Zhang J.,Ye C.,Xuan Y.,Bai Z.,Lin W.,Li D.,Ran L.,Jiao B.,Ma Y.,Ma W.,Yao N.,Zeng Y.,Lv D.,Zhu T.*,2024. The Earth Summit Mission-2022: Successful ozone soundings contribute to source identification in the north Mt. Qomolangma region. Journal of Environmental Sciences,136(2024),412-421.
Zhang J.*, Xuan Y.,Bian J.,Vömel H.,Zeng Y.,Bai Z.,Li D.,Chen H.,2024. Comparison between ozonesonde measurements and satellite retrievals over Beijing,China. Atmospheric and Oceanic Science Letters,17 (2024),100378.
Li Y.,Mou X.,Kang J.,Zhu S.,Fan Y.,Fan H.,Wei,X.,Chen D.,Ren S.,Jia S.,Li J.,Li N.,Ran L.,Zhou K., Zhang J.*,2024. The development of a hailstone disdrometer and its preliminary observation in Aksu,Xinjiang. Atmosphere 15,823.
Zeng Y., Zhang J.*,Li D.*,Liao Z.,Bian J.,Bai Z.,Shi H.,Xuan Y.,Yao Z.,Chen H.,2023. Vertical distribution of tropospheric ozone and its sources of precursors over Beijing: Results from ∼ 20 years of ozonesonde measurements based on clustering analysis. Atmospheric Research,284(2023),106610.
Zeng Y., Zhang,J.*,Li Y.,Liu S.,Chen H.,2023. Wavelet Analysis of Ozone Driving Factors Based on ~20 Years of Ozonesonde Measurements in Beijing. Atmosphere,14,1733.
Liao Z.,Pan Y.,Ma P.,Jia X.,Cheng Z.,Wang Q.,Dou Y.,Zhao X., Zhang J.*,Quan J.*,2023. Meteorological and chemical controls on surface ozone diurnal variability in Beijing: A clustering-based perspective. Atmospheric Environment,295(2023),119566.
Zhang J.*, 2022. Tropopause characteristics based on long-term ARM radiosonde data: A fine-scale comparison at the extratropical SGP site and Arctic NSA site. Atmosphere,13,965.
Du,Y.,H. Shi, J. Zhang*, X. Xia,Z. Yao,D. Fu,B. Hu,C. Huang,2022. Evaluation of MERRA-2 hourly surface solar radiation across China. Solar Energy,234(2022),103–110.
Zhang,J.*,D. Li,J. Bian,Y. Xuan,H. Chen,Z. Bai,X. Wan,X. Zheng,X. Xia and D. Lü,2021: Long-term ozone variability in the vertical structure and integrated column over the North China Plain: Results based on ozonesonde and Dobson measurements during 2001-2019,Environmental Research Letters,16 (2021) 074053.
Zhang,J., D. Li,J. Bian,and Z. Bai,2021: Deep stratospheric intrusion and Russian wildfire induce enhanced tropospheric ozone pollution over the northern Tibetan Plateau,Atmospheric Research,105662.
Zhang,J.*,H. Chen,Y. Du,W. Shao,R. Zeng,K. Zhu,Y. Liu,and Y. Xuan.,2021: Stratospheric balloon-based dropsonde technology: Development and preliminary assessment over the Tibetan Plateau. Atmospheric and Oceanic Science Letters,14 (2021) 100039.
Shi,H., J. Zhang*,B. Zhao,X. Xia,B. Hu,H. Chen,J. Wei,M. Liu,Y. Bian,D. Fu,Y. GU and K. Liou,2021: Surface brightening in eastern and central China since the implementation of the Clean Air Action in 2013: causes and implications. Geophysical Research Letters,48,e2020GL091105.
Tang,G.,Y. Liu, J. Zhang*,B. Liu,Q. Li,J. Sun,Y. Wang,Y. Xuan,Y. Li,J. Pan,X. Li,and Y. Wang,2021: Bypassing the NOx titration trap in ozone pollution control in Beijing. Atmospheric Research,249 (2021),105333.
Zhang,J.*,Shi H.,Chen Q.,Zong X.,Li J.,Han X.,Bi Y. and Xia X.,2020: Radiation profiles from the surface up to the upper troposphere and lower stratosphere over the Tibetan Plateau. Environmental Research Letters,15 (2020),104001.
Zhang,J.,Wu X.,Bian J.,Xia X.,Bai Z.,Liu Y.,Cai Z.,Huo J. and Lü D.,2020: Aerosol variations in the upper troposphere and lower stratosphere over the Tibetan Plateau. Environmental Research Letters,15 (2020),094068.
Zhang,J.*,2020: Cloud-top temperature inversion derived from long-term radiosonde measurements at the ARM TWP and NSA sites. Atmospheric Research,246(2020).
