. L. Qi 2025: Water−heat synergy shapes evapotranspiration−precipitation coupling patterns across Northern China. Adv. Atmos. Sci. https://doi.org/10.1007/s00376-024-3256-1. (SCI收录,通讯作者)

[95]  Zhao FN Zhang Q Liu J. Can leaf gas exchange serve as a reliable indicator for predicting spring wheat yield in response to drought? International Journal of Plant and Production  2024 18: 109-120. (SCI收录,通讯作者)

[96]  Liang Junxi Wang Yanbin Zhang Qiang,, Theoretical investigation of the conventional CX1X2− (X1 X2 = H F Cl Br and I) compounds computational and theoretical chemistry2002 9971-6. http://dx.doi.org/10.1016/j.comptc.2012.07.023. (SCI收录,通讯作者)。

[97]  Liang Junxi Wang Yanbin Zhang Qiang,, DFT study on the reactions of ClO/BrO with RCl (R = CH3 C2H5 and C3H7) in gas phasejournal of molecular modeling201319(4). DOI:10.1007/s00894-012-1736-1 (SCI收录,通讯作者) (SCI收录,通讯作者)

[98]  Liang Junxi Li Yu1 Zhang Qiang Geng ZhiyuanUnderstanding halogen-substituent assistance in H-atom abstraction-based reactions of CHCl•− with CH4 − nXn (X = H F Cl; n = 0–3)Journal of Physical Organic Chemistry2014DOI: 10.1002/poc.3276(SCI收录,通讯作者)

[99]  : Zhang L.; Sha S.; Zhang Q.; Zhao F.; Zhao J.; Li H.; Wang S.;Wang J.; Hu Y.; Han H.Investigating the Coupling Relationship between Soil Moisture and Evaporative Fraction over China’s Transitional Climate Zone.Hydrology 2023 10 221. https://doi.org/10.3390/hydrology10120221(SCI收录,通讯作者)

[100]         Liang Junxi Wei Jiajun Li Yu1 Zhang Qiang Geng ZhiyuanReaction of CS2 with CHBr•− and CBr 2 •− in the gas phase: a Theoretical Mechanistic Study Journal of the Iranian Chemical Society 2014DOI 10.1007/s13738-013-0404-4(SCI收录,通讯作者)

[101]         Zhang Qiang Wei Guoan Huang Ronghui Preliminary  study of local land surface processes over Gobi in arid region of Northwest China The proceedings of the China Association for Scicence and Technology(No.1) edited by Feng Changgen Huang Ping and Ma yang  et al. Science Press Bejing/New York 2004412-418. (EI收录)

[102]         Zhao Funian,, Zhang QiangLei JunEnvironmental factors influence the responsiveness of potato tuber yield to growing season precipitationCrop and Environment2024t 3 112122. (EIESCI收录)

[103]         张强, 曾剑, 姚桐,植被下垫面近地层大气动力状态与动力学粗糙度的相互作用及其参数化关系研究,科学通报, 201257(8)647-655 (EIESCI收录)

[104]         张强,王文玉,阳伏林,半干旱地区干旱胁迫作用对作物系数的影响特征,科学通报,20156015),1384-1394(EIESCI收录)

[105]         张强, 杨泽粟, 郝小翠, 等. 北方蒸散对气候变暖响应随降水类型转换特征. 科学通报, 2018 63(11)1035-1049.doi: 10.1360/N972017-00817(EIIESCI收录)

[106]         张强,韩兰英, 王兴,等,影响南方农业干旱灾损率的气候要素关键期特征,科学通报, 2018 63232378-2392 . doi/10.1360/N972018-00240(EIIESCI收录)

[107]         张强,乔梁, 岳平,等,干旱区夏季连续晴空期超厚大气对流边界层持续发展的能量机制研究,科学通报, 2019 64doi:10.1360/N972018-01014 (EIIESCI收录)

[108]         强, 朱飙, 杨金虎, 等. 西北地区气候湿化趋势的新特征. 科学通报, 2021 66doi: 10.1360/TB-2020-1396 (EIIESCI收录)

[109]         张强,杨金虎,王朋岭等,西北地区气候暖湿化的研究进展与展望,科学通报, 2022 :doi/10.1360/TB-2022-0643(EIIESCI收录)

[110]         段欣妤, 张强, 张良, 等. 2022年长江流域重大干旱发展过程中西太平洋副热带高压的多维度异常特征. 科学通报, 2024 69: 20812092https://doi.org/10.1360/TB-2023-0796(EIIESCI收录,通讯作者)

[111]         张强,兰州市山谷地形和大气逆温层对污染物水平输送的影响,中国环境科学,200121(3)230-234(EI收录)

[112]         Funian ZhaoJun Lei Runyuan WangQiang ZhangEnvironmental determination of spring wheat yield in a climatic transition zone under global warmingInternational Journal of Biometeorology2021HYPERLINK "https://link.springer.com/article/" https://link.springer.com/article/ 10.1007/s00484-021-02196-9. (SCIE收录)

[113]         Yulong Ren Ping Yue Jinhu YangQiang ZhangThe mechanism of urban agglomeration causing the enhancement of regional extreme heat and drought eventsAtmospheric Research2024312107716(SCIE收录)

[114]         YU RENHAIPENG YU CHENXI LIU YONGLI HE JIANPING HUANG LIXIA ZHANG HUANCUI HUQIANG ZHANG Attribution of Dry and Wet Climatic Changes over Central AsiaJournal of Climate2022351399-1421. .(SCIE收录)

