王光增
副教授
所属大学: 中国海洋大学
所属学院: 海洋科学与探测技术教育部重点实验室
个人简介
学习经历 中国石油大学,地质学,理学学士,中国青岛,2006.09-2010.07 中国石油大学,构造地质学,理学硕士,中国青岛,2010.09-2012.07 中国石油大学, 构造地质学,理学博士,中国青岛,2012.09-2017.07 伦敦大学学院,岩石地球物理,联培博士,英国伦敦,2014.09-2016.02 · 工作简历 2017.07-2020.12,中国海洋大学海洋科学博士后流动站,博士后 2020.12-至今,中国海洋大学,海底科学与探测技术教育部重点实验室,副教授 · 国家级出版社出版的重要专著 2020年,李三忠,朱俊江,王光增,姜素华,许立青,李园洁,等编著,《洋底动力学》技术篇,北京:科学出版社. 主持的重要科研项目1)国家自然科学基金面上项目, 走滑派生构造差异演化主控因素的砂箱实验研究:以郯庐断裂渤海-山东段张扭派生的构造为例, (42072235, 2021-2024), 项目主持人 2)中国博士后科学基金面上项目,区域张扭背景下叠接带走滑派生构造差异演化成因探究, (861705020051, 2017-2019), 项目主持人 近5年发表论文35篇,其中SCI收录18篇,EI收录10篇。
研究领域
(1)洋陆过渡带与中新生代含油气盆地构造解析:西太平洋洋陆过渡带含油气盆地构造研究(渤海湾盆地、东海陆架盆地和珠江口盆地等新生代盆地);中国东部中-新生代陆内构造变形与西太平洋板缘作用的联系; (2)走滑派生构造差异演化机理探究:以数值模拟和砂箱物理模拟为手段,对中国东部中新生代扭性盆地(渤海湾盆地、东海陆架盆地和珠江口盆地等新生代盆地)内发育的各类走滑派生构造的差异演化机理进行探究。 (3)构造地貌与源-汇演化研究:基于碎屑锆石U-Pb定年和低温热年代学(如裂变径迹)等资料,利用机器学习和地貌模拟等技术,探究研究区的构造地貌演化历史,再次基础上,通过物源对比研究,确定研究区源-汇演化过程。
洋底动力学、构造地质学、油气区构造解析
近期论文
[1] Zhu M., Wang G.*, Li S., Liu Y., Wang P., Guo L., Zhao L., Chen X., Song T., 2024. An overview of structures associated with bends of strike-slip faults: Focus on analogue and numerical models. Marine and Petroleum Geology, 167, 106983. [2] Wang, G.*, Li, S.*, Suo, Y., Peng, G., Wang, P., Cheng, H., Liu, Z., Liu, Y., Bukhari, S.W.H., Liu, Z., Diao, Y., Zhan, H. and Zhu, M., 2023. Cenozoic source-to-sink driven by tectono-geomorphic evolution: A systematic detrital zircon U-Pb analysis in the central northern South China Sea. Earth-Science Reviews. 239: 104365. [3] Zhan H, Wang G*, Peng G, Suo Y*, Wang P, Du X, Zhou J, Li S and Zhu D. Cenozoic evolution of the Yangjiang-Yitong’ansha fault zone in the northern South China Sea: Evidence from 3D seismic data. 2023. Frontier in Earth Science. 10:1070004. [4] Wang, G.Z., Li, S.Z., Suo, Y.H., Zhang, X.Q., Zhang, Z., Wang, D.Y., Liu, Z., Liu, Y.M., Zhou, J., Wang, P.C., Guo, L.L., 2022. Deep-shallow coupling response of the Cenozoic Bohai Bay Basin to plate interactions around the Eurasian Plate. Gondwana Research. 102:180-199. https://doi.org/10.1016/j.gr.2020.09.002 [5] Ju, Y.W. *, Wang, G.Z. *, Li, S.Z., Sun, Y., Suo, Y.H., Somerville, I.D., Li, W.Y., He, B.Z., Zheng, M.L., Yu, K.. 2022. Evolution mechanism and geodynamic-based classification of basins in the Earth system. Gondwana Research. 102:200-228. https://doi.org/10.1016/j.gr.2020.08.017. [6] Wang, G.Z., Li, S.Z., Li, X.Y., Zhao, W.Z., Zhao, S.J., Suo, Y.H., Liu, X.G., Somerville, I.D., Liu, Y.M., Wang, Z.C., 2019. Destruction effect on Meso-Neoproterozoic oil-gas traps derived from Meso-Cenozoic deformation in the North China Craton. Precambrian Research, https://doi.org/10.1016/j.precamres.2019.105427 [7] Wang, G.Z., Li, S.Z., Wu, Z.P., Suo, Y.H., Guo, L.L. and Wang, P.C., 2019. Early Paleogene strike-slip transition of the Tan-Lu Fault Zone across the southeast Bohai Bay Basin: Constraints from fault characteristics in its adjacent basins. Geological Journal, 54(2), 835-849. [8] Pérez-Flores, P., Wang, G.Z., Mitchell, T.M., Meredith, P.G., Nara, Y., Sarkar, V. and Cembrano, J., 2017. The effect of offset on fracture permeability of rocks from the Southern Andes Volcanic Zone, Chile. Journal of Structural Geology, 104, 142-158. [9] Wang, G.Z., Mitchell, T.M., Meredith, P.G., Nara, Y. and Wu, Z.P. 2016. Influence of gouge thickness and grain size on permeability of macro-fractured basalt. Journal of Geophysical Research Solid Earth, 121(12), 8472-8487.