[1] |
WANG Jiahao, HU Xiumian, JIANG Jingxin, MA Chao, MA Pengfei.
High-resolution reconstruction of carbonate compensation depth in the South China Sea since 27 Ma
[J]. Earth Science Frontiers, 2024, 31(1): 500-510.
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[2] |
CHEN Wenlin, ZHENG Qiugen, HUANG Yiming, ZHANG Yi, LIN Changsong.
Recover the Liyue Basin position in the southern margin of the South China Sea before seafloor spreading
[J]. Earth Science Frontiers, 2023, 30(5): 420-429.
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[3] |
LIANG Guanghe.
Continental drift process revealed by high precision seismic survey in the central basin of the South China Sea
[J]. Earth Science Frontiers, 2023, 30(5): 430-449.
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[4] |
WANG Hairong, YU Chengqian, FAN Tailiang, CHAI Jingchao, WANG Hongyu, GAO Hongfang.
Spatio-temporal relationship between two kinds of deep-water sedimentation on the Ying-Qiong slope, South China Sea
[J]. Earth Science Frontiers, 2023, 30(4): 196-208.
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[5] |
LIU Xiaolei, LI Weijia, LU Yang, LI Xingyu, ZHANG Shuyu, YU Heyu.
Distribution characteristics and formation mechanism of sediment waves on the continental margin of the northern South China Sea—a literature research
[J]. Earth Science Frontiers, 2023, 30(2): 81-95.
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[6] |
JI Chunsheng, JIA Yonggang, ZHU Junjiang, HU Naili, FAN Zhihan, HU Cong, FENG Xuezhi, YU Heyu, LIU Bo.
R&D and application of the Abyssal Bottom Boundary Layer Observation System (ABBLOS)
[J]. Earth Science Frontiers, 2022, 29(5): 265-274.
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[7] |
JIA Yonggang, RUAN Wenfeng, HU Naili, QIAO Yue, LI Zhenghui, HU Cong.
Hydrate dissociation on the northern slope of the South China Sea: Potential effects from climate warming in the current warm period
[J]. Earth Science Frontiers, 2022, 29(4): 191-201.
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[8] |
LIANG Guanghe.
Continental drift process revealed by high precision seismic survey in the central basin of the South China Sea
[J]. Earth Science Frontiers, 2022, 29(4): 293-306.
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[9] |
DONG Hongkun, WAN Shiming, LIU Chang, ZHAO Debo, ZENG Zhigang, LI Anchun.
Mineralogical and geochemical constraints on the origin of rhythmic layering of Late Miocene reddish-brown and greenish-gray sediments in the northern South China Sea
[J]. Earth Science Frontiers, 2022, 29(4): 42-54.
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[10] |
WANG Mingjian, PAN Jun, GAO Hongfang, HUANG Long, LI Xia.
Mesozoic basin evolution and hydrocarbon potential in the northern South China Sea and southern East China Sea
[J]. Earth Science Frontiers, 2022, 29(2): 294-302.
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[11] |
YANG Wenqing, XIE Zhouqing, SUN Liguang.
Research progress in the reconstruction of paleotsunami in the South China Sea and the tsunami deposit characteristics
[J]. Earth Science Frontiers, 2021, 28(2): 246-257.
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[12] |
SUN Qiliang, XIE Xinong, WU Shiguo.
Submarine landslides in the northern South China Sea: characteristics, geohazard evaluation and perspectives
[J]. Earth Science Frontiers, 2021, 28(2): 258-270.
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[13] |
LI Shun, WU Cong, CHEN Chixin, JING Xia, LI Xuejie, CAI Guanqiang, ZHONG Hexian, ZHANG Jiangyong, LI Bo, ZHANG Jinpeng.
High-resolution spatial distributions of diatoms in surface sediments and their correlations with environmental factors in the central and northern South China Sea
[J]. Earth Science Frontiers, 2020, 27(6): 241-254.
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[14] |
QU Huaxiang,HUANG Baoqi.
Paleoclimate change reflected by element ratios of terrigenous sediments from deep-sea oxygen isotope MIS6 to MIS5 at MD12-3432 station in northern South China Sea
[J]. Earth Science Frontiers, 2019, 26(3): 236-242.
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[15] |
DING Hanghang, DING Weiwei, FANG Yinxia.
Morphological characteristics and control factors of oceanic basement in the Southwest Sub-Basin, South China Sea.
[J]. Earth Science Frontiers, 2019, 26(2): 222-232.
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