个人简介
简介
临近空间环境特性及效应全国重点实验室副主任,空间天气所名誉所长,二级教授、博导,空间天气学学科带头人。毕业于北京大学,海外从事空间物理研究10年,入选中科院海外优秀人才计划、中国气象局特聘专家、江苏双创人才和双创团队领军人才等。国家自然科学基金委员会、科技部重点研发专项和美国NASA会评专家,Earth and Planetary Physics、Scientific Reports、空间科学学报等期刊编委。从事空间天气数值模拟研究。主持国家自然科学基金重点、面上,国家重点发展规划计划、973,气象和海洋公益性行业专项等项目,发表论著180余篇。
学历
1983-1987:北京大学地球物理系,空间物理学士
1987-1990:北京大学地球物理系,空间物理硕士
1993-1996:中国科学院空间中心, 空间等离子体物理博士
工作研究简历
1990-1996年7月:中国科学院空间科学与应用研究中心,助研、副研究员
1996年7月-1997年1月:中国台湾中央大学太空科学所,访问学者
1997年1月-1998年2月:中国科学院空间科学与应用研究中心,副研究员
1998年2月-1998年12月:美国天主教大学机械工程系,访问学者
1998年12月-2000年11月: 美国特拉华大学Bartol研究所,研究员
2000年11月-2007年12月: 加拿大艾伯塔大学(University of Alberta), 研究员。期间曾访问并与美国密歇根大学、美国国家大气研究中心 (NCAR)合作
2007年12月-2012年12月:中国气象局特聘专家,国家卫星气象中心研究员
2013年1月-现在:南京信息工程大学空间天气研究所所长,空间天气学科带头人,教授
社会兼职:
Earth and Planetary Physics编委, 2017-
Scientific Reports编委,2022-
国际地磁学和高空物理学协会中国委员会委员
中国空间科学学会空间物理专业委员会委员
中国地球物理学会空间天气专业委员会委员
中国气象学会极地与冰冻圈气象专业委员会委员
<<中国空间科学学报>>编委, 1996 - 2000; 2020-
武汉大学博导、中国地质大学(武汉)兼职硕导.
研究领域:
空间天气预报
空间天气数值模拟与仿真
太阳风-磁层-电离层-中高层大气耦合
近年主要科研项目
磁层-电离层-中高层大气多圈层耦合影响临近空间环境的过程与机理,国家重点研发计划子课题,2022-2027
江苏双创团队项目 ,江苏省组织部,领军人才,2017-2020
太阳风向磁层的能量输运及其全球气候影响研究(42030203), 国家自然科学基金重点项目,主持人,2021-2025
内磁层离子谱结构的三维数值模拟研究(41974190),国家自然科学基金面上项目,项目主持人,2020-2023
极区电离层与中性大气相互作用(2018YFC1407305),国家重点研发计划项目课题,中华人民共和国科学技术部,主持人, 2018-2021
极光区磁层-电离层电动耦合的三维有限元数值模拟研究,国家自然科学基金(面上),项目负责人, 2016-2019
基于太阳观测的日冕物质抛射驱动的地磁暴及其预报研究, 国家自然科学基金(联合),项目负责人,2017-2019
江苏双创人才, 江苏省组织部, 2014-2016
磁层非线性剪切阿尔芬波和电离层反馈的电动耦合数值模拟研究(41031063)国家自然科学基金(重点),项目负责人,2011-2014
空间天气数值模式集成与预报试验,国家973计划“基于子午工程和双星计划的地球空间天气数值预报建模研究”子课题,2012-2016
极区海洋大气与空间环境业务化监测(HY201005017),海洋局局公益性行业科研专项,极区大气模式集成和太阳风能量向日侧磁层的传输模式研究子课题, 2010-2013
灾害性空间天气事件数值模拟与仿真,2010年申报的中国气象局公益性行业科研专项重点项目,项目负责人, 2011-2012
极光区超低频地磁脉动的磁层-电离层耦合研究(40874087),国家自然科学基金(面上),项目负责人, 2009-2011
主要论文专著
1) Ye, H., Yi, W., Wu, J., Yu, B., Tian, P., Xue, X., et al. (2026). Long‐lived equatorial plasma bubbles persisting into the afternoon over the Pacific sector during the recovery phase of the April 2023 geomagnetic storm. Space Weather, 24, e2026SW005233. https://doi.org/10.1029/ 2026SW005233
2) Zeng, J., Yi, W., Stober, G., Xue, X., Reid, I., Adami, C., Li, T., Fang, X., Lu, J., Ning, B., Li, G., Dou, X. (2026). A lidar‐validated comparison of two multistatic meteor radar‐based wind retrieval methods for spatially resolved horizontal winds. Journal of Geophysical Research: Atmospheres, 131, e2025JD046277. https://doi.org/10.1029/2025JD04
3) Zhan, M., Li, J., Lu, J., Fu, S., Wei, G., Yao, H., et al. (2026). Mesospheric ozone depletion at 77 km during the 2020 solar eclipse. Journal of Geophysical Research: Atmospheres, 131, e2025JD046256. https://doi.org/10.1029/2025JD046256
4) Li, J., Fu, S., Zhang, X., Huang, N., Li, G., Tian, Y., Li, C., et al., Dawn-dusk asymmetry of MLT middle- and low-latitude temperature responses to super geomagnetic storms, Phys. Fluids 38, 037122 (2026); doi: 10.1063/5.0309268
2025
5) Fan Yang, Xu-Zhi Zhou, Ye Jin, Ya-Ze Wu, Jie Ren, Jianyong Lu, Chao Yue, Yong-Yong Feng, Qiu-Gang Zong, Trunk-Like Ion Spectral Structures: Manifestation of Azimuthal Ion Dispersion in the Inner Magnetosphere, Journal of Geophysical Research: Space Physics, 130(9), e2025JA034504, 24 September 2025, https://doi.org/10.1029/2025JA034504
6) Guanchun Wei, Ming Wang, Jianyong Lu, Lianghai Xie, Jiaqi Zhang, Jinyu Li, Kehan Du, Mingming Zhan, Impact of Solar Wind Density and Velocity on Martian Ion Escape: A Study Using the Dynamic Box Method, Journal of Geophysical Research: Space Physics, 130(8), e2025JA034260, doi: https://doi.org/10.1029/2025JA034260
7) Li, J., Zhang, X., Fu, S., Li, G., Tian, Y., Li, C., et al. (2025). Equatorial anomalous responses of the mesosphere and lower thermosphere temperature to super geomagnetic storms observed by TIMED/ SABER. Geophysical Research Letters, 52, e2025GL114776. https://doi.org/10. 1029/2025GL114776
8) Yang, YY, Wenjie Sun, Wenbo Li, Ruilong Zhang, Tingwei Han, Libo Liu, Jianyong Lu, Xiukuan Zhao, Haibing Ruan, Yiding Chen, Huijun Le, and Tian Mao, Special Ionospheric Structure Over the Asia-Australia Sector During the May 2024 Superstorm Recovery Phase, Journal of Geophysical Research: Space Physics, 130, e2025JA033822. https://doi.org/10. 1029/2025JA033822
9) Zhan, M., Li, J., Lu, J., Fu, S., Yao, H., Huang, N., et al. (2025). Variation of mesosphere ozone and related constituents during solar eclipse on 21 June 2020 based on WACCM‐X simulations. Journal of Geophysical Research: Space Physics, 130, e2024JA033534. https://doi.org/10. 1029/2024JA033534
10) Sun, M., Jianyong Lu, Jingyuan Li, Guanchun Wei, Zheng Li, Ningtao Huang, Mingming Zhan, Responses of High-Latitude Mesopause Height and Temperature to Geomagnetic Storms, J. Geophys. Res. Space Physics, 130(4), e2024JA033624. https://doi. org/10.1029/2024JA033624. 24 April 2025
11) Qu, BH, J. Y. Lu, Z. W. Wang, J. J. Liu, M. Wang, J. Y. Li, H. Zhang, Different origin Field-Aligned Currents and their relationship with auroral intensity, J. Geophys. Res. Space Physics, 130(4), e2024JA033547, https://doi.org/10. 1029/2024JA033547. 10 April 2025
12) Zhang, H., J. Y. Lu, Z. H. Zhong, B. P. Feng, M. Wang, R. X. Tang, and X. H. Deng, The Wave Normal Angle Characteristic of Whistler-mode Waves in the Dayside Terrestrial Space Based on MMS observations, J. Geophys. Res. Space Physics, 130(4), e2025JA033789. 10 April 2025. https://doi.org/10.1029/2025JA033789.
