罗松
副教授
办公室:
地测学院
招生专业:
邮箱:
songluo@chd.edu.cn
研究方向:
地震学、面波成像、地震背景噪声成像、时变地震学、岩石圈结构与大陆动力学
个人概况

代表性论文

Luo,S., Yao, H. 2025. Direct Tomography of S-wave Structure UsingSubarray Surface Wave Dispersion Data: Methodology andValidation. Geophysics. https://doi.org/10.1190/geo-2024-0515.

Sun,T., Yao, H., Yang, H., Yu, C., Luo, S., Sheng, Y. 2025. Pronouncedtemporal velocity variations within the fault fracture zone inresponse to Earth tide modes. NatlSci Rev. https://doi.org/10.1093/nsr/nwaf023.

Liu,X., Yao, H., Zhao, C., Liu, Y., Luo, S. 2025. High-resolution uppercrustal S-wave velocity structure and seismicity distribution aroundthe junction of the Zemuhe and Xiaojiang Fault Zones, SouthwestChina. Earthand Planetary Physics. https://doi.org/10.26464/epp2025011.

Jiang,X., Hu, S., Luo, S., Huang, R., Xu, H. 2025. Depth-dependent surfacewave dispersion equation calculated by the impedence matrixmethod. Earth,Planets and Space. https://doi.org/10.1186/s40623-025-02164-2.

Jiang,X., Hu, S., Luo, S. 2025. Comparative analysis of formulations forcrossed artifact elimination in the frequency–Besselspectrograms. Frontiersin Earth Science. https://doi.org/10.3389/feart.2025.1505367.

周桂理, 罗松, 姚华建.2024. 基于改进的多分量频率-贝塞尔变换法研究郯庐断裂带潍坊段上地壳径向各向异性结构. 地球物理学报. https://doi.org/10.6038/cjg2023Q0907.

Yan,M., Yao, H., Lei, T., Luo, S., Feng, J. 2024. Linear Array DoubleDifference Adjoint Ambient Noise Tomography of the Central TanluFault Zone, Eastern China. Journalof Geophysical Research: SolidEarth. https://doi.org/10.1029/2024jb028791.

Li,C., Yao, H., Luo, S., Zhang, H., Li, L., Wang, X., Ni, S. 2024. Uppercrustal azimuthal anisotropy and seismogenic tectonics of the Hefeisegment of the Tan-Lu fault zone from ambient noise tomography. Earthand Planetary Physics. https://doi.org/10.26464/epp2024031.

Hu,F., Yao, H., Yu, H., Lu, Z., Hou, J., Luo, S., Shao, Z., Chen, X.2024. Influence of self-similar stresses on scenario earthquakeconstruction: An example along the Tanlu Fault. ScienceChina Earth Sciences. https://doi.org/10.1007/s11430-023-1239-8.

胡峰, 姚华建, 余厚云, 卢泽昱, 侯杰议, 罗松, 邵志刚, 陈晓非.2023. 分形应力对设定地震构建的影响-以郯庐断裂带为例. 中国科学:地球科学. https://doi.org/10.1360/SSTe-2023-0171.

姚华建, 罗松, 李成, 胡少乾, 方洪健.2023. 基于面波走时的三维结构面波直接成像:方法综述与应用. 地球与行星物理评论(中英文). https://doi.org/10.19975/j.dqyxx.2022-063.

Luo,S., Yao, H., Wen, J., Yang, H., Tian, B., Yan, M. 2023. ApparentLow‐Velocity Belt in the Shallow Anninghe Fault Zone in SW Chinaand Its Implications for Seismotectonics and Earthquake HazardAssessment. Journalof Geophysical Research: SolidEarth. https://doi.org/10.1029/2022jb025681.

Li,H., Li, J., Luo, S., Bem, T. S., Yao, H., Huang, X. 2023.Continent‐Continent Collision Between the South and North ChinaPlates Revealed by Seismic Refraction and Reflection at the SouthernSegment of the Tanlu Fault Zone. Journalof Geophysical Research: SolidEarth. https://doi.org/10.1029/2022jb025748.

