代表性论著(Representative papers):
(1)海洋地质与地球物理(Marine Geology and Geophysics)
1. Li Y., Bott J., Liu S.W*., Tan P.C., Anikiev D., Scheck-Wenderoth M. 2026. Interactions between the Hainan Plume and Oceanic Lithosphere: Insights from 3D Lithospheric Structure of the South China Sea. Journal of Geophysical Research-Solid earth, 131, e2025JB031818, doi: 10.1029/2025JB031818.
2. Li Y., Zhong K., Liu S.W*., Su J.B., Xu B., Duan A.K. 2026. Revealing hidden magmatic underplating in the East China Sea Shelf Basin using 3D gravity modeling and its tectonic implications. Geophysical Journal International, 245: 1-17, https://doi.org/10.1093/gji/ggag105.
3. Li Y., Tan P.C*., Liu S.W*., 2026. Thick crust at Earth’s slowest spreading ridge: 3D gravity insights from Eurasian Basin, Arctic Ocean. Geophysical Research Letters, 53, e2025GL119292, doi: 10. 1029/2025GL119292.
4. Yang P.*, Pérez-Gussinyé M.*; Liu S.W.*; García-Pintado J.; RaghuRam G. 2025. Interactions between syn-rift magmatism and tectonic extension at intermediate rifted margins. Earth and Planetary Science Letters, 671, 119682, doi: 10.1016/j.epsl.2025.119682.
5. 李龑,牛雄伟,阮爱国,刘绍文,Haider S.W., 卫小冬. 2020. 洋中脊扩张速率对洋壳速度结构的约束. 地球物理学报,63(5): 1913-1926.
6. 蒋伟达,孙永福,刘绍文,董立峰,宋玉鹏. 2020.基于IDW的埕岛海域水下三角洲地形演变. 海洋科学进展,38(4): 697-707.
7. 甘军,吴迪,张迎朝,刘绍文*,郭明刚,李香兰,朱继田,熊小峰,王辉,尹宏伟. 2019. 琼东南盆地现今地层温度分布特征及油气地质意义.高校地质学报,25(6):952-960.
8. 蔡黎,李香兰,刘绍文*,朱继田,熊小峰,尹宏伟. 2019. 南海北部琼东南盆地岩石热物性特征. 高校地质学报,25(4): 538-547.
9. 李旭东,刘绍文*,王丽.2018. 江苏-南黄海地区地震活动的时空分布特征与孕震构造分析. 高校地质学报,24(4):551-562.
10. 徐璐,孙永福,刘绍文,张伟朋. 2018. 基于GIS实现湿陷作用对海岸带黄土微结构的影响研究. 海洋科学进展,36(3):423-434.
11. Wang Y.M., Liu S.W*, Hao F.F., Zhao Y.L., Hao C.Y. 2017. Geothermal investigation of the thickness of gas hydrate stability zone in the north continental margin of the South China Sea.Acta Oceanologica Sinica, 36(4):72-79.
12. Hu B., Wang L.S., Yan W.B., Liu S.W., Cai D.S., Zhang G,C., Zhong K., Pei J.X., Sun B. 2013. The tectonic evolution of the Qiongdongnan Basin in the northern margin of the South China Sea. Journal of Asian Earth Sciences, 77: 163-182.
13. Wang L.S., Liu S.W., Xiao W.Y., Li C., Li H., Luo Y.H., Cai D.S. 2002. Distribution feature of terrestrial heat flow densities in the Bohai basin, East China.Chinese Science Bulletin, 47(10):857-862.
14. 王颖,邹欣庆,殷勇,张永战,刘绍文. 2012.河海交互作用与黄东海域古扬子大三角洲体系研究. 第四纪研究, 32(6): 1055-1064.
15. 刘绍文,施小斌,王良书,等. 2006. 南海北部岩石圈热-流变结构和地球动力学研究进展. 海洋地质与第四纪地质, 26(4): 117-124.
16. 张功成,王良书,唐显春,刘绍文,赵志刚,王鹏,钟锴. 2011. 试论南中国海盆地新生代板块构造及盆地动力学.地质科学, 46(3): 638-652.
(2)沉积盆地热体制 (Geothermal regime of sedimentary basins)
1. Chen Y., Zhu W.J., Liu S.W*. 2026. Machine learning approach to predicting heat flow of the China Seas. Geo-Marine Letters, 10.1007/s00367-026-00847-7.
2. Duan A.K., Ren Z.Q., Liu S.W*. 2025. Heat flow and thermal structure of the East China Sea. Geothermics, 132, doi:10.1016/j.geothermics.2025.103427.
3. 徐波、李龑、刘绍文. 2025. 基于磁异常的居里面深度反演南黄海热流分布特征. 地球物理学报,68(12):4714-4728.
4. 段安康,李龑,刘绍文,钟锴. 2025. 东海陆架盆地现今地热特征及主控因素研究. 高校地质学报,31(6): 733-745.
5. 王一波,刘绍文,陈超强,姜光政,武金辉,郭兰泳,王亚奇,张慧慧,王朱亭,江晓雪,朱传庆,左银辉,胡杰,张超,何丽娟,胡圣标,庞忠和,汪集旸. 2024. 中国大地热流数据汇编(第五版).地球物理学报,67(11): 4233-4265.