13) Iluore, K., J. Lu and K.O. Ozegin, Ionospheric GPS-VTEC forecasting using hybrid deep learning model (LSTM-CNN), Journal of Space Safety Engineering, 12(1), March 2025, 83-93, https://doi.org/10.1016/j.jsse.2024.11.004
14) Yang, T.Y., Lu, J.Y., Yang, Y.Y., Y. H. Hao, M. Wang, J. Y. Li & G. C. Wei. GNSS–VTEC prediction based on CNN–GRU neural network model during high solar activities. Sci Rep 15, 9109 (2025). https://doi.org/10.1038/s41598-025-93628-8, 17 March 2025.
15) Wang, M., Zhang, J., Lu, J., Xie, L., Qiao,F., Xu, Q., et al. (2025). Simultaneous two‐point study of the Martian bow shock affected by an interplanetary coronal mass ejection: Tianwen‐1 and MAVEN observations. Geophysical Research Letters, 52, e2024GL112219. https://doi.org/10.1029/2024GL112219
16) Huang, N.; Li, J.; Lu, J.; Fu, S.; Sun, M.; Wei, G.; Zhan, M.; Wang, M.; Xiong, S., Mesosphere and Lower Thermosphere (MLT) Density Responses to the May 2024 Superstorm at Mid-to-High Latitudes in the Northern Hemisphere Based on Sounding of the Atmosphere Using Broadband Emission Radiometry (SABER) Observations. Remote Sens. 2025, 17, 511. https://doi.org/ 10.3390/rs17030511.
17) 冯静伊,周悦,吕建永,王明,张赫,Kelvin-Helmholtz不稳定性在中磁尾磁层顶的晨昏不对称性分布,空间科学学报,2025, 45(3): 653-661, doi: 10.11728/cjss2025-0038.
18) 张佳琪,王明,眭昊旸,管子健,李劲羽,杜可涵,吕建永. 2025. 火星与金星弓激波和磁堆积边界研究进展[J]. 地球与行星物理论评(中英 文),56(4):407-420. doi:10.19975/j.dqyxx.2024-048.
2024
19) Qu, BH, J. Y. Lu, Z. W. Wang, J. J. Liu, M. Wang, J. Y. Li, H. Zhang, Different origin Field-Aligned Currents and their relationship with auroral intensity, J. Geophys. Res. Space Physics, 129(10), e2024JA032927, 05 October 2024,https://doi.org/10.1029/2024JA032927.
20) Yang, Y., Liu, L., Li, W., Zhao, X., Chen, Y., Le, H., et al. (2025). Overall morphology of prominent zonal differences in low latitude ionosphere. Journal of Geophysical Research: Space Physics, 130, e2024JA033165. https://doi. org/10.1029/2024JA033165
21) Ruan, H., Lei, J., & Lu, J. (2024). Static and dynamic model calibration for upper thermosphere determination. Space Weather, 22, e2024SW003986. https://doi. org/10.1029/2024SW003986.
22) Wang, M., Xu, Q., Xie, L., Li, L., Zhang, Y., Lu, J., et al. (2024), The dynamic Venusian bow shock model with the nonlinear effect of magnetosonic Mach number based on Venus Express observations, J. Geophys. Res. Space Physics, 129, e2024JA032741. https://doi.org/10.1029/ 2024JA032741.
23) Yang Lin, JianYong Lu, BaoHang Qu, Xi Wang, Assessing the Performance of Magnetopause Models Based on THEMIS Data, Earth Planet. Phys., 8(5): 776–786, 2024, http://doi.org/10.26464/epp2024053
24) Feng, JY, Yue Zhou, Jianyong Lu, Ming Wang, Jingyuan Li, Hanxiao Zhang, Fen Tang, and Fulu Yue, Occurrence of Kelvin-Helmholtz Instability at Lunar Distance Magnetopause: ARTEMIS Observation, The Astrophysical Journal, 972:86 (11pp), 2024 September 1, https://doi.org/10.3847/1538-4357/ad6159.
25) Wang, M., Guan, Z., Xie, L., Lu, J., Wei, G., Sui, H., et al. (2024). The effect of the interplanetary magnetic field clock angle and the latitude location of the intense crustal magnetic field on the ion escape at Mars: An MHD simulation study. Journal of Geophysical Research: Space Physics, 129, e2024JA032806. https://doi.org/10. 1029/2024JA032806.
26) Zhang, H., Z. H. Zhong, J. Y. Lu, M. Wang, Y.Y. Yi, R. X. Tang, and X. H. Deng, Statistical Properties of Whistler-mode Waves in the Dayside Terrestrial Space: MMS Observations, The Astrophysical Journal, 969(1):14, 2024 June 24, DOI:10.3847/1538-4357/ad4d98.
27) Qu, BH, J. Y. Lu, Z. W. Wang, J. J. Liu, M. Wang, J. Y. Li, H. Zhang, Estimation of Ionospheric Field-Aligned Currents Using SuperDARN Radar and DMSP Observations, J. Geophys. Res. Space Physics, 129(6), 01 June 2024, doi:10.1029/2024JA032708.
28) Zhang, HX, J. Y. Lu, M. Wang, and Y. Zhou, Comparison of solar wind interaction with Mars and Earth: energy transfer, The Astrophysical Journal, 968(2):84, 2024 June 13, doi:10.3847/1538-4357/ad463c.