Chen,Z., Yao, H., Shao, X., Luo, S., Yang, H. 2023. Detailed sedimentarystructure of the Mianning segment of the Anninghe fault zone revealedby H/V spectral ratio. EarthquakeResearch Advances. https://doi.org/10.1016/j.eqrea.2023.100232.

靳佳琪, 罗松, 姚华建, 田晓峰.2022. 密集台阵背景噪声成像揭示郯庐断裂带潍坊段地壳浅层速度结构及变形特征. 地球物理学报. https://doi.org/10.6038/cjg2022P0934.

Luo,S., Yao, H. J., Zhang, Z. Q., Bem, T. S. 2022. High-resolutioncrustal and upper mantle shear-wave velocity structure beneath thecentral-southern Tanlu fault: Implications for its initiation andevolution. Earthand Planetary ScienceLetters. https://doi.org/10.1016/j.epsl.2022.117763.

Luo,S., Hu, S. Q., Zhou, G. L., Yao, H. J. 2022. Improvement ofFrequency-Bessel Phase-Velocity Spectra of MulticomponentCross-Correlation Functions from Seismic Ambient Noise. Bulletinof the Seismological Society ofAmerica. https://doi.org/10.1785/0120220027.

Bem,T. S., Yao, H. J., Luo, S., Gao, L., Zhang, H. J., Li, J. L. 2022.P-wave velocity structure in the crust and the uppermost mantle ofChao Lake region of the Tan-Lu Fault inferred from teleseismicarrival time tomography. EarthquakeScience. https://doi.org/10.1016/j.eqs.2022.12.002.

Bem,T. S., Liu, C. M., Yao, H. J., Luo, S., Yang, Y., Liu, B. 2022.Azimuthally Anisotropic Structure in the Crust and Uppermost Mantlein Central East China and Its Significance to Regional DeformationAround the Tan-Lu Fault Zone. Journalof Geophysical Research-SolidEarth. https://doi.org/10.1029/2021JB023532.

Luo,S., Yao, H. J., Wang, J. N., Wang, K. D., Liu, B. 2021. Directinversion of surface wave dispersion data with multiple-gridparametrizations and its application to a dense array in Chao Lake,eastern China. GeophysicalJournal International. https://doi.org/10.1093/gji/ggab036.

Luo,S., Yao, H. 2021. Multistage tectonic evolution of the Tanlu fault:Insights from upper crustal azimuthal anisotropy of the Chao Lakesegment. Tectonophysics. https://doi.org/10.1016/j.tecto.2021.228795.

Li,L., Yao, H., Luo, S., Li, J., Wang, X., Ni, H., Bao, Z. 2021. Amulti-scale 3-D crust velocity model in the Hefei-Chao Lake areaaround the southern segment of Tanlu Fault Zone. EarthquakeScience. https://doi.org/10.29382/eqs-2021-0020.

Dou,L. T., Yao, H. J., Fang, L. H., Luo, S., Song, M. Q., Yan, X. M.,Cheng, C. 2021. High-resolution crustal velocity structure in theShanxi rift zone and its tectonic implications. ScienceChina-Earth Sciences. https://doi.org/10.1007/s11430-020-9710-x.

窦立婷, 姚华建, 房立华, 罗松, 宋美琴, 闫晓美, 成诚.2020. 山西断陷带地区高分辨率地壳横波速度结构及其构造演化意义. 中国科学: 地球科学. https://doi.org/10.1360/SSTe-2020-0270.

李伶俐, 黄显良, 姚华建, 廖鹏, 汪小厉, 鲍子文, 倪红玉, 李成, 杨元, 罗松, 胡少乾, 杨源源.2020. 合肥市地壳浅部三维速度结构及城市沉积环境初探. 地球物理学报. https://doi.org/10.6038/cjg2020O0097.

Luo,S., Huang, R., Zhu, L., Yao, H. 2020. The formation of the Dabashanorocline, central China: Insights from high-resolution 3D crustalshear-wave velocitystructure. Tectonophysics. https://doi.org/10.1016/j.tecto.2019.228244.

