Liu R. Q., Yi F., 2003. Resonant nonlinear interactions between atmospheric waves in the polar summer mesopause region. Science in China (G), 46 (4), 405-416.
Liu R. Q., Lu D. R., Yi F., Hu X., 2006. Quadratic nonlinear interactions between atmospheric tides in the mid-latitude winter lower thermosphere. J. Atmos. Sol.-Terr. Phys., 68 (11), 1245-1259.
Liu R. Q., Lu D. R., Xu J. Y., Hu X., 2008. Phase relationships between tidal horizontal wind components observed in the mid-latitude winter upper mesosphere. J. Atmos. Sol.-Terr. Phys., 70 (1), 1-12.
Jacobi Ch., P. Hoffmann, Liu R. Q., P. Krizan, J. Lastovicka, E. G. Merzlyakov, T. V. Solovjova, Yu. I. Portnyagin, 2009. Midlatitude mesopause region winds and waves and comparison with stratospheric variability. J. Atmos. Sol.-Terr. Phys., 71 (14-15), 1540-1546.
Jacobi C., E. G. Merzlyakov, Liu R. Q., T. V. Solovjova, Y. I. Portnyagin, 2010. Structural changes in lower ionosphere wind trends at midlatitudes. Adv. Radio Sci., 8, 231-236.
Liu R. Q., C. Jacobi, P. Hoffmann, G. Stober, E. G. Merzlyakov, 2010. A piecewise linear model for detecting climatic trends and their structural changes with application to mesosphere/lower thermosphere winds over Collm, Germany. J. Geophys. Res., 115, D22105, doi:10.1029/2010JD014080.
Jacobi Ch., P. Hoffmann, Liu R. Q., E. G. Merzlyakov, Yu. I. Portnyagin, A. H. Manson, C. E. Meek, 2012. Long-term trends, their changes, and interannual variability of Northern Hemisphere midlatitude MLT winds. J. Atmos. Sol.-Terr. Phys., 75-76, 81-91.
Zhang F., Hou C., Li J., Liu R. Q., Liu C., 2017. A simple parameterization for the height of maximum ozone heating rate. Infrared Physics & Technology, 87, 104-112.
Liu R. Q., Fu Y. Y., 2019. Verification of an approximate thermodynamic equation with application to study on Arctic stratospheric temperature changes. J. Atmos. Sci., 76, 3-9, ![]()
DOI: 10.1175/JAS-D-18-0109.1.
Xiao H. X., Zhang F., Miao L. J., Liang X. S., Wu K., Liu R. Q., 2020. Long-term trends in Arctic surface temperature and potential causality over the last 100 years. Climate Dynamics, 55, 1443-1456, DOI: 10.1007/s00382-020-05330-2.
刘仁强, 2010. 大气潮汐的经典理论及有关现代模式的发展. 空间科学学报, 30 (3), 235-242.
施春华, 徐婷, 蔡娟, 刘仁强, 郭栋, 2015. 球面E-P通量的计算及其应用. 大气科学学报, 38 (2), 267-272.
万凌峰, 郭栋, 刘仁强, 施春华, 苏昱丞, 2017. WACCM3对夏季青藏高原臭氧谷双心结构的模拟性能评估. 高原气象, 36 (1), 57-66.
施春华, 金鑫, 刘仁强, 2017. 大气动力学中三种Rossby波作用通量的特征差异和适用性比较. 大气科学学报, 40 (6), 850-855.
刘仁强, 黎颖, 付焱焱, 施春华, 郭栋, 张峰, 2018. 北半球极区平流层冬季12月与1-2月气候变化形势的对比. 大气科学学报, 41(3): 416-422.
刘仁强, 付焱焱, 吴国华, 王咏青, Wright J S, 2019. 一个诊断极区平流层温度变化的近似方程的检验及应用. 大气科学学报, 42(6): 874-879.
吴国华, 刘仁强, 黎颖, 2021. 1980-2000年北极平流层冬季十年际变化形势的逐月演变. 大气科学学报, 44(4): 585-591.