6. 冯冠中, 刘绍文, 朱传庆,李香兰. 2024. 库车前陆盆地的热流与深部温度分布特征. 高校地质学报, 30(4): 460-475,.doi:10.16108/j.issn1006-7493.2023021.
7. Feng G Z,Liu S.W., Zhu W.J. 2023. Heat Flow and Deep Temperature of the Kuqa Foreland Bain, Northwestern China[C]// World Geothermal Congress 2023, Beijing, 2023, Sept. 4-6, 13pp.
8. Zhu W.J.,Liu S.W., Huang S.P. 2022. Heat Flow in the Asian continent and surrounding areas. International Journal of Terrestrial Heat Flow and Applied Geothermics, 5(1): 1-10.
9. Li X.L., Cai L., Liu S.W., Li X.D. 2020. Thermal properties of evaporitic rocks and its geothermal effects in the Kuqa Foreland Basin, northwest China. Geothermics, 88, doi: 10.1016/j.geothermics.2020.101898.
10. Li X. L., Liu S.W*, Feng C.G. 2019. Thermal properties of sedimentary rocks in the Tarim Basin, northwestern China. AAPG Bulletin, 103(7): 1605-1624, doi: 10.1306/11211817179.
11. Liu S.W., Lei X., Feng C.G., Hao C.Y. 2016. Estimate of subsurface formation temperature in the Tarim Basin, northwest China: Implications for hydrocarbon generation and/or preservation. International Journal of Earth Sciences, 105(5): 1329-1351.
12. Liu S.W., Lei X., Wang L.S., 2015. New heat flow determinations in the northern Tarim craton, Northwest China. Geophysical Journal International, 200(2): 1194-1204.
13. Liu S.W., Feng C.G., Wang L.S., Li C. 2011.Measurements and analysis of thermal conductivity of rocks in Tarim basin, NW China. Acta Geologica Sinica-English Version, 85(3):598-609.
14. Feng C.G., Liu S.W.*, Wang L.S., Li C. 2009. Present-day geothermal characteristics of Tarim basin, NW China. Chinese J. of Geophysics, 52(6):1237-1250.
15. Gong Y.L., Wang L.S., Liu S.W., Li H., Liu B., Cai J.G., 2004. Distribution characteristics of heat flow densities in Jiyang Depression, east China, Science in China (D), 47(9):804-812.
16. Wang L.S., Li C., Liu S.W., Li H., Wang Q., Ge R. 2003.Characteristics of Geotemperature gradient distribution in the Kuqa foreland basin of North edge of the Tarim, western China. Chinese J. of Geophysics, 46(3):575-581.
17. Gong Y.L., Wang L.S., Liu S.W., Guo L.Z., Li H., Cai J.G. 2003. Distribution feature of Geo-temperature field in Jiyang depression, Shengli oilfield, Eastern China. Chinese J. of Geophysics, 46(5): 931-938.
(3)岩石圈热结构和流变学(Thermal Structure and Rheology of the Lithosphere)
1. Yang P., Liu S.W*. 2026. Crustal rheology and seismicity in northeast China: Far-filed responses of the Pacific Plate subduction. Journal of Geophysical Research-Solid Earth, 131,e2024JB031051, doi: 10.1029/2024JB031051.
2. Zhu W.J., Liu S.W*.2025. Heat flow and thermal structure of the South China Sea. Earth-Science Reviews, 261, 105028, http://doi.org/10.1016/j.earscirev.2024.105028.
3. Yang P., Liu S.W*.2024. Heterogeneities of the lithospheric thermal structure and rheology control Cenozoic intracontinental deformation in southeast China. Tectonophysics, 870, 230153, doi:10.1016/j.tecto.2023.230153.
4. 杨鹏,刘绍文.2022. 中国东南地区岩石圈热结构特征及其构造意义.高校地质学报,28(5): 698-708.
5. 刘绍文,李香兰,郝春艳. 2017.塔里木盆地的热流、深部温度和岩石圈热结构. 地学前缘,24(3):41-55, doi: 10.13745/j.esf.2017.03.004.
6. 刘绍文. 2015. 岩石圈热--流变结构与大陆动力学. 见:汪集旸等. 地热学及其应用. 北京:科学出版社,227-234.
7. Mao X.L., Wang Q.*, Liu S.W.*, Xu M.J., Wang L.S. 2012. Effective elastic thickness of the lithosphere of south china and surrounding regions. Tectonophysics, 550:47-56.
8. 刘绍文,王良书,贾承造,冯昌格. 2008. 中国中西部盆地区岩石圈热-流变学结构及其对前陆盆地成因演化的制约. 地学前缘,15(3):113-122.
9. 刘绍文,王良书,李成,等. 2006. 塔里木盆地岩石圈热-流变结构和新生代热体制. 地质学报,80(3): 344-350.
10. Liu S.W., Wang L.S., Li C., Gong Y.L., Han Y.B., Cai J.G. 2005. Thermal-rheological structure of lithosphere beneath Jiyang Depression, Eastern China. Science in China (D), 48(10):1569-1584.
11. Liu S.W., Wang L.S., Li C. Li H., Liu B., Jia C.Z., Wei G.Q. 2004. Thermal-rheological structure of the lithosphere beneath north flank of Tarim basin, Western China: Implications for geodynamics. Science in China (D), 47(7): 659-672.
