Journal of Tropical Oceanography ›› 2021, Vol. 40 ›› Issue (2): 90-102.doi: 10.11978/2020019CSTR: 32234.14.2020019
• Marine Geology • Previous Articles Next Articles
HU Shouxiang1,2,3(), YAO Yantao1,2, LI Jian1,2,3, LI Shuang1,2,3, WANG Ling1,2,3, ZHAN Wenhuan1,2,3, LI Wei1,2,3(
), FENG Yingci1,2
Received:
2020-02-23
Revised:
2020-04-10
Online:
2021-03-10
Published:
2020-04-16
Contact:
LI Wei
E-mail:hushouxiang16@mails.ucas.ac.cn;wli@scsio.ac.cn
Supported by:
CLC Number:
HU Shouxiang, YAO Yantao, LI Jian, LI Shuang, WANG Ling, ZHAN Wenhuan, LI Wei, FENG Yingci. Study on fault activities since the Late Miocene in the continental shelf of Qiongdongnan Basin[J].Journal of Tropical Oceanography, 2021, 40(2): 90-102.
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Tab. 1
Summary of T-Z diagram parameters of faults in the study area"
地层 | 参数 | 断层A | 断层C | 断层B | 平均 |
---|---|---|---|---|---|
T20—海底 | 变异系数 | 0.53 | 0.74 | 0.68 | 0.65 |
断层落差/ms | 28.39 | 14.26 | 6.61 | 16.42 | |
T-Z图折线斜率 | 0.05 | 0.09 | / | 0.05 | |
T30—T20 | 变异系数 | 0.11 | 0.31 | 0.30 | 0.24 |
断层落差/ms | 63.10 | 29.85 | 17.82 | 36.92 | |
T-Z图折线斜率 | 0.06 | 0.05 | 0.05 | 0.05 | |
T40—T30 | 变异系数 | 0.15 | 0.08 | 0.14 | 0.13 |
断层落差/ms | 73.43 | 58.33 | 28.76 | 53.51 | |
T-Z图折线斜率 | -0.04 | 0.03 | 0.001 | -0.003 |
[1] | 蔡佳, 2009. 琼东南盆地古近系古地貌恢复及其对层序样式和沉积特征的控制[D]. 武汉: 中国地质大学: 1-216. |
CAI JIA, 2009. Paleo-morphologic restoration of paleogene in Qiongdongnan Basin and its control on sequence architecture and sedimentary characteristics[D]. Wuhan: China University of Geosciences: 1-216 (in Chinese with English abstract). | |
[2] | 何丽娟, 熊亮萍, 汪集旸, 等, 2000. 莺歌海盆地构造热演化模拟研究[J]. 中国科学(D辑: 地球科学), 30(4):415-419. |
HE LIJUAN, XIONG LIANGPING, WANG JIYANG, et al, 2001. Tectono-thermal modeling of the Yinggehai Basin, South China Sea[J]. Science in China Series D: Earth Sciences, 44(1):7-13 (in Chinese with English abstract). | |
[3] | 何云龙, 2012. 琼东南盆地陆坡区重力流沉积特征及其成因机制[D]. 武汉: 中国地质大学: 1-148. |
HE YUNLONG, 2012. The characteristics and mechanism of sediment gravity flow in slope area in Qiongdongnan Basin[D]. Wuhan: China University of Geosciences: 1-148 (in Chinese with English abstract). | |
[4] | 李居云, 2015. 琼东南盆地北部坳陷带构造演化及其对煤系烃源岩的控制[D]. 徐州: 中国矿业大学: 1-98. |
LI JUYUN, 2015. Tectonic evolution and its control on coal source rocks in northern depression belt of Qiongdongnan Basin[D]. Xuzhou: China University of Mining and Technology: 1-98 (in Chinese with English abstract). | |
[5] | 李绪宣, 朱光辉, 2005. 琼东南盆地断裂系统及其油气输导特征[J]. 中国海上油气, 17(1):1-7. |
LI XUXUAN, ZHU GUANGHUI, 2005. The fault system and its hydrocarbon carrier significance in Qiongdongnan Basin[J]. China Offshore Oil and Gas, 17(1):1-7 (in Chinese with English abstract). | |
[6] | 梁富康, 于兴河, 李先平, 等, 2011. 冀中坳陷深县凹陷的生长断层特点及其对沉积的控制作用[J]. 中国地质, 38(2):263-270. |
LIANG FUKANG, YU XINGHE, LI XIANPING, et al, 2011. Growth faults in Shenxian depression and their control over the sedimentation[J]. Geology in China, 38(2):263-270 (in Chinese with English abstract). | |
[7] | 任金锋, 2016. 琼东南盆地陆架边缘斜坡地形的定量演化过程[D]. 武汉: 中国地质大学: 1-184. |
REN JINFENG, 2016. The quantitative evolution of shelf-margin clinoforms in the Qiongdongnan Basin[D]. Wuhan: China University of Geosciences: 1-184 (in Chinese with English abstract). | |
