[1] |
曹耀华,赖志云,刘怀波,等. 沉积模拟实验的历史现状及发展趋势[J]. 沉积学报,1990,8(1):143-147.
Cao Yaohua, Lai Zhiyun, Liu Huaibo, et al. Sedimentary simulation experiments: In the past, current states, and developing trend[J]. Acta Sedimentologica Sinica, 1990, 8(1): 143-147. |
[2] |
Williams G P. Flume experiments on the transport of a coarse sand[M]. Washington. Government Printing Office, 1967: 1-31. |
[3] |
Wijbenga J H A, Klaassen G J. Changes in bedform dimensions under unsteady flow conditions in a straight flume[M]//Collinson J D, Lewin J. Modern and ancient fluvial systems. Oxford, UK: Blackwell Publishing Ltd., 1983: 35-48. |
[4] |
Southard J B, Boguchwal L A. Flume experiments on the transition from ripples to lower flat bed with increasing sand size[J]. Journal of Sedimentary Research, 1973, 43(4): 1114-1121. |
[5] |
Riddell J F. A laboratory study of suspension-effect density currents[J]. Canadian Journal of Earth Sciences, 1969, 6(2): 231-246. |
[6] |
卢斌,邱振,周川闽,等. 泥页岩沉积物理模拟研究进展与发展趋势[J]. 沉积学报,2021,39(4):781-793.
Lu Bin, Qiu Zhen, Zhou Chuanmin, et al. Progress and prospects in the physical simulation of mudstone deposition[J]. Acta Sedimentologica Sinica, 2021, 39(4): 781-793. |
[7] |
Potter P E, Maynard J B, Depetris P J. Mud and mudstones: Introduction and overview[M]. Berlin: Springer, 2005: 23-74. |
[8] |
Middleton G V. Experiments on density and turbidity currents: I. Motion of the head[J]. Canadian Journal of Earth Sciences, 1966, 3(4): 523-546. |
[9] |
Middleton G V. Experiments on density and turbidity currents: II. Uniform flow of density currents[J]. Canadian Journal of Earth Sciences, 1966, 3(5): 627-637. |
[10] |
Middleton G V. Experiments on density and turbidity currents: III. Deposition of sediment[J]. Canadian Journal of Earth Sciences, 1967, 4(3): 475-505. |
[11] |
Cao K, Shao Y Y, Tong C F, et al. Research progress of annular flume technology[J]. Applied Mechanics and Materials, 2013, 256-259: 2498-2508. |
[12] |
Gilbert G K, Murphy E C. The transportation of debris by running water[R]. Washington: U.S. Geological Survey, 1914: 86. |
[13] |
Best J L, Reid I. Discussion of “Separation zone at open-channel junctions” by James L. Best and Ian Reid (November, 1984)[J]. Journal of Hydraulic Engineering, 1987, 113(4): 545-548. |
[14] |
Kuenen P H. Experimental turbidite lamination in a circular flume[J]. The Journal of Geology, 1966, 74(5): 523-545. |
[15] |
Sumner E J, Amy L A, Talling P J. Deposit structure and processes of sand deposition from decelerating sediment suspensions[J]. Journal of Sedimentary Research, 2008, 78(8): 529-547. |
[16] |
Sumner E J, Talling P J, Amy L A. Deposits of flows transitional between turbidity current and debris flow[J]. Geology, 2009, 37(11): 991-994. |
[17] |
赵德招,刘杰,吴华林. 近十年来台风诱发长江口航道骤淤的初步分析[J]. 泥沙研究,2012(2):54-60.
Zhao Dezhao, Liu Jie, Wu Hualin. Preliminary analysis of typhoon-induced sudden sedimentation in navigation channel in Yangtze Estuary over last decade[J]. Journal of Sediment Research, 2012(2): 54-60. |
[18] |
李孟国,曹祖德. 粉沙质海岸泥沙问题研究进展[J]. 泥沙研究,2009(2):72-80.
