[1] |
徐景平. 海底浊流研究百年回顾[J]. 中国海洋大学学报,2014,44(10):98-105.
Xu Jingping. Turbidity current research in the past century: An overview[J]. Periodical of Ocean University of China, 2014, 44(10): 98-105. |
[2] |
Talling P J, Paull C K, Piper D J W. How are subaqueous sediment density flows triggered, what is their internal structure and how does it evolve? Direct observations from monitoring of active flows[J]. Earth-Science Reviews, 2013, 125: 244-287. |
[3] |
Forel F-A. Les ravins sous-lacustre des fleuves glaciaires[J]. Bulletin de la Société vaudoise des ingénieurs et des architectes, 1885, 101:725-728. |
[4] |
Daly R A. Origin of submarine canyons[J]. American Journal of Science, 1936, S5-31(186): 401-420. |
[5] |
Cant D J, Walker R G. Fluvial processes and facies sequences in the sandy braided South Saskatchewan River, Canada[J]. Sedimentology, 1978, 25(5): 625-648. |
[6] |
Xu J P, Noble M A, Rosenfeld L K. In-situ measurements of velocity structure within turbidity currents[J]. Geophysical Research Letters, 2004, 31(9): L09311. |
[7] |
Garcia M, Parker G. Entrainment of bed sediment into suspension[J]. Journal of Hydraulic Engineering, 1991,117(4): 414-435. |
[8] |
Garcia M H. Hydraulic jumps in sediment-driven bottom currents[J]. Journal of Hydraulic Engineering, 1993, 119(10): 1094-1117. |
[9] |
余斌. 浊流和泥石流的异重流初期潜入点的实验研究[J]. 水科学进展, 2008, 19(1):27-35.
Yu Bin. Experimental study on the incipient plunging point of stratified flow of turbidity currents and debris flows[J]. Advances in Water Science, 2008, 19(1): 27-35. |
[10] |
Huang H Q, Imran J, Pirmez C. Numerical model of turbidity currents with a deforming bottom boundary[J]. Journal of Hydraulic Engineering, 2005, 131(4): 283-293. |
[11] |
El-Gawad S A, Cantelli A, Pirmez C, et al. Three-dimensional numerical simulation of turbidity currents in a submarine channel on the seafloor of the Niger Delta slope[J]. Journal of Geophysical Research, 2012, 117(C5): C05026. |
[12] |
Ottolenghi L, Adduce C, Roman F, et al. Analysis of the flow in gravity currents propagating up a slope[J]. Ocean Modelling, 2017, 115: 1-13. |
[13] |
Hoffmann G, Nasr-Azadani M, Meiburg E. Sediment wave Formation caused by erosional and depositional turbidity currents: A numerical investigation[J]. Procedia IUTAM, 2015, 15: 26-33. |
[14] |
郭彦英,黄河清. 海底浊流在坡道转换处的流动及沉积的数值模拟[J]. 沉积学报,2013,31(6):994-1000.
Guo Yanying, Huang Heqing. Numerical simulation of the flow and deposition of turbidity currents with different slope changes[J]. Acta Sedimentologica Sinica, 2013, 31(6): 994-1000. |
[15] |
Kostic S, Parker G. Progradational sand-mud deltas in lakes and reservoirs. Part 1. Theory and numerical modeling[J]. Journal of Hydraulic Research, 2003, 41(2): 127-140. |
[16] |
Nakao K, Naruse H, Tokuhashi S. Inverse analysis to reconstruct hydraulic conditions of non-steady turbidity currents: Application to an ancient Turbidite of the Kiyosumi Formation of the Awa Group, Boso Peninsula, Central Japan[EB/OL]. (2020-10-11). https://doi.org/10.21203/rs.3.rs-94481/v1. |
[17] |
Fukushima Y, Parker G, Pantin H M. Prediction of ignitive turbidity currents in Scripps Submarine Canyon[J]. Marine Geology, 1985, 67(1/2): 55-81. |
[18] |
Dietrich W E. Settling velocity of natural particles[J]. Water Resources Research, 1982, 18(6): 1615-1626. |
[19] |
Garcia M, Parker G. Experiments on the entrainment of sediment into suspension by a dense bottom current[J]. Journal of Geophysical Research: Oceans, 1993, 98(C3): 4793-4807. |
[20] |
Paull C K, Ussler III W, Caress D W, et al. Origins of large crescent-shaped bedforms within the axial channel of Monterey canyon, offshore California[J]. Geosphere, 2010, 6(6): 755-774. |
[21] |
Hughes Clarke J E. First wide-angle view of channelized turbidity currents links migrating cyclic steps to flow characteristics[J]. Nature Communications, 2016, 7: 11896. |
[22] |
Arai K, Naruse H, Miura R, et al. Tsunami-generated turbidity current of the 2011 Tohoku-Oki earthquake[J]. Geology, 2013, 41(11): 1195-1198. |
[23] |
徐景平. 科学与技术并进:近20年来海底峡谷浊流观测的成就和挑战[J]. 地球科学进展,2013,28(5):552-558.
Xu Jingping. Accomplishments and challenges in measuring turbidity currents in submarine canyons[J]. Advances in Earth Science, 2013, 28(5): 552-558. |
[24] |
唐盟. 加拿大东南部大西洋大陆坡浊流沉积环境与沉积过程特征:以Halibut Canyon为例[D]. 南京:南京大学,2020:3-251.
Tang Meng. Turbidity process and sedimentary environment of South-East Canada (Atlantic) continental slope: Case study of Halibut Canyon[D]. Nanjing: Nanjing University, 2020: 3-251. |
[25] |
Gladstone C, Phillips J C, Sparks R S J. Experiments on bidisperse, constant-volume gravity currents: Propagation and sediment deposition[J]. Sedimentology, 1998, 45(5): 833-843. |
[26] |
Middleton G V. Submarine fans and channels[M]//Fairbridge R W, Bourgeois. Encyclopedia of sedimentology. Berlin, Heidelberg: Springer, 1978: 1149-1154. |
[27] |
Paull C K, Mitts P, Ussler III W, et al. Trail of sand in Upper Monterey Canyon: Offshore California[J]. Geological Society of America Bulletin, 2005, 117(9/10): 1134-1145. |