Li,C., Yao, H., Yang, Y., Luo, S., Wang, K., Wan, K., Wen, J., Liu, B.2020. 3-D shear wave velocity structure in the shallow crust of theTanlu fault zone in Lujiang, Anhui, and adjacent areas, and itstectonic implications. Earthand Planetary Physics. https://doi.org/10.26464/epp2020026.

Huang,S. Y., Yao, H. J., Lu, Z. W., Tian, X. B., Zheng, Y., Wang, R., Luo,S., Feng, J. K. 2020. High-Resolution 3-D Shear Wave Velocity Modelof the Tibetan Plateau: Implications for Crustal Deformation andPorphyry Cu Deposit Formation. Journalof Geophysical Research-SolidEarth. https://doi.org/10.1029/2019JB019215.

Huang,G., Luo, S., Deng, J., Vavryčuk, V. 2020. Traveltime calculationsfor qP‐, qSV‐ and qSH‐ waves in two‐dimensionaltilted transversely isotropic media. Journalof Geophysical Research: SolidEarth. https://doi.org/10.1029/2019jb018868.

Hu,S. Q., Luo, S., Yao, H. J. 2020. The Frequency-Bessel Spectrograms ofMulticomponent Cross-Correlation Functions From Seismic AmbientNoise. Journalof Geophysical Research: SolidEarth. https://doi.org/10.1029/2020JB019630.

Bem,T. S., Yao, H. J., Luo, S., Yang, Y., Wang, X. Z., Wang, X. L., Li,L. L., Liu, B. 2020. High-resolution 3-D crustal shear-wave velocitymodel reveals structural and seismicity segmentation of thecentral-southern Tanlu Fault zone, easternChina. Tectonophysics. https://doi.org/10.1016/j.tecto.2020.228372.

Luo,S., Yao, H., Li, Q., Wang, W., Wan, K., Meng, Y., Liu, B. 2019.High-resolution 3D crustal S-wave velocity structure of theMiddle-Lower Yangtze River Metallogenic Belt and implications for itsdeep geodynamic setting. ScienceChina Earth Sciences. https://doi.org/10.1007/s11430-018-9352-9.

罗松, 姚华建, 李秋生, 王伟涛, 万柯松, 孟亚锋, 刘斌.2019. 长江中下游成矿带高分辨地壳三维横波速度结构及其形成的深部动力学背景. 中国科学:地球科学. https://doi.org/10.1360/n072018-00200.

Luo,S., Zhu, L., Huang, R., Luo, Y., Jiang, X., Hua, Y. 2019.Determination of crustal thickness and velocities by using receiverfunctions and PmP travel times. GeophysicalJournal International. https://doi.org/10.1093/gji/ggy500.

Huang,G., Hu, Q., Luo, S., Li, H., Zhang, H., Nobes, D. C. 2019. 2-D fastsweeping method for the factored Eikonal equation and its improvementon inversion accuracy. Journalof Applied Geophysics. https://doi.org/10.1016/j.jappgeo.2019.04.016.

Huang,R., Zhu, L. P., Encarnacion, J., Xu, Y. X., Tang, C. C., Luo, S.,Jiang, X. H. 2018. Seismic and Geologic Evidence of Water-InducedEarthquakes in the Three Gorges Reservoir Region ofChina. GeophysicalResearch Letters. https://doi.org/10.1029/2018gl077639.

Luo,S., Luo, Y., Zhu, L., Xu, Y. 2016. On the reliability and limitationsof the SPAC method with a directional wavefield. Journalof Applied Geophysics. https://doi.org/10.1016/j.jappgeo.2016.01.023.