29) Meng Sun, Jianyong Lu, Jingyuan Li, Fen Tang, Guanchun Wei, Zheng Li, Fulu Yue, Shiping Xiong, Ningtao Huang, Responses of Mesosphere Temperature to the Geomagnetic Storms on 8 and 15 September 2003, J. Geophys. Res. Space Physics, 129(5), 20 May 2024, doi:10.1029/2023JA032366.
30) Hao, Y. H., J. Y. Lu, G. S. Peng, M. Wang, J. Y. Li, G. C. Wei (2024), F10.7 daily forecast using LSTM combined with VMD method, Space Weather, 22(1), e2023SW003552, 17 January 2024, https://doi.org/10.1029/2023SW003552.
31) Guanchun Wei, Jianyong Lu, Jingyuan Li, Fen Tang, Meng Sun, The Dawn-Dusk Asymmetry in Mesosphere and Lower Thermosphere Temperature Disturbances during Geomagnetic Storms at High Latitude, Earth Planet. Phys., 8(2), 356–367. doi: 10.26464/epp2024016. March 2024
2023
32) Li, J.; Jiang, S.; Yao, J.; Cui, J.; Lu, J.; Tian, Y.; Yang, C.; Xiong, S.; Wei, G.; Zhang, X.; Fu, S., Zhu, Z., Wang, J., Li, Z., Zhang, H., The Responses of Ozone to the Solar Eclipse on the 21st of June 2020 in the Mesosphere and Upper Stratosphere, Remote Sensing, 2024,16,14. https://doi.org/ 10.3390/rs16010014
33) Lu, J. Y., Commentary on Short-Term Forecast of High Energy Electron Flux Based on GPR, Res Rev J Pure Appl Phys., 11(4), 13-14, 11:005, DOI:10.4172/23202459.11.3.004. Nov 08, 2023
34) Ruan, H. B., J. H. Lei, J. Y. Lu, F. Tang (2023). An Empirical Model of Ionospheric Total Electron Content Based on Tide-like Signature Modeling, Space Weather, 21(12), e2023SW003564,https://doi.org/10.1029/2023SW003564.
35) Xi Wang, Jianyong Lu, Ming Wang, and Yue Zhou, Simultaneous magnetopause expansion by radial IMF and Indention by HSJ, Geophys. Res. Lett., 50(20), e2023GL105270, October 12, doi:10.1029/2023GL105270
36) Wang, M., ZJ Guan, LH Xie, JY Lu, et al., Three-dimensional MHD Simulations of the Magnetic Pileup at Mars, The Astronomical Journal,166:179, 2023 October. https://doi.org/10.3847/1538-3881/acf56f.
37) Weiwei Xu, YanMing Zhu, Lei Zhu, JianYong Lu, GuanChun Wei, Ming Wang, YuXiang Peng, A class of Bayesian machine learning model for forecasting Dst during intense geomagnetic storms, Advances in Space Research,72(9), 1 Nov. 2023, 3882-3889, https://doi.org/10.1016/j.asr.2023.07.009.
38) M. Wang, K. Xu, J.Y. Lu, M.X. Yin, H.Y. Sui, Z.J. Guan, and J.Q. Zhang, The Dependence of the Location and Pressure Variations of the Martian Magnetic Pileup Boundary on the Interplanetary Magnetic Field: An MHD Simulation Study, The Astrophysical Journal, 954:60 (10pp), 2023 September 1, https://doi.org/10.3847/1538-4357/ace96c.
39) Jingyuan Li, Guanchun Wei, Wenbin Wang, Qinshun Luo, Jianyong Lu, Yufeng Tian, Shiping Xiong, Meng Sun, Fuzhen Shen, Tao Yuan, Xiaoping Zhang, Shuai Fu, Zheng Li, Hua Zhang, and Chaolei Yang, (2023). A modeling study on the responses of the mesosphere and lower thermosphere (MLT) temperature to the initial and main phases of geomagnetic storms at high latitudes. Journal of Geophysical Research: Atmospheres, 128, e2022JD038348. https://doi.org/10.1029/2022JD038348.
40) Shiping Xiong, Jingyuan Li, Guanchun Wei, Jianyong Lu, Yufeng Tian, Xiaoping Zhang, Shuai Fu, Meng Sun, Zheng Li, Hua Zhang, Jingqi Cui, Shuwen Jiang, and Chaolei Yang (2023). The northern and southern hemispheric asymmetries of mesospheric ozone at high latitudes during the January 2012 solar proton events. Space Weather, 21, e2023SW003435. https://doi. org/10.1029/2023SW003435.
41) Zhang, HX, JY Lu, and M Wang, Energy transfer across magnetopause under dawn–dusk IMFs, Scientific Reports, 13:7409, 2023. DOI : 10.1038/s41598-023-34082-2.
42) Wei, G.; Lu, J.; Wang, W.; Tian, Y.; Li, J.; Xiong, S.; Sun, M.; Shen, F.; Li, Z.; Zhang, H.; et al. Temperature Variations in the Mesosphere and Lower Thermosphere during Geomagnetic Storms with Disparate Durations at High Latitudes. Universe, 2023, 9, 86. https://doi.org/ 10.3390/universe9020086.
43) H. Y. Sui, M. Wang, J. Y. Lu, Y. Zhou, and J. Wang, Interplanetary Magnetic Field Effect on the Location of the Martian Bow Shock: MAVEN Observations, The Astrophysical Journal, 945(2):136 (8pp), 2023 March 10, https://doi.org/10.3847/1538-4357/acbd4c.
44) 李春来,吕建永,李婧媛, 磁暴期间OI 135.6 nm气辉经纬及高度分布的变化特征,空间科学学报,43(5):807-820,DOI:10.11728/cjss2023.05.2023-0022.