Zhang,J.*,Xia X. and Wu X.,2020: First in situ UV profile across the UTLS accompanied by ozone measurement over the Tibetan Plateau. Journal of Environmental Sciences,98 (2020),71–76.
Zhang,J.*,Xia X.,Shi H.,Zong X. and Li J.,2020: Radiation and aerosol measurements over the Tibetan Plateau during the Asian summer monsoon period. Atmospheric Pollution Research,11 (2020),1543–1551.
Zhang,J.,Zheng Y.,Li Z.,Xia X. and Chen H.,2020: A 17-year climatology of temperature inversions above clouds over the ARM SGP site: The roles of cloud radiative effects. Atmospheric Research,237 (2020),104810.
Zhang,J.*, Zhu J. and Xia X.,2020: Properties of summer radiation and aerosols at Xinzhou,a suburban site on the North China Plain. Atmospheric and Oceanic Science Letters,13(6),493–499.
Zhang,J.,X. Wu,S. Liu,Z. Bai,X. Xia,B. Chen,X. Zong,and J. Bian,2019: In situ measurements and backward-trajectory analysis of high-concentration,fine-mode aerosols in the UTLS over the Tibetan Plateau. Environ. Res. Lett.,14,124068.
Zhang,J.*,X. Xia,X. Zong,X. Fan,H. Chen,and J. Li,2019: Dust Properties and Radiative Impacts at a Suburban Site during 2004–2017 in the North China Plain. Remote Sens.,11,1842.
Zhang,J.,H. Chen,Y. Zhu,H. Shi,Y. Zheng,X. Xia,Y. Teng,F. Wang,X. Han,J. Li,and Y. Xuan,2019: A novel method for estimating the vertical velocity of air with a descending radiosonde system. Remote Sens.,11,1538.
Zhang,J.*,Y. Liu,H. Chen,Z. Cai,Z. Bai,L. Ran,T. Luo,J. Yang,Y. Wang,Y. Xuan,Y. Huang,X. Wu,J. Bian,and D. Lu,2019: A multi-location joint field observation of the stratosphere and troposphere over the Tibetan Plateau. Earth and Planetary Physics,3(2),87–92.
Zhang,J.,X. Xia,and H. Chen,2017: A comparison of cloud layers from ground and satellite active remote sensing at the Southern Great Plains ARM site. Adv. Atmos. Sci.,34(3),347–359.
Zhang,J.*, and H. Chen,2017: Macrophysical properties of specific cloud types from radiosonde and surface active remote sensing measurements over the ARM Southern Great Plains site. Atmospheric and Oceanic Science Letters,10:1,29-35.
Zhang,J.,J. Chen,X. Xia,H. Che,X. Fan,Y. Xie,Z. Han,H,Chen,D. Lu,2016: Heavy aerosol loading over the Bohai Bay as revealed by ground and satellite remote sensing. Atmos. Environ.,124,252–261.
Zhang,J.*,Li,J.,Xia,X.,Chen,H.,Ling,C,2016: Cloud properties under different synoptic circulations: Comparison of radiosonde and ground-based active remote sensing measurements. Atmosphere,7,154.
Zhang,J.,H. Chen,X. Xia,and W. Wang,2016: Dynamic and thermodynamic features of low and middle clouds derived from Atmospheric Radiation Measurement Program mobile facility radiosonde data at Shouxian. China. Adv. Atmos. Sci.,33(1),21–33.
Zhang,J.,Z. Li,H. Chen,H. Yoo,and M. Cribb,2014: Cloud Vertical Distribution from Radiosonde,Remote Sensing,and Model Simulations. Climate Dynamics,43(3-4),1129–1140.
Zhang,J.*,Y. Xuan,X. Yan,M. Liu,H. Tian,X. Xia,L. Pang,and X. Zheng,2014: Development and preliminary evaluation of a double-cell ozonesonde,Adv. Atmos. Sci.,31(4),938–947.
Zhang,J.*,Y. Xuan,X. Xia,M. Liu,X. Yan,L. Pang,Z. Bai,and X. WAN,2014: Performance evaluation of a self-developed ozonesonde and its application in an intensive observational campaign,Atmos. Oceanic. Sci. Lett.,7(3),175-179.
Zhang,J.,Z. Li,H. Chen,and M. Cribb. 2013: Validation of a radiosonde-based cloud layer detection method against a ground-based remote sensing method at multiple ARM sites. J. Geophys. Res.,118(2),846–858.
Zhang,J.,H. Chen,J. Bian,Y. Xuan,Y. Duan,and M. Cribb,2012: Development of cloud detection methods using CFH,GTS1,and RS80 radiosondes. Adv. Atmos. Sci.,29(2),236–248.
Zhang,J., H. Chen,Z. Li,X. Fan,L. Peng,Y. Yu,and M. Cribb,2010: Analysis of cloud layer structure in Shouxian,China using RS92 radiosonde aided by 95 GHz cloud radar. J. Geophys. Res.,115,D00K30.