研究领域

地震学、面波成像、地震背景噪声成像、时变地震学、岩石圈结构与大陆动力学

开授课程

本科生课程:《地震波理论基础》、《MATLAB程序设计》等

研究生课程:《固体地球物理前沿讲座 》等

科研项目

深地国家科技重大专项子课题,主持,在研

中央高校基本科研业务费资助项目,主持,在研

科技部国家重点研发计划专题,主持,结题

国家自然科学基金青年科学基金项目,主持,结题

中国博士后科学基金第65批面上资助,主持,结题

论文

代表性论文

Luo,S., Yao, H. 2025. Direct Tomography of S-wave Structure UsingSubarray Surface Wave Dispersion Data: Methodology andValidation. Geophysics. https://doi.org/10.1190/geo-2024-0515.

Sun,T., Yao, H., Yang, H., Yu, C., Luo, S., Sheng, Y. 2025. Pronouncedtemporal velocity variations within the fault fracture zone inresponse to Earth tide modes. NatlSci Rev. https://doi.org/10.1093/nsr/nwaf023.

Liu,X., Yao, H., Zhao, C., Liu, Y., Luo, S. 2025. High-resolution uppercrustal S-wave velocity structure and seismicity distribution aroundthe junction of the Zemuhe and Xiaojiang Fault Zones, SouthwestChina. Earthand Planetary Physics. https://doi.org/10.26464/epp2025011.

Jiang,X., Hu, S., Luo, S., Huang, R., Xu, H. 2025. Depth-dependent surfacewave dispersion equation calculated by the impedence matrixmethod. Earth,Planets and Space. https://doi.org/10.1186/s40623-025-02164-2.

Jiang,X., Hu, S., Luo, S. 2025. Comparative analysis of formulations forcrossed artifact elimination in the frequency–Besselspectrograms. Frontiersin Earth Science. https://doi.org/10.3389/feart.2025.1505367.

周桂理, 罗松, 姚华建.2024. 基于改进的多分量频率-贝塞尔变换法研究郯庐断裂带潍坊段上地壳径向各向异性结构. 地球物理学报. https://doi.org/10.6038/cjg2023Q0907.

Yan,M., Yao, H., Lei, T., Luo, S., Feng, J. 2024. Linear Array DoubleDifference Adjoint Ambient Noise Tomography of the Central TanluFault Zone, Eastern China. Journalof Geophysical Research: SolidEarth. https://doi.org/10.1029/2024jb028791.

Li,C., Yao, H., Luo, S., Zhang, H., Li, L., Wang, X., Ni, S. 2024. Uppercrustal azimuthal anisotropy and seismogenic tectonics of the Hefeisegment of the Tan-Lu fault zone from ambient noise tomography. Earthand Planetary Physics. https://doi.org/10.26464/epp2024031.

Hu,F., Yao, H., Yu, H., Lu, Z., Hou, J., Luo, S., Shao, Z., Chen, X.2024. Influence of self-similar stresses on scenario earthquakeconstruction: An example along the Tanlu Fault. ScienceChina Earth Sciences. https://doi.org/10.1007/s11430-023-1239-8.

胡峰, 姚华建, 余厚云, 卢泽昱, 侯杰议, 罗松, 邵志刚, 陈晓非.2023. 分形应力对设定地震构建的影响-以郯庐断裂带为例. 中国科学:地球科学. https://doi.org/10.1360/SSTe-2023-0171.

姚华建, 罗松, 李成, 胡少乾, 方洪健.2023. 基于面波走时的三维结构面波直接成像:方法综述与应用. 地球与行星物理评论(中英文). https://doi.org/10.19975/j.dqyxx.2022-063.

Luo,S., Yao, H., Wen, J., Yang, H., Tian, B., Yan, M. 2023. ApparentLow‐Velocity Belt in the Shallow Anninghe Fault Zone in SW Chinaand Its Implications for Seismotectonics and Earthquake HazardAssessment. Journalof Geophysical Research: SolidEarth. https://doi.org/10.1029/2022jb025681.

Li,H., Li, J., Luo, S., Bem, T. S., Yao, H., Huang, X. 2023.Continent‐Continent Collision Between the South and North ChinaPlates Revealed by Seismic Refraction and Reflection at the SouthernSegment of the Tanlu Fault Zone. Journalof Geophysical Research: SolidEarth. https://doi.org/10.1029/2022jb025748.