2022
45) Guangshuai Peng, Jianyong Lu, Hua Zhang, Xiaoxin Zhang, Guanglin Yang, Zhiqiang Wang, Chao Shen, Meng Yi, and Yuhang Hao, Short-term forecast of high-energy electron flux based on GPR, Astrophys. Space Sci., 367:89, doi:10.1007/s10509-022-04123-9, 2022. (通讯作者)
46) Yufeng Tian, Jingyuan Li, Chaolei Yang, Jingqi Cui, Fuzhen Shen, Jianyong Lu, Shiping Xiong, Guanchun Wei, Zheng Li, Hua Zhang, Guanglin Yang, Yewen Wu, Zong Wei, Shuwen Jiang, Jingrui Yao, Jingye Wang, and Zhixin Zhu (2022), Effects of the annular eclipse on the surface O3 in yunnan province, China. Front. Environ. Sci. 10:968507. doi: 10.3389/fenvs.2022.968507. (通讯作者)
47) M. Wang, H. Y. Sui, J. Y. Lu, L. Xie, K. Kabin, Y. Zhou, H. X. Zhang, B. H. Qu, Z. J. Guan, F. H. Qiao, and L. Li, A 3D parametric Martian magnetic pileup boundary model with the effects of solar wind density, velocity, and IMF, Astronomy & Astrophysics, 664,A74, https://doi.org/10.1051/0004-6361/202142885(通讯作者)
48) Liu, X. J., Z. W. Wang, J. Y. Lu, J. J. Liu, H. Q. Hu, J. Liu, Z. J. Hu, M. Wang, and K. Zhao, Extreme Solar Flare-driven Short-wave Fadeout Observed by SuperDARN ZHO radar, The Astrophysical Journal, 933:45 (9pp), 2022 July 1, https://doi.org/10.3847/1538-4357/ac6f56. (通讯作者)
49) Zhang, H., Wang, Y. B., and Lu, J. Y. (2022). Statistical study of “trunk-like” heavy ion structures in the inner magnetosphere. Earth Planet. Phys., 6(4), 339–349. http://doi.org/10.26464/epp2022032. (通讯作者)
50) Kenneth Iluore, Jianyong Lu, Long Short-Term Memory and Gated Recurrent Neural Networks to Predict the ionospheric vertical total electron content, Advances in Space Research,70(3), 1 August 2022, Pages 652-665, https://doi.org/10.1016/j.asr.2022.04.066. (通讯作者)
51) Ming-xian Zhao, Gui-ming Le, Jianyong Lu, Can We Estimate the Intensities of Great Geomagnetic Storms (ΔSYM-H<−200nT) with the Burton Equation or the O’Brien and McPherron Equation?, The Astrophysical Journal, 928:18, 2022 March 20, https://doi.org/10.3847/1538-4357/ac50a8.
52) Zhou, Yue, Jianyong Lu, Ming Wang, Kelvin-Helmholtz waves on the magnetopause at lunar distances under southward IMF: ARTEMIS observations, Universe,2022, 8, 209. https://doi.org/10.3390/universe8040209. (通讯作者)
53) Yue Zhou, Jih-Hong Shue, Hiroshi Hasegawa, Jianyong Lu, Ming Wang and Hanxiao Zhang, Spatial scales of the velocity shear layer and Kelvin-Helmholtz waves on the magnetopause: First statistical results, Geophys. Res. Lett., 49, e2021GL097271,2022. doi: 10.1029/2021GL097271. (通讯作者)
54) Kenneth Iluore, Jianyong Lu, Francisca Okeke, Ozegin Keyston, Performance of NeQuick-2 and IRI-Plas 2017 Models during Solar Maximum years in 2013-2014 over Equatorial and Low Latitude Regions, Universe, 2022, 8(2), 125. https://doi.org/10.3390/universe8020125. (通讯作者)
55) Zhifeng Liu, Feng Ding, Jianyong Lu, Yue Zhou, Hetao Chu, Comparison of BLSTM-Attention and BLSTM-Transformer Models for Wind Speed Prediction, Comptes rendus de l’Académie bulgare des Sciences (C. R. Acad. Bulg. Sci.), 75(1), 80-89, 2022. DOI:10.7546/CRABS.2022.01.10.
56) Sun, M.; Li, Z.; Li, J.; Lu, J.; Gu, C.; Zhu, M.; Tian, Y. Responses of Mesosphere and Lower Thermosphere Temperature to the Geomagnetic Storm on 7–8 September 2017. Universe, 3 February 2022, 8(2), 96. https://doi.org/10.3390/universe8020096.
57) Lu, Jianyong, Yating Xiong, Kai Zhao, Ming Wang, Jingyuan Li, Guangshuai Peng, and Meng Sun, A novel bimodal forecasting model for solar cycle 25, The Astrophysical Journal, 924:59, 2022 January 10, https://doi.org/10.3847/1538-4357/ac3488.
58) Wang, Zhiwei, Jianyong Lu, Hongqiao Hu, Jianjun Liu, Zejun Hu, Ming Wang, Bin Li, Xiangcai Chen, Yewen Wu, Hua Zhang, Haiyan Guan, HMB Variations Measured by SuperDARN During the Extremely Radial IMFs: Is the coupling function applicable in radial IMF?, J. Geophys. Res. Space Physics, 127, e2021JA029589. doi: 10.1029/2021JA029589 (通讯作者)
59) 高 扬, 吕建永, 王 明, 李婧媛, 熊雅婷, 彭光帅,基于深度学习的太阳F10.7辐射通量的短期预报研究,天文学报,63(1),2022. doi: 10.15940/j.cnki.0001-5245.2022.01.011。(通讯作者)
60) 苏烨,李婧媛,吕建永,王明, 魏官纯, 孙梦, 熊世平, 李正,中纬度地磁暴期间热层垂直风响应机制的模拟研究, 空间科学学报, 42(2): 246-254,2022,doi: 10.11728/cjss2022.02.210303023.
2021
61) Mezo, I. and J.Y. Lu, On the comparison of the Lorentz and Luxemburg norms of the Lp log L space, Analysis Math., 10 Dec 2021. Doi: 10.1007/s10476-021-0111-9
62) Wang, Zhiwei, Hongqiao Hu, Jianyong Lu, Desheng Han, Jianjun Liu, Yewen Wu, Zejun Hu, Observational Evidence of Transient Lobe Reconnection Triggered by Sudden Enhancement of IMF Bz, J. Geophys. Res. Space Physics, 126, e2021JA029410, DOI: 10.1029/2021JA029410. (通讯作者)
63) Lu J.Y., H. X. Zhang, M. Wang, K. Kabin, Y. Zhou, and J. Y. Li, Energy transfer across the magnetopause under radial IMF conditions, The Astrophysical Journal, 920(1), 52, https://doi.org/10.3847/1538-4357/ac15f4, October 12, 2021.
64) Yating Xiong, Jianyong Lu, Kai Zhao, Meng Sun and Yang Gao, Forecasting solar cycle 25 using comprehensive precursor combination and multiple regression technique, Monthly Notices of the Royal Astronomical Society, 505(1), 1046-1052, July 2021. http://dx.doi.org/10.1093/mnras/stab1159,(通讯作者)
65) Qu, B. H., Lu, J. Y., Wang, M., Yuan, H. Z., Zhou, Y. and Zhang, H. X. (2021). Formation of the bow shock indentation: MHD simulation results. Earth Planet. Phys., 5(3), 259–269. http://doi.org/10.26464/epp2021033 (通讯作者)
66) M. Wang, L. C. Lee, L. Xie, X. Xu, J. Y. Lu, K. Kabin, J. Wang, L. Li, and H. Y. Sui, Effect of solar wind density and velocity on the subsolar standoff distance of the Martian magnetic pileup boundary, Astronomy & Astrophysics, 651,A22, 05 July 2021, DOI: https://doi.org/10.1051/0004-6361/202140511
67) 王淼,李正,吕建永,基于SABER的平流层顶温度的时空特征分析,空间科学学报,2021 (5): 760-768. doi: 10.11728/cjss2021.05.760 。
68) 罗钦顺,李婧媛,吕建永,苏烨,魏光纯,李正,武业文,何昉,余尧,地磁暴恢复相中间层低热层高纬温度响应,空间科学学报,2021(5):724-736,doi: 10.11728/cjss2021.05.724
69) 李宏硕,吕建永,王明,袁换只,周悦,基于卫星观测的上游等离子体beta与磁层顶厚度、速度等特征参数关系的统计研究,地球物理学报, 64(9), 3005-3020, doi:10.6038/cjg2021P0080. (通讯作者)
2020
70) Wang, Y.B., Lynn M Kistler, et al. Formation of the low-energy “finger” ion spectral structure near the inner edge of the plasma sheet. Geophys. Res. Lett., 47, 22,DOI:10.1029/2020GL089875, 20 November 2020.
