发表论文

Zhu G., Yang, H, Yang, T., & Zhang, G. (2023) Along‐Strike Variation of Seismicity Near the Extinct Mid‐Ocean Ridge Subducted Beneath the Manila Trench. Seismological Research Letters, 94 (2A): 792–804. https://doi.org/10.1785/0220220304

Le, B. M., Yang, T., & Morgan, J. P. (2022). Seismic constraints on crustal and uppermost mantle structure beneath the Hawaiian Swell: Implications for plume-lithosphere interactions. Journal of Geophysical Research: Solid Earth, 127, e2021JB023822. https://doi.org/10.1029/2021JB023822

LIU, D., YANG, T., LE, B. M., WU, Y. C., WANG, Y., HUANG, X., et al. (2022). Seismometer-detached broadband ocean bottom seismograph (OBS): development, test, and data quality analysis. Chinese Journal of Geophysics, 65(7), 2560-2572. https://doi.org/10.6038/cjg2022P0441

Wang, Y., Yang, T., Wu, Y., Liu, D., Huang, X., Wang, J., et al. (2022). A new broad-band ocean bottom seismograph and characteristics of the seismic ambient noise on the South China Sea seafloor based on its recordings. Geophysical Journal International, 230(1), 684-695. https://doi.org/10.1093/gji/ggac092

An, C., Cai, C., Zhou, L., & Yang, T. (2022). Characteristics of Low‐Frequency Horizontal Noise of Ocean‐Bottom Seismic Data. Seismological Society of America, 93(1), 257-267. https://doi.org/10.1785/0220200349

Zhang, C., Guo, Z., Yu, Y., Yang, T., & Chen, Y. J. (2022). Distinct lithospheric structures of the Ordos block and its margins from P and S receiver functions and its implications for the cenozoic lithospheric reworking. Geophysical Research Letters, 49(6), e2021GL097680. https://doi.org/10.1029/2021GL097680

WANG, G., CHEN, Y., ZHANG, C., GE, Z., GUO, Z., YANG, T., & GE, T. (2022). Mantle transition zone thickness anomaly at middle Southern China by receiver function: evidence for Hainan Plume? Chinese Journal of Geophysics, 65(10), 3871-3880. https://doi.org/10.6038/cjg2022P0338

Wu, S., Yu, Y., Yang, T., Xue, M., Tilmann, F., & Chen, H. (2022). Crustal structure of the Indochina Peninsula from ambient noise tomography. Journal of Geophysical Research: Solid Earth, e2021JB023384. https://doi.org/10.1029/2021JB023384

Lin, J., Fang, S., Xu, W., Ni, S., Zhang, H., & Yang, T. (2022). Multi-instrument observations of microseisms generated by typhoon Kalmaegi (2014) over the Northwestern Pacific. Earth and Planetary Science Letters, 594, 117746. https://doi.org/10.1016/j.epsl.2022.117746

Hung, T. D., Yang, T., Le, B. M., Yu, Y., Xue, M., Liu, B., et al. (2021). Crustal structure across the extinct mid-ocean ridge in South China Sea from OBS receiver functions: Insights into the spreading rate and magma supply prior to the ridge cessation. Geophysical Research Letters, 48, e2020GL089755. https://doi.org/10.1029/2020GL089755

Pan, M., Yang, T., Lin, J., Zhang, F., Zhou, Z., Li, H., Zhang, X., Fan, X., Cheng, Z. (2021). The Formation Mechanism of Petit-Spot Volcanoes and the Nature of the Lithosphere-Asthenosphere Boundary (LAB). Earth Science, 46(3), 817-825. https://doi.org/10.3799/dqkx.2020.340

ZHENG, H., FAN, J., Manh, L. B., YANG, T., LI, C., WANG, X., & DONG, D. (2020). Time correction of Ocean Bottom Seismometer (OBS) deployed at the Yap subduction zone using ambient noise cross-correlation. Progress in Geophysics, 35(2), 799-806. https://doi.org/10.6038/pg2020CC0512

CHEN, J., CHEN, Y., GUO, Z., & YANG, T. (2020). Crustal structure of the Ordos block and adjacent regions along an NS profile of 107.6° E. Chinese Journal of Geophysics, 63(7), 2592-2604. https://doi.org/10.6038/cjg2020M0659

Hung, T. D., Yang, T., Le, B. M., & Yu, Y. (2019). Effects of failure of the ocean‐bottom seismograph leveling system on receiver function analysis. Seismological Research Letters, 90(3), 1191-1199. https://doi.org/10.1785/0220180276

Le, B. M., Yang, T., Chen, Y. J., & Yao, H. (2018). Correction of OBS clock errors using Scholte waves retrieved from cross-correlating hydrophone recordings. Geophysical Journal International, 212(2), 891-899. https://doi.org/10.1093/gji/ggx449