[8] | 孙珍, 钟志洪, 周蒂, 等, 2003. 红河断裂带的新生代变形机制及莺歌海盆地的实验证据[J]. 热带海洋学报, 22(2):1-9. |
SUN ZHEN, ZHONG ZHIHONG, ZHOU DI, et al, 2003. Deformation mechanism of red river fault zone during cenozoic and experimental evidences related to Yinggehai Basin formation[J]. Journal of Tropical Oceanography, 22(2):1-9 (in Chinese with English abstract). | |
[9] | 谢文彦, 张一伟, 孙珍, 等, 2007. 琼东南盆地断裂构造与成因机制[J]. 海洋地质与第四纪地质, 27(1):71-78. |
XIE WENYAN, ZHANG YIWEI, SUN ZHEN, et al, 2007. Characteristics and formation mechanism of faults in Qiongdongnan Basin[J]. Marine Geology & Quaternary Geology, 27(1):71-78 (in Chinese with English abstract). | |
[10] | 谢玉洪, 童传新, 范彩伟, 等, 2015. 琼东南盆地断裂系统特征与演化[J]. 大地构造与成矿学, 39(5):795-807. |
XIE YUHONG, TONG CHUANXIN, FAN CAIWEI, et al, 2015. Characteristics and evolution of fault system in Qiongdongnan Basin[J]. Geotectonica et Metallogenia, 39(5):795-807 (in Chinese with English abstract). | |
[11] | 徐果明, 姚华建, 朱良保, 等, 2007. 中国西部及其邻域地壳上地幔横波速度结构[J]. 地球物理学报, 50(1):193-208. |
XU GUOMING, YAO HUAJIAN, ZHU LIANGBAO, et al, 2007. Shear wave velocity structure of the crust and upper mantle in western China and its adjacent area[J]. Chinese Journal of Geophysics, 50(1):193-208 (in Chinese with English abstract). | |
[12] | 徐子英, 孙珍, 2015. 琼东南盆地西南部反转构造发育机制物理模拟[J]. 海洋地质前沿, 31(8):47-52. |
XU ZIYING, SUN ZHEN, 2015. Analogue modeling of reversed structural deformation in the southwestern Qiongdongnan Basin[J]. Marine Geology Frontiers, 31(8):47-52 (in Chinese with English abstract). | |
[13] | 袁玉松, 杨树春, 胡圣标, 等, 2008. 琼东南盆地构造沉降史及其主控因素[J]. 地球物理学报, 51(2):376-383. |
YUAN YUSONG, YANG SHUCHUN, HU SHENGBIAO, et al, 2008. Tectonic subsidence of Qiongdongnan Basin and its main control factors[J]. Chinese Journal of Geophysics, 51(2):376-383 (in Chinese with English abstract). | |
[14] | 张功成, 王璞珺, 吴景富, 等, 2015. 边缘海构造旋回: 南海演化的新模式[J]. 地学前缘, 22(3):27-37. |
ZHANG GONGCHENG, WANG PUJUN, WU JINGFU, et al, 2015. Tectonic cycle of marginal oceanic basin: a new evolution model of the South China Sea[J]. Earth Science Frontiers, 22(3):27-37 (in Chinese with English abstract). | |
[15] | 张焱林, 刘晓峰, 郭忻, 2010. 高分辨率断层落差图的基本原理及其应用[J]. 断块油气田, 17(2):181-184. |
ZHANG YANLIN, LIU XIAOFENG, GUO XIN, 2010. Principles and application of high resolution fault throw plot[J]. Fault-Block Oil and Gas Field, 17(2):181-184 (in Chinese with English abstract). | |
[16] | 赵孟为, 1989. 断层生长指数探讨[J]. 石油实验地质, 11(3):250-254. |
ZHAO MENGWEI, 1989. Discussion on the growth index of fault[J]. Petroleum Geology & Experiment, 11(3):250-254 (in Chinese with English abstract). | |
[17] | 郑勇, 傅容珊, 熊熊, 2006. 中国大陆及周边地区现代岩石圈演化动力学模拟[J]. 地球物理学报, 49(2):415-427. |
ZHENG YONG, FU RONGSHAN, XIONG XIONG, 2006. Dynamic simulation of lithospheric evolution from the modern China mainland and its surrounding areas[J]. Chinese Journal of Geophysics, 49(2):415-427 (in Chinese with English abstract). | |
[18] |
ALLEN C R, GILLESPIE A R, YUAN HAN, et al, 1984. Red River and associated faults, Yunnan Province, China: quaternary geology, slip rates, and seismic hazard[J]. GSA Bulletin, 95(6):686-700.
