Potential triggers and development processes of submarine landslides in the Xisha Trough Basin, South China Sea

被引:2
作者
Zhang, Yunshan [1 ,2 ,3 ]
Wu, Nan [4 ]
Qin, Xuwen [5 ]
Wu, Tingting [6 ]
Wei, Jiangong [2 ,6 ,7 ,8 ]
Wang, Pingkang [5 ]
Lv, Wenchao [5 ]
Jia, Yonggang [1 ,9 ]
机构
[1] Ocean Univ China, Shandong Prov Key Lab Marine Environm & Geol Engn, Qingdao, Peoples R China
[2] China Geol Survey, Zhoushan Field Sci Observat & Res Stn Marine Geoha, Zhoushan, Peoples R China
[3] Ocean Univ China, Sanya Ocean Res Inst, Sanya, Hainan, Peoples R China
[4] Tongji Univ, State Key Lab Marine Geol, Shanghai, Peoples R China
[5] China Geol Survey, Beijing, Peoples R China
[6] Guangzhou Marine Geol Survey, MLR Key Lab Marine Mineral Resources, Guangzhou, Peoples R China
[7] Guangzhou Marine Geol Survey, Sanya Inst South China Sea Geol, Sanya, Peoples R China
[8] China Geol Survey, Acad South China Sea Geol Sci, Sanya, Peoples R China
[9] Qingdao Natl Lab Marine Sci & Technol, Lab Marine Geol, Qingdao, Shandong, Peoples R China
基金
中国国家自然科学基金;
关键词
Submarine landslides; Submarine canyons; Retrogressive failure; Xisha Trough Basin; South China Sea; MASS-TRANSPORT COMPLEXES; QIONGDONGNAN BASIN; CONTINENTAL-SLOPE; SEISMIC CHARACTERISTICS; CENTRAL CANYON; MORPHOLOGY; EVOLUTION; ORIGIN; SUBSIDENCE; DEPOSITS;
D O I
10.1016/j.geomorph.2023.109022
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
Both submarine landslides and submarine canyons can transfer large amounts of terrigenous quantities from the continental shelf to the deep sea. In some cases, they can have a close relationship to their spatial distribution, formation and evolution. Submarine landslides on the shelf-slope can provide early depressions for submarine canyons, representing the early stage of submarine canyons. The continuous downcutting process during the evolution of submarine canyons can steepen the gradient of the canyon sidewalls, which can lead to the occurrence of submarine landslides. However, the role of submarine canyons in the initiation of slope failure has been overlooked. In this study, high-resolution multibeam bathymetry data, submarine image data and 2-D seismic data were used to investigate two adjacent submarine landslides developed on the northern slope of the Xisha Trough and the spatiotemporal relationship of these landslides to the Central Canyon. We identified a steep downslope between the submarine landslides and the Central Canyon. The Central Canyon formation age was much earlier than those of the submarine landslides. The Central Canyon is filled with modern submarine landslide deposits. The characteristics of the multiple failure scarps indicate retrogressive failure of the submarine landslides. We suggest that the submarine landslides developed on the northern slope of the Xisha Trough Basin have finally been captured by the Central Canyon. We determined that the emptying of sediments at the end of the northern slope of the Xisha Trough Basin caused by the development of the Central Canyon caused the end of the northern slope of the Xisha Trough Basin to lose support, which may have affected the slope stability and could have even played a role in the initiation of submarine landslides. Consequently, the slope area along the Central Canyon may be susceptible to slope instability and slope failure processes.
引用
收藏
页数:19
相关论文
共 63 条
[31]   The Danube submarine canyon (Black Sea): morphology and sedimentary processes [J].
Popescu, I ;
Lericolais, G ;
Panin, N ;
Normand, A ;
Dinu, C ;
Le Drezen, E .
MARINE GEOLOGY, 2004, 206 (1-4) :249-265
[32]  
Posamentier H.W., 2011, Special Publication - Society for Sedimentary Geology, V96, P7, DOI 10.2110/ sepmsp.096.007
[33]  
PRATSON LF, 1994, AAPG BULL, V78, P1483
[34]   THE ROLE OF MASS WASTING IN THE PROGRESSIVE DEVELOPMENT OF SUBMARINE CHANNELS (ESPIRITO SANTO BASIN, SE BRAZIL) [J].
Qin, Yongpeng ;
Alves, Tiago M. ;
Constantine, Jose ;
Gamboa, Davide .
JOURNAL OF SEDIMENTARY RESEARCH, 2017, 87 (05) :500-516
[35]   Mass transport deposits and processes in the north slope of the Xisha Trough, northern South China Sea [J].
Qin Zhiliang ;
Wu Shiguo ;
Wang Dawei ;
Li Wei ;
Gong Shaojun ;
Mi Lijun ;
Spence, George .
ACTA OCEANOLOGICA SINICA, 2015, 34 (09) :117-125
[36]   Characterising the nature, evolution and origin of detachment fault in central depression belt, Qiongdongnan Basin of South China Sea: evidence from seismic reflection data [J].
Ren Jianye ;
Zhang Daojun ;
Tong Dianjun ;
Huang Anmin ;
Wang Yahui ;
Lei Chao ;
Zuo Qianmei ;
Zhao Yanghui ;
He Weijun ;
Yang Linlong .
ACTA OCEANOLOGICA SINICA, 2014, 33 (12) :118-126
[37]   Retrogressive failures recorded in mass transport deposits in the Ursa Basin, Northern Gulf of Mexico [J].
Sawyer, Derek E. ;
Flemings, Peter B. ;
Dugan, Brandon ;
Germaine, John T. .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2009, 114
[38]  
Scarselli N., 2020, Regional geology and tectonics: Principles of geologic analysis volume 1: Principles of geologic analysis. BV, V2nd edn., P417, DOI [10.1016/B978-0-444-64134-2.00015-8, DOI 10.1016/B978-0-444-64134-2.00015-8]
[39]   Tectonic evolution, geomorphology and influence of bottom currents along a large submarine canyon system: The Sao Vicente Canyon (SW Iberian margin) [J].
Serra, Cristina S. ;
Martinez-Loriente, Sara ;
Gracia, Eulalia ;
Urgeles, Roger ;
Vizcaino, Alexis ;
Perea, Hector ;
Bartolome, Rafael ;
Pallas, Raimon ;
Lo Iacono, Claudio ;
Diez, Susana ;
Danobeitia, Juanjo ;
Terrinha, Pedro ;
Zitellini, Nevio .
MARINE GEOLOGY, 2020, 426
[40]   SUBMARINE CANYONS [J].
SHEPARD, FP .
EARTH-SCIENCE REVIEWS, 1972, 8 (01) :1-&