Li Mengguo, Cao Dezu. Review on the study of sediment problems on the silt-sandy coast[J]. Journal of Sediment Research, 2009(2): 72-80. |
[19] |
张春生,刘忠保,曹跃华,等. 歧北凹陷舌状砂体沉积模拟实验[J]. 石油与天然气地质,1995,16(2):178-183.
Zhang Chunsheng, Liu Zhongbao, Cao Yuehua, et al. Depositional simulation of lobate sand body in Qibei Sag[J]. Oil & Gas Geology, 1995, 16(2): 178-183. |
[20] |
鄢继华,陈世悦,姜在兴,等. 断陷湖盆震浊积岩成因模拟实验[J]. 古地理学报,2007,9(3):277-282.
Yan Jihua, Chen Shiyue, Jiang Zaixing, et al. Simulating experiment on genesis of seismo-turbidites in rift lacustrine basin[J]. Journal of Palaeogeography, 2007, 9(3): 277-282. |
[21] |
王星星,王英民,高胜美,等. 深水重力流模拟研究进展及对海洋油气开发的启示[J]. 中国矿业大学学报,2018,47(3):588-602.
Wang Xingxing, Wang Yingmin, Gao Shengmei, et al. Advancements of the deep-water gravity flow simulations and their implications for exploitation of marine petroleum[J]. Journal of China University of Mining & Technology, 2018, 47(3): 588-602. |
[22] |
程立华,陈世悦,吴胜和,等. 断陷盆地陡坡带扇三角洲模拟及沉积动力学分析[J]. 海洋地质与第四纪地质,2005,25(4):29-34.
Cheng Lihua, Chen Shiyue, Wu Shenghe, et al. The simulation and sedimentary dynamic analysis of fan delta in the steep slope of fault basin[J]. Marine Geology & Quaternary Geology, 2005, 25(4): 29-34. |
[23] |
Petersen O, Krishnappan B G. Measurement and analysis of flow characteristics in a rotating circular flume[J]. Journal of Hydraulic Research, 1994, 32(4): 483-494. |
[24] |
Pope N D, Widdows J, Brinsley M D. Estimation of bed shear stress using the turbulent kinetic energy approach—A comparison of annular flume and field data[J]. Continental Shelf Research, 2006, 26(8): 959-970. |
[25] |
James P W, Jones T E R, Stewart D M. Numerical and experimental studies of annular flume flow[J]. Applied Mathematical Modelling, 1996, 20(3): 225-231. |
[26] |
Bath Enright O G, Minter N J, Sumner E J, et al. Flume experiments reveal flows in the Burgess Shale can sample and transport organisms across substantial distances[J]. Communications Earth & Environment, 2021, 2(1): 104. |
[27] |
Partheniades E, Kennedy J F. Depositional behavior of fine sediment in a turbulent fluid motion[C]//Coastal engineering 1966. Tokyo: American Society of Civil Engineers, 1966: 707-729. |
[28] |
Mehta A J. Depositional behavior of cohesive sediments[D]. Gainesville: University of Florida, 1973: 16. |
[29] |
Winterwerp J C, Kranenburg C. Erosion of fluid mud layers. II: Experiments and model validation[J]. Journal of Hydraulic Engineering, 1997, 123(6): 512-519. |
[30] |
Stone M, Krishnappan B G. Transport characteristics of tile-drain sediments from an agricultural watershed[C]//Proceedings of the 7th international symposium on the interactions between sediments and water. Baveno: Springer, 1997: 89-103. |
[31] |
Teisson C, Ockenden M, Le Hir P, et al. Cohesive sediment transport processes[J]. Coastal Engineering, 1993, 21(1/2/3): 129-162. |
[32] |
Kuenen P H, Humbert F L. Grain size of turbidite ripples[J]. Sedimentology, 1969, 13(3/4): 253-261. |
[33] |
Kuenen P H, Sengupta S. Experimental marine suspension currents, competency and capacity[J]. Geologie en Mijnbouw, 1970, 49(2): 89-118. |
[34] |
Kuenen P H. Matrix of turbidites: Experimental approach[J]. Sedimentology, 1966, 7(4): 267-297. |
[35] |
Banerjee I. Experimental study on the effect of deceleration on the vertical sequence of sedimentary structures in silty sediments[J]. Journal of Sedimentary Research, 1977, 47(2): 771-783. |
[36] |
Buls T, Anderskouv K, Friend P L, et al. Physical behaviour of Cretaceous calcareous nannofossil ooze: Insight from flume studies of disaggregated chalk[J]. Sedimentology, 2017, 64(2): 478-507. |
[37] |
Ogbuagu C C, Kassem H, Udiba U U, et al. Role of saltmarsh systems in estuarine trapping of microplastics[J]. Scientific Reports, 2022, 12(1): 15546. |
[38] |
Søndergaard M, Jensen J P, Jeppesen E. Role of sediment and internal loading of phosphorus in shallow lakes[J]. Hydrobiologia, 2003, 506(1): 135-145. |
[39] |
Yang Z Q, Baptista A, Darland J. Numerical modeling of flow characteristics in a rotating annular flume[J]. Dynamics of Atmospheres and Oceans, 2000, 31(1/2/3/4): 271-294. |
[40] |
徐啸. 细颗粒粘性泥沙沉降率的探讨[J]. 水利水运科学研究,1989(4):93-104.