Xiao, H., Xue, M., Yang, T., Liu, C., Hua, Q., Xia, S., et al. (2018). The characteristics of microseisms in South China Sea: Results from a combined data set of OBSs, broadband land seismic stations, and a global wave height model. Journal of Geophysical Research: Solid Earth, 123(5), 3923-3942. https://doi.org/10.1029/2017JB015291

Yu, Y., Gao, S. S., Liu, K. H., Yang, T., Xue, M., Le, K. P., & Gao, J. (2018). Characteristics of the mantle flow system beneath the Indochina Peninsula revealed by teleseismic shear wave splitting analysis. Geochemistry, Geophysics, Geosystems, 19(5), 1519-1532. https://doi.org/10.1029/2018GC007474

Yu, Y., Hung, T. D., Yang, T., Xue, M., Liu, K. H., & Gao, S. S. (2017). Lateral variations of crustal structure beneath the Indochina Peninsula. Tectonophysics, 712, 193-199. https://doi.org/10.1016/j.tecto.2017.05.023

Yu, Y., Gao, S. S., Liu, K. H., Yang, T., Xue, M., & Le, K. P. (2017). Mantle transition zone discontinuities beneath the Indochina Peninsula: Implications for slab subduction and mantle upwelling. Geophysical Research Letters, 44(14), 7159-7167. https://doi.org/10.1002/2017GL073528

SI, S. K., LIU, B. H., LIU, C. G., YANG, T., & FENG, Z. B. (2017). SKS splitting measurements with unknown horizontal orientation of the ocean bottom seismograph. Chinese Journal of Geophysics, 60(3), 999-1006. https://doi.org/10.6038/cjg20170314

Yang, T., Liu, F., Harmon, N., Le, K. P., Gu, S., & Xue, M. (2015). Lithospheric structure beneath Indochina block from Rayleigh wave phase velocity tomography. Geophysical Journal International, 200(3), 1582-1595. https://doi.org/10.1093/gji/ggu488

Le, B. M., Yang, T., & Gu, S. (2015). Upper mantle and transition zone structure beneath Leizhou–Hainan region: Seismic evidence for a lower-mantle origin of the Hainan plume. Journal of Asian Earth Sciences, 111, 580-588. https://doi.org/10.1016/j.jseaes.2015.06.008

Liu, C., Hua, Q., Pei, Y., Yang, T., Xia, S., Xue, M., et al. (2014). Passive-source ocean bottom seismograph (OBS) array experiment in South China Sea and data quality analyses. Chinese Science Bulletin, 59(33), 4524-4535. https://doi.org/10.1007/s11434-014-0369-4

Huo, D., & Yang, T. (2013). Seismic ambient noise around the South China Sea: seasonal and spatial variations, and implications for its climate and surface circulation. Marine Geophysical Research, 34(3), 449-459. https://doi.org/10.1007/s11001-013-9176-6

Xue, M., Le, K. P., & Yang, T. (2013). Seismic anisotropy surrounding South China Sea and its geodynamic implications. Marine Geophysical Research, 34(3), 407-429. https://doi.org/10.1007/s11001-013-9194-4

Yang, T., Gu, S., & Le Phon, K. (2010). Source side seismic tomography (3STomo): A novel method to image the subsurface structure beneath seismically active region. Earthquake Science, 23(6), 637-643. https://doi.org/10.1007/s11589-010-0762-2

Yang, F., Huang, J. L., & Yang, T. (2010). Upper mantle structure beneath the Chinese capital region from teleseismic finite-frequency tomography. Chinese Journal of Geophysics, 53(8), 1806-1816. https://doi.org/10.3969/j.issn.0001-5733.2010.08.006

Yang, T., Grand, S. P., Wilson, D., Guzman‐Speziale, M., Gomez‐Gonzalez, J. M., Dominguez‐Reyes, T., & Ni, J. (2009). Seismic structure beneath the Rivera subduction zone from finite‐frequency seismic tomography. Journal of Geophysical Research: Solid Earth, 114, B01302. https://doi.org/10.1029/2008JB005830

Yang, T., & Shen, Y. (2006). Frequency-dependent crustal correction for finite-frequency seismic tomography. Bulletin of the Seismological Society of America, 96(6), 2441-2448. https://doi.org/10.1785/0120060038

Yang, T., Shen, Y., van der Lee, S., Solomon, S. C., & Hung, S.-H. (2006). Upper mantle structure beneath the Azores hotspot from finite-frequency seismic tomography. Earth and Planetary Science Letters, 250(1-2), 11-26. https://doi.org/10.1016/j.epsl.2006.07.031

Yang, T., Shen, Y., & Yang, X. (2005). Crustal and mantle structure beneath Eastern Eurasia from finite frequency seismic tomography (FFST). Proceedings of the 27th Seismic Research Review: Ground-based Nuclear Explosion Monitoring Technologies, LA-UR-05-6407, 1, 479-488.