[115]         杨泽粟,张宇,张强,青藏高原蒸散年际变化及其对西风和季风环流的响应,地球物理学报, 2022 65(08): 2813-2827. .(SCIE收录)

 

科研项目

国家自然科学基金重点项目“我国典型夏季风影响过渡区陆-气相互作用及其对夏季风响应研究(项目批准号:41630426)”,500万元,2017年元月-202112月,项目主持人。

国家自然科学基金重点项目“黄土高原陆面过程观测与试验研究(项目批准号:40830957)”,170万元,2009-2012年,项目主持人。

国家自然科学基金项目“西北干旱荒漠区大气边界层厚度特征及其形成机制研究(批准号:40575006, 起止年月:2006.1-2008.12)”,研究经费55万元,项目主持人。

国家自然科学基金项目“利用现有观测资料确定西北干旱区陆面过程参数(批准号:40175004,起止年月:2002.1-2004.12)”,研究经费22万元,项目主持人。

国家自然科学基金项目“绿洲维持和退化过程中的大气水分输送(批准号:49705059,起止年月:98.1-2002.12)”,研究经费12万元,项目主持人。

国家自然科学基金重点项目“绿洲系统能量与水分循环过程观测与数值模拟研究(批准号:40233035,起止年月:2003.1-2006.12)”,研究经费180万元,项目协助主持人。

国家“973”计划项目“气候变暖背景下我国南方旱涝灾害的变化规律和机理及其影响与对策”的第六课题“气候变暖背景下我国南方旱涝灾害风险评估与对策研究(课题批准号:2013CB430206)”,550万元,2013-2018年,课题主持人。

国家科技攻关西部开发科技行动重大项目课题“祁连山空中云水资源开发利用研究”(批准号:2004BA901A16, 起止年月:2005.1-2006.12),研究经费220万元,项目主持人。

国家公益性行业科研专项“西北地区旱作农业对气候变暖的响应特征研究(项目批准号:GYHY200806021)”,241万元,2008-2011,项目主持人。

国家科技部公益类科研项目“西北地区人工防雹消雹技术(批准号:2002DIB10046,起止年月:2003.1-2005.12)”,研究经费70万元,项目主持人。

主持国家科技支撑计划“省级沙尘暴遥感监测预警评估与服务应用示范”课题(2008BAC40B04),100万元,2009-2011年。

中国气象局新技术推广重点项目“西北地区人工防雹消雹技术推广应用”(批准号:CMATG2007z08, 起止年月:2007.1-2008.12),30万元,项目主持人。

甘肃省科技攻关项目“甘肃干旱生态环境对全球气候变暖的响应及减灾技术的研究(批准号:2GS042-A44-017, 起止年月:2004.1-2006.12)”,研究经费40万元,项目主持人。

共同主持国家科技支撑计划“黄河重要水源补给区(玛曲)生态修复及保护技术集成研究与示范”项目的“黄河重要水源补给区(玛曲)降水资源调控技术研究” 课题(2009),300万元,2010-2012年。

中国科学院知识创新工程项目“绿洲及其临近荒漠小气候对绿洲自我维持的作用(批准号:210093,起止年月:2000.1-2002.12)”,研究经费20万元,项目主持人。

国家“973”项目“我国重大气候和天气灾害形成机理和预测理论的研究(批准号:1998040904-1,起止年月:1999.1-2003.12)”的专题-“西北干旱地区陆气相互作用试验研究” ,专题经费25万元,专题负责人。

甘肃省与中国科学院科技合作项目“兰州市大气环境污染与对策研究(起止年月:2000.1-2002.12)”的专题“兰州市大气污染的物理机理研究”,专题经费16万元,专题负责人。

中科院兰州分院院长择优基金项目“兰州市大气环境污染的治理研究(起止年月:1997.1-1998.12)” ,研究经费6万元,项目主持人。

甘肃省政府西部资源环境中心项目“西北干旱区绿洲自我维持机制研究(起止年月:1995.1-1996.12)”, 研究经费3万元,项目主持人。

国家自然科学基金重大项目“黑河地区地气相互作用观测试验研究(批准号:8487004,起止年月:1988.1-1994.12)”,总经费400万元,主要完成人,负责野外观测和资料分析。

国家自然科学基金“边界层和背景场相互作用的研究(批准号:49575248,起止年月:96.1-98.12)”,总经费16万元,第二完成人。

国家自然科学基金面上项目“干旱区陆面过程参数化及其对区域气候的影响研究(批准号:49275228,起止年月:1993.1-1995.12)”,总经费17万元,主要完成人。

国家自然科学基金面上项目“沙尘暴触发机制研究(批准号:49475245,起止年月:1995.1-1997.12)”,总经费15万元,主要完成人。

中科院A类重大基金项目“污染预测理论及方法研究(批准号:A295-A1-403-2,起止年月:1996.1-1998.12)”,总经费200万元,主要完成人。

国家自然科学基金重点项目“稀疏植被下垫面与大气相互作用的研究(批准号:49575249,起止年月:1999.1-2003.12)”,总经费130万元,主要完成人。

国家自然科学基金重点项目““北方干旱多发带”环流多因子联动与陆-气多过程耦合对重大干旱的协同作用研究(项目批准号:42230611)”,300万元,2023年元月-202712月,项目主持人。

国家自然科学基金区域创新发展联合基金重点项目“西北地区空中云水资源多尺度变化特征与云降水过程研究(项目批准号:U24A20604)”,300万元,2025年元月-202812月,项目主持人。