Xu Xiao. Approaching of fine cohesive sediment depositional rate[J]. Hydro-Science and Engineering, 1989(4): 93-104. |
[41] |
Yao P, Su M, Wang Z B, et al. Experiment inspired numerical modeling of sediment concentration over sand-silt mixtures[J]. Coastal Engineering, 2015, 105: 75-89. |
[42] |
陈永平,乔中行,许春阳,等. 粉砂含量对环形水槽混合床面冲刷特性的影响[J]. 泥沙研究,2021,46(5):1-8.
Chen Yongping, Qiao Zhongxing, Xu Chunyang, et al. Influences of sediment composition on scour of silt-sand mixture bed[J]. Journal of Sediment Research, 2021, 46(5): 1-8. |
[43] |
沈承烈,阮文杰. 长江口河床质冲淤特性的试验研究[J]. 泥沙研究,1986(3):62-72.
Shen Chenglie, Ruan Wenjie. Experimental research of the Yangtze Estuary bed material erosion and deposition characteristics[J]. Journal of Sediment Research, 1986(3): 62-72. |
[44] |
阮文杰. 细颗粒泥沙动水絮凝的机理分析[J]. 海洋科学,1991(5):46-49.
Ruan Wenjie. Mechanistic analysis on hydrodynamic flocculation on fine sediments[J]. Marine Sciences, 1991(5): 46-49. |
[45] |
阮文杰. 长江口南支河床质的运动规律[J]. 海洋科学,1992(4):44-48.
Ruan Wenjie. Transportion patterns of bed load in South Branch of the Changjiang River Estuary[J]. Marine Sciences, 1992(4): 44-48. |
[46] |
张志南,周宇,韩洁,等. 生物扰动实验系统(AFS)的基本结构和工作原理[J]. 海洋科学,1999(6):28-30.
Zhang Zhinan, Zhou Yu, Han Jie, et al. The basic structures and operational principles of the annular flux system (AFS)[J]. Marine Sciences, 1999(6): 28-30. |
[47] |
彭进平,逄勇,李一平,等. 水动力条件对湖泊水体磷素质量浓度的影响[J]. 生态环境,2003,12(4):388-392.
Peng Jinping, Pang Yong, Li Yiping, et al. The effect of water dynamical condition on phosphorus in lake[J]. Ecology and Environment, 2003, 12(4): 388-392. |
[48] |
童亚莉,梁涛,王凌青,等. 双向环形水槽模拟变化水位和流速下洞庭湖沉积物氮释放特征[J]. 湖泊科学,2016,28(1):59-67.
Tong Yali, Liang Tao, Wang Lingqing, et al. Characteristics of nitrogen release from Lake Dongting sediments under variable water level and velocity in the two-way annular flume[J]. Journal of Lake Sciences, 2016, 28(1): 59-67. |
[49] |
吉飞,李志伟,赵汗青. 水动力作用下泥沙对磷的吸附特征[J]. 河海大学学报(自然科学版),2017,45(1):56-62.