Yang, T., & Shen, Y. (2005). P-wave velocity structure of the crust and uppermost mantle beneath Iceland from local earthquake tomography. Earth and Planetary Science Letters, 235(3-4), 597-609. https://doi.org/10.1016/j.epsl.2005.05.015

Yang, T., Ji, W., & Zhang, S. (2001). A preliminary study of applying a matched-filter approach to estimate sound impedances of underwater sediments. ACTA ACUSTICA, 26(3), 202-206.

吴越楚, & 杨挺. (2023). 海底地震仪垂直分量倾斜噪声的去除—以磐鲲南海测试数据为例. 地震学报, 45(0), 1−11. https://doi.org/10.11939/jass.20220163

王宜志, 杨挺, 刘晨光, 刘丹, & 吴越楚. (2023). 南海西北次海盆海底地震记录的短时事件分析. 地震学报, 45(0), 1−14. https://doi.org/10.11939/jass.20220175

王冠之, 陈永顺, 张晨, 盖增喜, 郭震, 杨挺, & 葛天雨. (2022). 华南中部地幔转换带厚度异常:海南地幔柱?. 地球物理学报, 65(10): 3871-3880. https://doi.org/10.6038/cjg2022P0338

潘谟晗, 杨挺, 林间, 张帆, 周志远, 李海勇, et al. (2021). 斑点火山的形成机制和岩石圈-软流圈边界 (LAB) 的性质. 地球科学, 46(3), 817-825. https://doi.org/10.3799/dqkx.2020.340

刘楷, 王宜志, 刘丹, 黄信锋, 吴越楚, 杨迪帆, & 杨挺. (2021). 低功耗海上仪器回收通信信标的研制. 集成技术, 10(2). https://doi.org/10.12146/j.issn.2095-3135.20201121001

陈洁, 陈永顺, 郭震, & 杨挺. (2020). 沿 107.6 E 南北向剖面鄂尔多斯地块及周缘地区地壳结构. 地球物理学报, 63(7), 2592-2604. https://doi.org/10.6038/cjg2020M0659

郑宏, 范建柯, 杨挺, 李翠琳, 王秀娟, & 董冬冬. (2020). 基于背景噪声互相关技术的雅浦俯冲带海底地震仪时间校正. 地球物理学进展, 35(2), 799-806. https://doi.org/10.6038/pg2020CC0512

司少坤, 刘保华, 刘晨光, 杨挺, & 封志兵. (2017). 未知 OBS 水平方位的 SKS 分裂参数测量. 地球物理学报, 60(3), 999-1006. https://doi.org/10.6038/cjg20170314

刘晨光, 华清峰, 裴彦良, 杨挺, 夏少红, 薛梅, et al. (2014). 南海海底天然地震台阵观测实验及其数据质量分析. 科学通报(16), 1542-1552. https://doi.org/10.1360/csb2014-59-16-1542

杨峰, 黄金莉, & 杨挺. (2010). 应用远震有限频率层析成像反演首都圈上地幔速度结构. 地球物理学报, 53(8), 1806-1816. https://doi.org/10.3969/j.issn.0001-5733.2010.08.006

杨挺. (2002). 城市局部地震灾害危害性指数及其在上海市的应用. 国际地震动态(2), 4-7.

杨挺, 季文贇, & 张叔英. (2001). 应用匹配滤波法估测水下介质声阻抗的初步研究. 声学学报, 26(3), 202-206.

火恩杰, 宋俊高, 朱元清, 严大华, & 杨挺. (2000). GIS 在城市防震减灾应急决策中的应用. 自然灾害学报, 9(3), 15-22.

宋俊高, 朱元清, 火恩杰, 严大华, & 杨挺. (2000). 上海市防震减灾应急决策信息系统——GIS 的应用. 地震学报, 22(4), 424-432.

肖兰喜, 朱元清, 李平, & 杨挺. (2000). 邢台地震前地壳形变异常的可能性物理机制. 地球物理学报,

杨挺. (2000). 城市局部地震灾害危害性指数 (ULEDRI) 及其在上海市的应用. 北京: 中国地震局地球物理研究所.

杨挺, 朱元清, & 宋俊高. (1998). 应用 GIS 进行城市震害预测的有利性. 灾害学, 13(3), 17-22.

杨挺, 朱元清, & 肖兰喜. (1998). 地震灾害损失估计和预测的研究现状. 1998 年中国地球物理学会第十四届学术年会论文集.

张叔英, 杨挺, & 马在田. (1998). 长江口与杭州湾海区水底浮泥地声模型及其声反射特性研究. 声学学报, 23(5), 385-393.