71) Wang, M, L. Xie, L. C. Lee, X.J. Xu,K. Kabin, J.Y. Lu, J. Wang, and L. Li, A 3D Parametric Martian Bow Shock Model with the Effects of Mach Number, Dynamic Pressure, and the Interplanetary Magnetic Field, The Astrophysical Journal, 903:125 (19pp), https://doi.org/10.3847/1538-4357/abbc04,2020 November 10.
72) Wang, M., J. Y. Lu, K. Kabin, H. Z. Yuan, Y. Zhou, and H. Y. Guan, Influence of IMF cone angle on the geometry of bow shock, The Astronomical Journal, 159(5), https://doi.org/10.3847/1538-3881/ab86a7, 2020 April 22(通讯作者)
73) Shang, W.S., B.B. Tang, Q. Q. Shi, A. M. Tian, X. Y. Zhou, Z. H. Yao, A. W. Degeling, I. J. Rae, Q.-G. Zong, S. Y. Fu, J. Y. Lu, Z. Y. Pu, A. N. Fazakerley, M. W. Dunlop, G. Facskó, J. Liu, and M. Wang, Unusual location of the magnetopause in the magnetotail on lunar orbit: Case study, J. Geophys. Res. Space Physics, 125, DOI: 10.1029/2019JA027401, 2020-04-15.
74) Huanzhi Yuan, Hui Zhang, Jianyong Lu, Changbo Zhu, Ming Wang, Flow Vortex-Induced Downward Field-Aligned Current in the Plasma Sheet, Earth and Space Science, 7, e2019EA000916, https://doi.org/10.1029/2019EA000916, 2020-02-26.
75) 周悦,吕建永,王明,袁换只,弓激波模型的对比,空间科学学报,40(6):990-999, 2000
76) 王明,于超,吕建永,袁换只,周悦,刘子谦,虞超,顾春丽,行星际磁场By对弓激波影响的MHD结果,地球物理学报,63(5):1725-1737,doi:10.6038/ cjg2020M0563,2020年5月。
2019
77) Haiyan Guan, Yongtao Yu, Daifeng Peng, Yufu Zang, Jianyong Lu, Aixia Li, and Jonathan Li, A Convolutional Capsule Network for Traffic-Sign Recognition Using Mobile LiDAR Data with Digital Images, IEEE Geoscience and Remote Sensing Letters, PP(99):1-5,10.1109/LGRS.2019.2939354, Sep. 2019.
78) Zhang, H., S.Y. Fu, ZY Pu, JY Lu, J Zhong, CB Zhu, WX Wan, and LB Liu, Statistics on the magnetosheath properties related to magnetopause magnetic reconnection, Astrophys. J., 880(2), DOI: 10.3847/1538-4357/ab290e, 2019 August 1.
79) Lu, JY, Y. Zhou, X. Ma, M. Wang, K. Kabin, and H. Z. Yuan, Earth's bow shock: A new three-dimensional asymmetric model with dipole tilt effects, J. Geophys. Res. Space Physics, 124(7), 5396-5407, 2019. DOI: 10.1029/2018JA026144, 2019 August 26.
80) Wu, Y. W., R. Y. Liu, B. C. Zhang, W. B. Wang, S. R. Zhang, Q. H., Zhang, H. Q. Hu, and J. Y., Lu, The UT Variations of the Polar Ionosphere Based on the COSMIC Observation, J. Geophys. Res. Space Physics, 124(4), 15 April 2019, DOI: 10.1029/2018JA026106.
81) Li, J. Y., W. B. Wang, J. Y. Lu, J Yue, AG Burns, T Yuan, XT Chen, WJ Dong, A modelling study of the responses of mesosphere and lower thermosphere winds to geomagnetic storms at middle latitudes, J. Geophys. Res. Space Physics,124(5), 3666-3680. 24 April 2019. DOI: 10.1029/2019JA026533 (通讯作者)
82) Lu, J.Y., Jin, C. Q., Wang, M., Ji, H. S., Iluore, K., Gu, C. L., Guan, H. Y., and J. F. Li, Generalized Additive Modeling combined with Multiple Collinear for ICME velocity forecasting, Space Weather, 19. 12 April 2019, doi: 10.1029/2018SW002135, 2019.
83) Liu, Z. F., Zhao, J.S., H.Y. Sun, L. Xiang, W. Liu, J. Y. Lu, and W.C., Zhou, Parallel-propagating Waves and Instabilities In Plasmas With Streaming Proton and Alpha Particles, Astrophys. J., 874(2):128, DOI: 10.3847/1538-4357/ab0896, 2019. (通讯作者)
84) Lu, JY, HX Zhang, M. Wang, C. L. Gu, and H. Y. Guan, on the response of magnetosphere to the IMF turning from north to south, Earth and Planetary Physics, 3(1), 8-18, doi: 10.26464/epp2019002, 2019.
85) 孟琛,吕建永,王明,季海生,顾春利,CMEs引起的地磁暴穿越时间研究, 空间科学学报,39(3), 303-309, 2019。
2018
86) Yan, WQ, HY Guan, L. Cao, YT Yu, S. Gao, and JY Lu, An Automated Hierarchical Approach for Three-Dimensional Segmentation of Single Trees Using UAV LiDAR Data, Remote Sens., 10, 1999; doi:10.3390/rs10121999, 2018.
87) Li, M., P. Hu, X. Wang, Z.H. Niu, Q. H. Zhou, Q. Y. Wang, M.M. Zhu, C. Guo, L. Zhang, J.Y. Lu, J. F., Li, Hierarchical Porous Carbon Derived from Peanut Hull for Polysulfide Confinement in Li-S Battery, Energy Technology, 28 November 2018, 7(3), DOI:10.1002/ente.201800898, 2018
88) Li, J. Y., W. B. Wang, J. Y. Lu, et al., on the responses of mesosphere and lower thermosphere temperatures to geomagnetic storms at low and middle latitutdes, Geophys. Res. Lett., 45(19), 10128-10137, doi:10.1029/2018GL078968, 2018 (通讯作者)
89) Wang, M., Lu, J. Y., Kabin, K., Yuan, H. Z., Liu, Z.-Q., Zhao, J. S., & Li, G., The influence of IMF By on the bow shock: Observation result, J. Geophys. Res. Space Physics, 123, https://doi.org/10.1002/2017JA024750, 2018(SCI 55)(通讯作者)
90) 徐佳莹,吕建永,王明,郭建广,行星际磁场对极尖区位形变化的统计研究,地球物理学报,61(9):3526-3535, doi:10.6038/cjg2018M0118,2018
91) 商文赛, 吕建永, 王明, 倪素兰, 远磁尾磁层顶位型的偏转, 空间科学学报,38(3), 307-314, 2018
2017
92) Tang Y., J.S. Zhao, H.Y. Sun, J.Y. Lu, and M. Wang, Effects of ion thermal pressure on wave properties of electromagnetic ion cyclotron waves in a H+-He+-O+ plasma, Phys. Plasmas., doi: 10.1063/1.4983622, 24, 052120, 2017.