Chen,Z., Yao, H., Shao, X., Luo, S., Yang, H. 2023. Detailed sedimentarystructure of the Mianning segment of the Anninghe fault zone revealedby H/V spectral ratio. EarthquakeResearch Advances. https://doi.org/10.1016/j.eqrea.2023.100232.

靳佳琪, 罗松, 姚华建, 田晓峰.2022. 密集台阵背景噪声成像揭示郯庐断裂带潍坊段地壳浅层速度结构及变形特征. 地球物理学报. https://doi.org/10.6038/cjg2022P0934.

Luo,S., Yao, H. J., Zhang, Z. Q., Bem, T. S. 2022. High-resolutioncrustal and upper mantle shear-wave velocity structure beneath thecentral-southern Tanlu fault: Implications for its initiation andevolution. Earthand Planetary ScienceLetters. https://doi.org/10.1016/j.epsl.2022.117763.

Luo,S., Hu, S. Q., Zhou, G. L., Yao, H. J. 2022. Improvement ofFrequency-Bessel Phase-Velocity Spectra of MulticomponentCross-Correlation Functions from Seismic Ambient Noise. Bulletinof the Seismological Society ofAmerica. https://doi.org/10.1785/0120220027.

Bem,T. S., Yao, H. J., Luo, S., Gao, L., Zhang, H. J., Li, J. L. 2022.P-wave velocity structure in the crust and the uppermost mantle ofChao Lake region of the Tan-Lu Fault inferred from teleseismicarrival time tomography. EarthquakeScience. https://doi.org/10.1016/j.eqs.2022.12.002.

Bem,T. S., Liu, C. M., Yao, H. J., Luo, S., Yang, Y., Liu, B. 2022.Azimuthally Anisotropic Structure in the Crust and Uppermost Mantlein Central East China and Its Significance to Regional DeformationAround the Tan-Lu Fault Zone. Journalof Geophysical Research-SolidEarth. https://doi.org/10.1029/2021JB023532.

Luo,S., Yao, H. J., Wang, J. N., Wang, K. D., Liu, B. 2021. Directinversion of surface wave dispersion data with multiple-gridparametrizations and its application to a dense array in Chao Lake,eastern China. GeophysicalJournal International. https://doi.org/10.1093/gji/ggab036.

Luo,S., Yao, H. 2021. Multistage tectonic evolution of the Tanlu fault:Insights from upper crustal azimuthal anisotropy of the Chao Lakesegment. Tectonophysics. https://doi.org/10.1016/j.tecto.2021.228795.

Li,L., Yao, H., Luo, S., Li, J., Wang, X., Ni, H., Bao, Z. 2021. Amulti-scale 3-D crust velocity model in the Hefei-Chao Lake areaaround the southern segment of Tanlu Fault Zone. EarthquakeScience. https://doi.org/10.29382/eqs-2021-0020.

Dou,L. T., Yao, H. J., Fang, L. H., Luo, S., Song, M. Q., Yan, X. M.,Cheng, C. 2021. High-resolution crustal velocity structure in theShanxi rift zone and its tectonic implications. ScienceChina-Earth Sciences. https://doi.org/10.1007/s11430-020-9710-x.

窦立婷, 姚华建, 房立华, 罗松, 宋美琴, 闫晓美, 成诚.2020. 山西断陷带地区高分辨率地壳横波速度结构及其构造演化意义. 中国科学: 地球科学. https://doi.org/10.1360/SSTe-2020-0270.

李伶俐, 黄显良, 姚华建, 廖鹏, 汪小厉, 鲍子文, 倪红玉, 李成, 杨元, 罗松, 胡少乾, 杨源源.2020. 合肥市地壳浅部三维速度结构及城市沉积环境初探. 地球物理学报. https://doi.org/10.6038/cjg2020O0097.

Luo,S., Huang, R., Zhu, L., Yao, H. 2020. The formation of the Dabashanorocline, central China: Insights from high-resolution 3D crustalshear-wave velocitystructure. Tectonophysics. https://doi.org/10.1016/j.tecto.2019.228244.