doi: 10.1130/0016-7606(1984)95<686:RRAAFY>2.0.CO;2 |
[19] | BAUDON C, CARTWRIGHT J, 2008a. The kinematics of reactivation of normal faults using high resolution throw mapping[J]. Journal of Structural Geology, 30(8):1072-1084. |
[20] | BAUDON C, CARTWRIGHT J A, 2008b. 3D seismic characterisation of an array of blind normal faults in the Levant Basin, Eastern Mediterranean[J]. Journal of Structural Geology, 30(6):746-760. |
[21] | BEN-AVRAHAM Z, UYEDA S, 1973. The evolution of the China Basin and the mesozoic paleogeography of Borneo[J]. Earth and Planetary Science Letters, 18(2):365-376. |
[22] | BERTOK C, MARTIRE L, PEROTTI E, et al, 2012. Kilometre-scale palaeoescarpments as evidence for Cretaceous synsedimentary tectonics in the External Briançonnais Domain (Ligurian Alps, Italy)[J]. Sedimentary Geology, 251- 252: 58-75. |
[23] | BRIAIS A, PATRIAT P, TAPPONNIER P, 1993. Updated interpretation of magnetic anomalies and seafloor spreading stages in the south China Sea: implications for the Tertiary tectonics of Southeast Asia[J]. Journal of Geophysical Research, 98(B4):6299-6328. |
[24] | CARTWRIGHT J, BOUROULLEC R, JAMES D, et al, 1998. Polycyclic motion history of some Gulf Coast growth faults from high-resolution displacement analysis[J]. Geology, 26(9):819-822. |
[25] | CLIFT P D, SUN ZHEN, 2006. The sedimentary and tectonic evolution of the Yinggehai-Song Hong basin and the southern Hainan margin, South China Sea: implications for Tibetan uplift and monsoon intensification[J]. Journal of Geophysical Research, 111(B6):B06405. |
[26] | HENSTRA G A, ROTEVATN A, GAWTHORPE R L, et al, 2015. Evolution of a major segmented normal fault during multiphase rifting: the origin of plan-view zigzag geometry[J]. Journal of Structural Geology, 74: 45-63. |
[27] | JACKSON C A L, ROTEVATN A, 2013. 3D seismic analysis of the structure and evolution of a salt-influenced normal fault zone: a test of competing fault growth models[J]. Journal of Structural Geology, 54: 215-234. |
[28] | JACKSON C A L, BELL R E, ROTEVATN A, et al, 2017. Techniques to determine the kinematics of synsedimentary normal faults and implications for fault growth models[J]. Geological Society, London, Special Publications, 439(1):187-217. |
[29] | LEE T Y, LAWVER L A, 1994. Cenozoic plate reconstruction of the South China Sea region[J]. Tectonophysics, 235(1-2):149-180. |
[30] | LEE T Y, LAWVER L A, 1995. Cenozoic plate reconstruction of Southeast Asia[J]. Tectonophysics, 251(1-4):85-138. |
[31] | LÜDMANN T, WONG H K, 1999. Neotectonic regime on the passive continental margin of the northern South China Sea[J]. Tectonophysics, 311(1-4):113-138. |
[32] |
MANSFIELD C S, CARTWRIGHT J A, 1996. High resolution fault displacement mapping from three-dimensional seismic data: evidence for dip linkage during fault growth[J]. Journal of Structural Geology, 18(2-3):249-263.
doi: 10.1016/S0191-8141(96)80048-4 |
[33] |
MILLER K G, KOMINZ M A, BROWNING J V, et al, 2005. The Phanerozoic record of global sea-level change[J]. Science, 310(5752):1293-1298.