93) Ma, X., J. Y. Lu, and M. Wang, Pressure Balance across the Magnetopause during the Solar Wind Event on 5 June 1998, Planetary Space Sci., 139, 11-17, 2017. (通讯作者)
94) Lu, J.Y., H.Z. Yuan, M. Wang, and Y.F. Yang, Dipole tilt control of bow shock location and flaring angle, Science China Earth Sciences, doi:10.1007/s11430-015-0268-8, vol. 60, Issue 1, PP 198-206, 2017.
95) 刘琼琼,胡红桥,吕建永,刘建军,刘瑞源,夜侧极区电离层对流对行星际激波的响应,空间科学学报,37(2),140-150, 2017
2016
96) Wang, M., J. Y. Lu, et al., The influence of IMF clock angle on the cross-section of the tail bow shock, J. Geophys. Res. Space Physics, 121 (11), 11077-11085, doi:10.1002/2016JA022830, 2016 (通讯作者)
97) Fu, Q., Y. Tang, J.S. Zhao, and J.Y. Lu, Low-frequency Waves in Cold Three-component Plasmas, Plasma Sci. Technol., 18(9), 897-901, 2016.
98) Liu, J., Shi Q.Q., et al., Shape and position of earth’s bow shock near-lunar orbit based on ARTEMIS data, Science China Earth Sciences, 59(8):1700-17066, doi: 10.1007/s11430-016-5319-3, 2016.
99) Lu, J.Y., Y.X. Peng, M. Wang, S. J. Gu,and M.X. Zhao, Support vector machine combined with distance correlation learning for Dst forecasting during intense geomagnetic storms, Planetary Space Sci., 120,48-55, 2016.
100) 彭宇翔,吕建永,顾赛菊,利用支持向量机预测大磁暴期间Dst指数的变化,空间科学学报,36(6): 866-874, 2016
101) 袁换只,吕建永,王明,偶极倾角对弓激波日下点距离和尾部张角的影响,空间科学学报,36(3),272-278,2016
102) 王娅冰,郑宇卿,顾斌,丁留贯,乐贵明,吕建永,1AU轨道SEP粒子通量的计算及与多卫星观测结果的比较,空间科学学报,36(3),331-335,2016
2015
103) Liu, Z.-Q., J. Y. Lu, C. Wang, K. Kabin, J. S. Zhao, M. Wang, J. P. Han, J. Y. Wang, and M. X. Zhao, A three-dimensional high Mach number asymmetric magnetopause model from global MHD simulation, J. Geophys. Res. Space Physics, 120(7), 5645-56666, doi:10.1002/2014JA020961, 2015. (通讯作者)
104) Lu J.Y., M. Wang, K. Kabin, Z.-Q. Liu, J. S. Zhao, G. Li, Pressure Balance across the Magnetopause: Global MHD Results, Planetary Space Sci., 106, 108-115, 2015.
105) 吕建永,赵明现,磁层电离层电动耦合数值模拟研究,空间物理新进展(第五卷),史建魁,叶永烜,刘振兴主编,科学出版社(北京),2015年10月,164-201
106) 胡慧萍,吕建永,周全,王明,杨亚芬,刘子谦,裴世鑫,地球弓激波的三维模拟,空间科学学报,35(1),1-8, doi:10.11728/cjss2015.01.001,2015
2014
107) Wang, M., J.Y. Lu, K. Kabin, Z.-Q. Liu, J. S. Zhao, G. Li, The Dipole Tilt Angle Dependence of the Bow Shock: Global MHD Results for Southward IMF, Planetary Space Sci., 106, 99-107, 2014. (通讯作者)
108) J. S. Zhao, Y. Voitenko, M.Y. Yu, JY Lu, and DJ Wu, Properties of Short-wavelength Oblique Alfvén and Slow Waves, Astrophys. J, 793(2), 107, 2014.
109) Jing H., J. Y. Lu, K. Kabin, J.S. Zhao, Z. Q. Liu, Y. F. Yang, M. X. Zhao, and M. Wang, MHD Simulation of energy transfer across magnetopause during sudden changes of the IMF orientation, Planetary Space Sci., 97, 50-59, 2014. (通讯作者)
110) 王明,吕建永,李刚,太阳风压力系数的研究,地球物理学报,57(11), 3804-3811, doi:10.6038/cjg20141101,2014(SCIE)
111) 荆浩,吕建永,蒋勇,王明,胡慧萍,刘子谦,太阳风向磁层输入电磁能的研究, 空间科学学报,34(3): 269-277, doi:10.11728/cjss2014.03.269, 2014.
2013
112) Lu, J. Y., H. Jing, Z. Q. Liu, K. Kabin, and Y. Jiang (2013), Energy transfer across the magnetopause for northward and southward interplanetary magnetic fields, J. Geophys. Res. Space Physics, Vol.118, Issue 5, May 2013, Pages: 2021–2033, DOI: 10.1002/jgra.50093.
113) Lu, J. Y., Z.-Q. Liu, K. Kabin, H. Jing, M. X. Zhao, and Y. Wang (2013), The IMF dependence of the magnetopause from global MHD simulations, J. Geophys. Res. Space Physics, Vol. 118, Issue 6, June 2013, Pages: 3113–3125, doi:10.1002/jgra.50324.
114) Zhao J. S., D. J. Wu, and J. Y. Lu, Kinetic Alfven Turbulence and Parallel Electric Fields in Flare Loops, Astrophys. J., 767, 109, doi:10.1088/0004-637X/767/2/109, 2013.
115) Yang, Y. F., J. Y. Lu, J.-S. Wang, Z. Peng, and L. Zhou, Influence of interplanetary magnetic field and solar wind on auroral brightness in different regions, J. Geophys. Res., Space Physics, 118, 209-217, doi:10.1029/2012JA017727, 2013. (通讯作者)
116) Zhao J. S., D. J. Wu, L. Yang, and J. Y. Lu, Nonlinear interaction and parametric instability of kinetic Alfven waves in multicomponent plasmas, Phys. Plasmas, 20, 032308, doi: 10.1063/1.4796054, 2013
117) 吕建永,杨亚芬,赵明现,迈向太空---空间天气学,现代物理知识,25卷,第5期(总149期),21-26,2013
118) 曹鑫,吕建永,杨志良,刘子谦,杨亚芬,赵明现, 三维试验粒子轨道法在磁层粒子全球输运中的应用, 空间科学学报, 33(3): 240-249, 2013
2012
119) Kumar S., and J.Y. Lu, Quantum treatment of Kinetic Alfven waves, Astrophys. Space Sci., V. 340, doi:10.1007/s10509-012-1120-8, 2012.