Li,C., Yao, H., Yang, Y., Luo, S., Wang, K., Wan, K., Wen, J., Liu, B.2020. 3-D shear wave velocity structure in the shallow crust of theTanlu fault zone in Lujiang, Anhui, and adjacent areas, and itstectonic implications. Earthand Planetary Physics. https://doi.org/10.26464/epp2020026.

Huang,S. Y., Yao, H. J., Lu, Z. W., Tian, X. B., Zheng, Y., Wang, R., Luo,S., Feng, J. K. 2020. High-Resolution 3-D Shear Wave Velocity Modelof the Tibetan Plateau: Implications for Crustal Deformation andPorphyry Cu Deposit Formation. Journalof Geophysical Research-SolidEarth. https://doi.org/10.1029/2019JB019215.

Huang,G., Luo, S., Deng, J., Vavryčuk, V. 2020. Traveltime calculationsfor qP‐, qSV‐ and qSH‐ waves in two‐dimensionaltilted transversely isotropic media. Journalof Geophysical Research: SolidEarth. https://doi.org/10.1029/2019jb018868.

Hu,S. Q., Luo, S., Yao, H. J. 2020. The Frequency-Bessel Spectrograms ofMulticomponent Cross-Correlation Functions From Seismic AmbientNoise. Journalof Geophysical Research: SolidEarth. https://doi.org/10.1029/2020JB019630.

Bem,T. S., Yao, H. J., Luo, S., Yang, Y., Wang, X. Z., Wang, X. L., Li,L. L., Liu, B. 2020. High-resolution 3-D crustal shear-wave velocitymodel reveals structural and seismicity segmentation of thecentral-southern Tanlu Fault zone, easternChina. Tectonophysics. https://doi.org/10.1016/j.tecto.2020.228372.

Luo,S., Yao, H., Li, Q., Wang, W., Wan, K., Meng, Y., Liu, B. 2019.High-resolution 3D crustal S-wave velocity structure of theMiddle-Lower Yangtze River Metallogenic Belt and implications for itsdeep geodynamic setting. ScienceChina Earth Sciences. https://doi.org/10.1007/s11430-018-9352-9.

罗松, 姚华建, 李秋生, 王伟涛, 万柯松, 孟亚锋, 刘斌.2019. 长江中下游成矿带高分辨地壳三维横波速度结构及其形成的深部动力学背景. 中国科学:地球科学. https://doi.org/10.1360/n072018-00200.

Luo,S., Zhu, L., Huang, R., Luo, Y., Jiang, X., Hua, Y. 2019.Determination of crustal thickness and velocities by using receiverfunctions and PmP travel times. GeophysicalJournal International. https://doi.org/10.1093/gji/ggy500.

Huang,G., Hu, Q., Luo, S., Li, H., Zhang, H., Nobes, D. C. 2019. 2-D fastsweeping method for the factored Eikonal equation and its improvementon inversion accuracy. Journalof Applied Geophysics. https://doi.org/10.1016/j.jappgeo.2019.04.016.

Huang,R., Zhu, L. P., Encarnacion, J., Xu, Y. X., Tang, C. C., Luo, S.,Jiang, X. H. 2018. Seismic and Geologic Evidence of Water-InducedEarthquakes in the Three Gorges Reservoir Region ofChina. GeophysicalResearch Letters. https://doi.org/10.1029/2018gl077639.

Luo,S., Luo, Y., Zhu, L., Xu, Y. 2016. On the reliability and limitationsof the SPAC method with a directional wavefield. Journalof Applied Geophysics. https://doi.org/10.1016/j.jappgeo.2016.01.023.


科技成果


荣誉奖励


工作经历

2023/12-今,长安大学地质工程与测绘学院,副教授

2020/04-2023/11,中国科学技术大学地球和空间科学学院,特任副研究员

2018/02-2020/03,中国科学技术大学地球和空间科学学院,博士后