doi: 10.1126/science.1116412 pmid: 16311326 |
[34] | MURAOKA H, KAMATA H, 1983. Displacement distribution along minor fault traces[J]. Journal of Structural Geology, 5(5):483-495. |
[35] | REN JINFENG, WANG HUA, SUN MING, et al, 2014a. Sequence stratigraphy and sedimentary facies of Lower Oligocene Yacheng Formation in deepwater area of Qiongdongnan Basin, Northern South China Sea: implications for coal-bearing source rocks[J]. Journal of Earth Science, 25(5):871-883. |
[36] | REN JIANYE, ZHANG DAOJUN, TONG DIANJUN, et al, 2014b. 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]. Acta Oceanologica Sinica, 33(12):118-126. |
[37] | REPLUMAZ A, LACASSIN R, TAPPONNIER P, et al, 2001. Large river offsets and Plio‐Quaternary dextral slip rate on the Red River fault (Yunnan, China)[J]. Journal of Geophysical Research, 106(B1):819-836. |
[38] | SUN ZHEN, ZHOU DI, ZHONG ZHIHONG, et al, 2003. Experimental evidence for the dynamics of the formation of the Yinggehai basin, NW South China Sea[J]. Tectonophysics, 372(1-2):41-58. |
[39] | TAPPONNIER P, PELTZER G, LE DAIN A Y, et al, 1982. Propagating extrusion tectonics in Asia: new insights from simple experiments with plasticine[J]. Geology, 10(12):611-616. |
[40] | TAPPONNIER P, LACASSIN R, LELOUP P H, et al, 1990. The Ailao Shan/Red River metamorphic belt: tertiary left-lateral shear between Indochina and South China[J]. Nature, 343(6257):431-437. |
[41] | TAYLOR S K, NICOL A, WALSH J J, 2008. Displacement loss on growth faults due to sediment compaction[J]. Journal of Structural Geology, 30(3):394-405. |
[42] | THORSEN C E, 1963. Age of growth faulting in Southeast Louisiana[J]. GCAGS Transactions, 13: 103-110. |
[43] | TRIBOVILLARD N, SANSJOFRE P, ADER M, et al, 2012. Early diagenetic carbonate bed formation at the sediment-water interface triggered by synsedimentary faults[J]. Chemical Geology, 300-301: 1-13. |
[44] |
WANG DAWEI, WU SHIGUO, QIN ZHILIANG, et al, 2013. Seismic characteristics of the Huaguang mass transport deposits in the Qiongdongnan Basin, South China Sea: implications for regional tectonic activity[J]. Marine Geology, 346: 165-182.
doi: 10.1016/j.margeo.2013.09.003 |
[45] | WANG DAWEI, WU SHIGUO, LI CHUNFENG, et al, 2016. Submarine slide evidence for late Miocene strike-slip reversal of the Red River Fault[J]. Science China Earth Sciences, 59(11):2231-2239. |
[46] | WANG PEILING, LO C H, LEE T Y, et al, 1998. Thermo- chronological evidence for the movement of the Ailao Shan-Red River shear zone: a perspective from Vietnam[J]. Geology, 26(10):887-890. |
[47] | WEI JIANGONG, LIANG JINQIANG, LU JINGAN, et al, 2019. Characteristics and dynamics of gas hydrate systems in the northwestern South China Sea - Results of the fifth gas hydrate drilling expedition[J]. Marine and Petroleum Geology, 110: 287-298. |
[48] | XIA ZHONGYU, WAN ZHIFENG, WANG XIANQING, et al, 2016. The tectonic differences between the east and the west in the deep-water area of the northern South China Sea[J]. Acta Oceanologica Sinica, 35(1):86-95. |
[49] | YAN PIN, ZHOU DI, LIU ZHAOSHU, 2001. A crustal structure profile across the northern continental margin of the South China Sea[J]. Tectonophysics, 338(1):1-21. |
[50] | ZE TAO, ALVES T M, 2016. The role of gravitational collapse in controlling the evolution of crestal fault systems (Espírito Santo Basin, SE Brazil)[J]. Journal of Structural Geology, 92: 79-98. |
[51] | ZE TAO, ALVES T M, 2017. The role of gravitational collapse in controlling the evolution of crestal fault systems (Espírito Santo Basin, SE Brazil) - Reply[J]. Journal of Structural Geology, 98: 12-14. |
[52] | ZHANG CUIMEI, WANG ZHENFENG, SUN ZHIPENG, et al, 2013. Structural differences between the western and eastern Qiongdongnan Basin: evidence of Indochina block extrusion and South China Sea seafloor spreading[J]. Marine Geophysical Research, 34(3):309-323. |
[53] | ZHAO ZHONGXIAN, SUN ZHEN, WANG ZHENFENG, et al, 2015. The high resolution sedimentary filling in Qiongdongnan Basin, Northern South China Sea[J]. Marine Geology, 361: 11-24. |
[54] | ZHAO ZHONGXIAN, SUN ZHEN, LIU JIANBAO, et al, 2018. The continental extension discrepancy and anomalous subsidence pattern in the western Qiongdongnan Basin, South China Sea[J]. Earth and Planetary Science Letters, 501: 180-191. |
[55] | ZHU MANGZHENG, GRAHAM S, MCHARGUE T, 2009. The Red River Fault zone in the Yinggehai Basin, South China Sea[J]. Tectonophysics, 476(3-4):397-417. |
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