120) Liu Z.-Q., J. Y. Lu, K. Kabin, Y. F. Yang, M. X. Zhao, and X. Cao, Dipole tilt control for the magnetopause for southward IMF from global magnetohydrodynamic simulations, J. Geophys. Res., 117, A07207, doi:10.1029/2011JA017441, 2012. (通讯作者)
121) Zhao J. S., D. J. Wu, M. Y. Yu, and J. Y. Lu, Convective cell generation by kinetic Alfv\'en wave turbulence in the auroral ionosphere, Phys. Plasmas., 19, 062901, doi:10.1063/1.4729327, 2012.
122) Wang M., Lu J. Y., Z.Q. Liu, and S.X. Pei, Dependence of magnetic field just inside the magnetopause on subsolar standoff distance: global MHD results, Chin. Sci. Bull., 57: 1438–1442, doi: 10.1007/s11434-011-4961-6, 2012. (通讯作者)
123) Zhao M. X., Lu J. Y., Nonlinear dispersive scale Alfven waves in magnetosphere-ionosphere coupling: physical processes and simulation results, Chin. Sci. Bull., 57: 1384–1392, doi: 10.1007/s11434-011-4905-1, 2012. (通讯作者)
2011
124) Yang, Y. F., J. Y. Lu, J.-S. Wang, Z. Peng, Q. Qian, and Y. Xiao, Different response of dayside auroras to increases in solar wind dynamic pressure, J. Geophys. Res., 116, A08314, doi:10.1029/2010JA016385, 2011. (通讯作者)
125) Lu J. Y., Z.-Q. Liu, K. Kabin, M. X. Zhao, D. D. Liu, Q. Zhou, and Y. Xiao, Three dimensional shape of the magnetopause: Global MHD results, J. Geophys. Res., 116, A09237, 21PP., doi:10.1029/2010JA016418,2011.
126) Zhao J. S., D. J. Wu, J. Y. Lu, L. Yang, and M. Y. Yu, Generation of Convective Cells by Kinetic Alfven Waves, New . J. Phys., 13 , 063043, 2011.
127) Zhao J. S., D. J. Wu, J. Y. Lu, Kinetic Alfven Waves excited by Oblique MHD Alfven Waves in Coronal Holes, Astrophys. J., 735, DOI: 10.1088/0004-637X/735/2/114, 2011.
128) Zhao J. S., D. J. Wu, J. Y. Lu, A nonlocal wave-wave interaction among Alfven waves in an intermediate-β plasma, Phys. Plasmas., 18, pp. 032903-032903-6, DOI: 10.1063/1.3568840, 2011.
129) Liu D. D., C. Huang, J. Y. Lu, and J.-S. Wang, The hourly average solar wind velocity prediction based on support vector regression method, Mon. Not. R. Astron. Soc. , 4, 2877-2882, DOI: 10.1111/j.1365-2966.2011.18359.x, 2011.
130) 吕建永,杨亚芬,杜丹,周全,毛田,空间天气研究进展,气象科技进展,1(4),26-36,2011
2010
131) Du D., W. Y. Xu, M. X. Zhao, B. Chen, J. Y. Lu, and G. L. Yang, A sensitive geomagnetic activity index for space weather operation, Space Weather, 8, S12006, doi:10.1029/2010SW000609, 2010.
132) Zhao, J. S., D. J. Wu, and J. Y. Lu, On nonlinear decay of kinetic Alfvén waves and application to some processes in space plasmas, J. Geophys. Res., 115, A12227, doi:10.1029/2010JA015630, 2010.
133) Zhao J. S., J. Y. Lu, and D. J. Wu, Parametric instability of whistler waves in the electron magnetohydrodynamics, Astrophys. J., 714, 138-143, 10.1088/0004-637X/714/1/138, 2010.
134) Rae I. J., K. Kabin, J. Y. Lu, R. Rankin, S. E. Milan, F. R. Fenrich. C. E. J. Watt, T. I. Gombosi, D. L. De Zeeuw, A. J. Ridley, K. G. Powell, and C. R. Clauer, Comparison of the Open-Closed Separatrix in a Global Magnetospheric Simulation with Observations: the role of the ring current, 115, doi: 10.1029/2009JA015068,J. Geophys. Res.,2010.
2008
135) Marchand, R., F. Mackay F., J. Y. Lu, and K. Kabin, Consistency check of a global MHD simulation using the test-kinetic approach, Plasma Phys.Control. Fusion, 50(2008) 074007, 2008.
136) Lu J. Y., W. Wang, R. Rankin, R. Marchand, J. Lei, S. C. Solomon, I. J. Rae, J.-S. Wang, and G.-M. Le, Electromagnetic waves generated by ionospheric feedback instability, J. Geophys. Res., 113, A05206, doi:10.1029/2007JA012659, 2008.
137) Mackay F., R. Marchand, K. Kabin, and J. Y. Lu, Test kinetic modeling of collisionless perpendicular shocks, J. Plasma Phys., 74,1-18, 2008.
2007
138) Lu J. Y., R. Rankin, R. Marchand, I. J. Rae, W. Wang, S. C. Solomon, and J. Lei, Electrodynamics of magnetosphere-ionosphere coupling and feedback on magnetospheric field line resonances, J. Geophys. Res., 112, A10219, doi:10.1029/2006JA012195, 2007.
139) Marchand R, J.Y. Lu, K. Kabin and R. Rankin, Unstructured Meshes and Finite Elements in Space Plasma Modelling: Principles and Applications, in Advanced methods for space simulations., edited by H. Usui and Y. Omura, pp.111-143, Tokyo, 2007.
2006
140) Rankin R., C. E. Watt, K. Kabin, R. Marchand, J. Y. Lu, and A. Degeling, Theoretical aspects of kinetic and inertial scale dispersive Alfven waves in Earth's magnetosphere, in Magnetospheric ULF Waves: Synthesis and New Directions, Geophys. Monogr. Ser., vol. 169, edited by K. Takahashi, P. J. Chi, R. E. Denton, and R. L. Lysak, 10.1029/169GM08, pp.91-108, AGU, Washington DC, 2006.
2005
141) Marchand R, J. Y. Lu, K. Kabin, R. Rankin, and T. Keeler, Unstructured Meshes and Finite Elements in Space Plasma Modelling, Proceedings of ISSS-7., PP. 26-31, March, 2005.
142) Rankin, R., K. Kabin, J. Y. Lu, I. R. Mann, R. Marchand, and I. J. Rae, V.T. Tikhonchuk, and E. Donovan, Magnetospheric field line resonances: ground-based observations and modeling, J. Geophys. Res., 110, A10S09, doi: 10.1029/2004JA01919, 2005.
143) Lu, J. Y., R. Rankin, R. Marchand, and V.T. Tikhonchuk, Reply to comment on " Nonlinear electron heating by resonant shear Alfven waves in the ionosphere" by J.-P. St.-Maurice, Geophys. Res. Letts.., 32, L13103, doi:10.1029/2005GL023149, 2005.