杨挺. (1997). 典型浅海地声模型下的反射波特性初步研究. 声学技术, 16(4), 198-201.

凌鸿烈, 孙耀秋, & 杨挺. (1997). 长江口和杭州湾浮泥声参数测量. 声学技术, 16(4), 194-197.

专利


[1]实用新型专利,刘丹,杨挺,王宜志,戴宇航,杜浩然.一种地震仪自动调平锁紧装置,专利号:ZL201721045119.6

[2]实用新型专利,王宜志,杨挺,刘丹,詹陈长,戴宇航.一种海上仪器回收定位搜寻系统,专利号:ZL201720809920.7

[3]实用新型专利,刘丹.一种海底地震仪用电磁释放装置及海底地震仪,专利号:ZL201820967615.5

[4]实用新型专利,刘丹,杨挺,王宜志,一种海底地震仪,专利号:ZL201820966822.9

[5]发明专利,刘丹,杨挺,海底地震仪,专利号:ZL201830252271.5

[6]发明专利,刘丹,一种海底地震仪安装架,专利号:ZL201820967614.0

[7]实用新型专利,刘丹,杨挺,一种地震仪调平锁紧机构,专利号:ZL201820966601.1

[8]发明专利,刘丹,伏林瑞,地震计耦合底座及海底地震仪,专利号:ZL201820967613.6

[9]发明专利,刘丹,地震仪,专利号:ZL201830310411.X

[10]发明专利,刘丹,王宜志,杨挺,一种地震仪,专利号:ZL201821000989.6

[11]发明专利,刘丹,伏林瑞,一种海底地震仪安装架及海底地震仪,专利号:ZL201821421371.7

[12]实用新型专利,刘丹,杨挺,王宜志,一种分体式海底地震仪,专利号:ZL201821423210.1

[13]实用新型专利,杨挺,刘丹,王宜志,一种自埋式海底地震仪,专利号:ZL201821439064.1

[14]实用新型专利,王宜志,杨挺,刘丹,黄信锋,黄志鹏,一种时钟同步电路、时钟同步方法和海底地震仪,专利号:CN109738954A

[15]实用新型专利,王宜志,杨挺,刘丹,一种海洋仪器回收指示装置及控制方法,专利号:CN110426715A

科研项目

国家自然基金项目

2021-2024 国家自然科学基金,重大研究计划重点项目,西太俯冲边缘斑点火山的形成机制:基于被动源OBS台阵观测的地震学约束 (批准号:92058209)
2017/01-2020/12 国家自然科学基金(面上): 南海残留洋脊的俯冲:基于海底地震观测的层析成像和各向异性约束 (批准号:41676033)
2012/01-2015/12 国家自然科学基金(重点):海陆联合天然地震观测研究南海岩石圈及上地幔结构与过程 (批准号:91128029)
2010/01-2013/12 国家自然科学基金(面上):南海之下转换带及深部地幔的地震学特征(批准号:41076019)
2009/01-2011/12 国家重点实验室自主项目:利用越南流动地震台站进行南海深部岩石圈结构研究(批准号:MG200905)
2016-2020 “全球变化与海气相互作用”专项:东亚大陆边缘现代地质过程与致灾机理—(参与)
2009-2011 “863”计划:大洋钻探(IODP)站位调查关键技术研究—(参与)
2007-2011 “973”计划:南海大陆边缘动力学及油气资源潜力 —(参与)


深圳市基础学科布局项目

2019/07-2024/04 深圳市科创委孔雀团队: 深海深地资源探测技术系统研发(合同号:KQTD20170810111725321)
2019/03-2022/03 深圳市科创委学科布局: 海底沉积物探测新方法研究(合同号:JCYJ20180504170422)
2018/07-2019/07 深圳市科创委个人创客: 低功耗全分量海底地震数据方位矫正及洋流噪音测量装置(合同号:GRCK2017082316230946)
2017/08-2019/07 深圳市科创委国际合作研究项目: 宽频带海底地震仪关键技术研发 (批准号:2017-173)
2017/05-2019/04 深圳市科创委自由探索项目 :利用海底界面波反演南海海底沉积层的物理性质(批准号:2017-131)
2016/09-2019/08 深圳发改委专项:深圳海底地震仪设备与技术工程实验室(深发改[2016]808号,902号)


其他

2019/12-2020/06 同济大学:宽频带地震仪数据采集器研发组装(合同号:OR1911027)
2010/09-2013/08 重点高校基本科研专项-印支地块岩石圈结构与南海扩张的“碰撞-挤出模型
2008-2010 浦江人才项目:三峡水库诱发地震与其次生地质灾害的关系研究
2008-2010 上海市教委创新重点项目:有限频率地震层析方法研究


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