144) Rankin, R., R. Marchand, J. Y. Lu, K. Kabin, and V.T. Tikhonchuk, Theory of Dispersive Shear Alfven Wave Focusing in Earth's Magnetosphere, Geophys. Res. Letts.., 32, L05102, doi: 10.1029/2004GL021831, 2005.
145) Lu, J. Y., R. Rankin, R. Marchand, and V.T. Tikhonchuk, Nonlinear electron heating by resonant shear Alfven waves in the ionosphere, Geophys. Res. Lett., 32, L01106, doi:10.1029/2004GL0221830, 2005.
146) Liu, W., J. Burchill, L. Cogger, E. Donovan, G. James, D. Kendall, D. Knudsen, J. Y. Lu, I. Mann, R. Michaud, S. Murphree, R. Rankin, J. Samson, E. Spanswick, G. Sofko, T. Trondsen, and A. Yau., Multiscale geospace physics in Canada, in Sun-earth Connection: Multiscale Coupling in Sun-Earth Processes, Edited by A. T. Y. Liu, Y. Kamide, and G. Consolini, Elsevier B. V.; Amsterdam, The Netherlands, 2005, p.487, 2005.
2004
147) Kaghashvili, E. Kh. G. P. Zank, J. Y. Lu, W. Droge, Transport of energetic charged particles. Part 2. Small-angle scattering, J. Plasma Phys., 70, 505-532, 2004.
148) Rankin, R., J. Y. Lu, R. Marchand, and E.F. Donovan, Spatiotemporal characteristics of ultra-low frequency dispersive scale shear Alfven waves in Earth's magnetosphere, Phys. Plasmas., 11(4), 1268, doi:10.1063/1.1647138, 2004.
2003
149) Lu, J. Y., R. Rankin, R. Marchard, V. T. Tikhonchuk, and J Wanliss, Finite element modeling of nonlinear dispersive field line resonances: Trapped shear Alfven waves inside field-aligned density structures, J. Geophys. Res., 108(A11), 1394, doi:10.1029/2003JA010035, 2003.
150) Lu, J. Y., R. Rankin, R. Marchand, and V.T. Tikhonchuk, Nonlinear Acceleration of Dispersive Effects in Field Line Resonances, Geophys. Res. Lett., 30(10), 1540, doi: 10.1029/2003GL016929, 2003.
2002
151) Lu, J. Y., G. P. Zank, R. Rankin, and R. Marchand, The transport of charged particles in a flowing medium, Astrophys. J., 576, 574, 2002.
2001
152) Lu, J. Y., and G. P. Zank, The transport of interstellar pickup ions, J. Geophys. Res., 106, 5709, 2001.
153) Lu, J. Y., G. P. Zank, and G.M. Webb, Numerical solution of the time-dependent kinetic equation for anisotrpoic pitch angle scattering, Astrophys.J., 550, 34-51, 2001.
154) Webb, G.M., J. Kota, G. P. Zank, and J. Y. Lu, The BGK Boltzmann equation and anisotropic diffusion, Proc. 27th Internat. Cosmic-Ray Conf., 8, 3326-3329, 2001.
2000
155) Zank, G. P., J. Y. Lu, W. K. M. Rice, and G. M. Webb, The transport of energetic charged particles in a radial magnetic field, I. Large-angle scattering, J. Plasma Phys., 64, 507-541, 2000.
156) Zank, G. P., W. K. M. Rice, J.A. leRoux, J. Y. Lu, and H. R. Muller, The injection problem for anomalous cosmic rays, in The Acceleration and Transport of Energetic Particles Observed in the Heliosphere, edited by R. A. Mewaldt, J. R. Jokipii, M. A. Lee, et al., AIP, 317-324, 2000.
1999
157) Lu, J. Y., Y. C. Whang, and L. F. Burlaga, Interaction of the GMIR shock with the termination shock, J. Geophys. Res., 104, 28249, 1999.
158) Zank, G. P., J. Y. Lu, W. K. M. Rice, and G. M. Webb, The transport of energetic solar particles, Proc. 26th Internat. Cosmic-Ray Conf., 6, 312-316, 1999.
159) Whang, Y. C., J. Y. Lu, and L. F. Burlaga, The termination shock: 1979-1995, J. Geophys. Res., 104, 28255, 1999.
160) Whang, Y. C., J. Y. Lu, and L. F. Burlaga, Evolution of a strong shock in the distant heliosphere, J. Geophys. Res., 104, 19787, 1999.
161) Lu, J. Y., and F. S., Wei, Slow mode shocks propagating in open and closed magnetic field, Science in China (Ser. A), 42, 414-422, 1999.
162) 吕建永, 魏奉思,开闭磁场位形中慢激波的传播, 中国科学(A), 29, 69-76, 1999.
Before 1998
163) Lu, J. Y., J. K. Chao, J. H. Shue, and S. C. Fu, Normal direction and shape of the magnetopause, Science in China (Ser. D), 41, 486, 1998.
164) Lu, J. Y., and F. S. Wei, Propagation of fast shocks along the heliospheric current sheet from 1Rs to 1AU, in Proceedings of the Third SOLTIP Symposium, edited by X.S. Feng, F.S. Wei, and M. Dryer, 439-445, International Academic Publishers, 1998.
165) Feng Xue-shang, and Lü Jian-Yong, The effect of dispersion and dissipation on Alfven solitary waves, Chin. Astron. Astrophys. Vol. 21, No. 3, pp. 311-311, 1997.
166) 吕建永, J. K. Chao, J. H. Shue, S. C. Fu, 磁层顶的法向和形状, 中国科学 (D), 28, 322-326, 1998.
167) 卢先和, 魏奉思, 吕建永, 刘四清,太阳风高速流能流分布, 空间科学学报,18(2),104-110, 1998.
168) 冯学尚, 吕建永, 具有阻尼耗散的DNLS方程的孤立波解析解,空间科学学报, 17, 25-31, 1997.
169) 吕建永, J. K. Chao, J. H. Shue, S. C. Fu, 磁层顶法向和形状的统计研究, 中国地球物理学会年刊1997, 同济大学出版社(上海), 217, 1997.
170) 吕建永, 魏奉思, 费振勇, 各向异性磁流体激波越变条件的无量钢化求解, 空间科学学报, 17, 110-117, 1997.
171) 冯学尚, 吕建永, 色散和耗散对Alfven孤立波的影响, 空间科学学报, 16, 260-265, 1996.
172) 吕建永, 顾辉成, 激波法向和速度的确定, 吉首大学学报, 2, 1-7, 1996.
173) 吕建永, 魏奉思, 黄天桥, 阿尔芬波在日球子午面内的传播, 空间科学学报, 14, 93-100, 1994.
173)Zhao Xue-pu, and Lü Jian-Yong, Interaction of the Alfven waves and the Slow mode shocks, Acta Geophysic, 31, 581, 1988.
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