Ji Fei, Li Zhiwei, Zhao Hanqing. Characteristics of adsorption of phosphorus by sediment under hydrodynamic action[J]. Journal of Hohai University (Natural Sciences), 2017, 45(1): 56-62. |
[50] |
金鹰,张鹰. 灌河口泥沙的环形水槽试验[J]. 河海大学学报,1993,21(1):48-54.
Jin Ying, Zhang Ying. Annular tank tests of sediment from Guanhe Estuary[J]. Journal of Hohai University, 1993, 21(1): 48-54. |
[51] |
冯学英. 环形水槽机理与应用研究[J]. 水道港口,1998(3):7-11.
Feng Xueying. On mechanism and application of circulating flume[J]. Journal of Waterway and Harbor, 1998(3): 7-11. |
[52] |
王捷,周晶晶,张长宽. 双向环形水槽流速分布规律试验研究[J]. 泥沙研究,2014(5):32-37.
Wang Jie, Zhou Jingjing, Zhang Changkuan. Experimental study on velocity distribution of two-direction rotating annular flume[J]. Journal of Sediment Research, 2014(5): 32-37. |
[53] |
Spork V, Ruland P, Schneider B, et al. A new rotating annular flume for investigations on sediment transport[J]. International Journal of Sediment Research, 1994, 9(3): 141-147. |
[54] |
Widdows J, Brinsley M D, Salkeld P N, et al. Influence of biota on spatial and temporal variation in sediment erodability and material flux on a tidal flat (Westerschelde, The Netherlands)[J]. Marine Ecology Progress Series, 2000, 194: 23-37. |
[55] |
Bale A J, Widdows J, Harris C B, et al. Measurements of the critical erosion threshold of surface sediments along the Tamar Estuary using a mini-annular flume[J]. Continental Shelf Research, 2006, 26(10): 1206-1216. |
[56] |
Schieber J. Reverse engineering mother nature—Shale sedimentology from an experimental perspective[J]. Sedimentary Geology, 2011, 238(1/2): 1-22. |
[57] |
Hermidas N, Eggenhuisen J T, Jacinto R S, et al. A classification of clay‐rich subaqueous density flow structures[J]. Journal of Geophysical Research: Earth Surface, 2018, 123(5): 945-966. |
[58] |
Amos C L, Bergamasco A, Umgiesser G, et al. The stability of tidal flats in Venice Lagoon—The results of in-situ measurements using two benthic, annular flumes[J]. Journal of Marine Systems, 2004, 51(1/2/3/4): 211-241. |
[59] |
Liu H L, Jia Y G, Zhang S T, et al. Field measurement of the erosion threshold of silty seabed in the intertidal flat of the Yellow River delta with a newly-developed annular flume[J]. Frontiers in Marine Science, 2023, 10: 1177241. |
[60] |
Thompson C E L, Couceiro F, Fones G R, et al. In situ flume measurements of resuspension in the North Sea[J]. Estuarine,Coastal and Shelf Science, 2011, 94(1): 77-88. |
[61] |
Aberle J, Nikora V, Walters R. Data interpretation for in situ measurements of cohesive sediment erosion[J]. Journal of Hy‐draulic Engineering, 2006, 132(6): 581-588. |
[62] |
Manning A J, Friend P L, Prowse N, et al. Estuarine mud flocculation properties determined using an annular mini-flume and the LabSFLOC system[J]. Continental Shelf Research, 2007, 27(8): 1080-1095.] |
[63] |
Piedra-Cueva I, Mory M, Temperville A. A race-track recirculating flume for cohesive sediment research[J]. Journal of Hydraulic Research, 1997, 35(3): 377-396. |
[64] |
Lara M, Bouma T J, Peralta G, et al. Hydrodynamic effects of macrophyte microtopography: Spatial consequences of interspecific benthic transitions[J]. Marine Ecology Progress Series, 2016, 561: 123-136. |
[65] |
苏敏,顾浩,陈永平, 等. 基于ADV的底床切应力测量精度提升实验探究[J]. 泥沙研究,2023,48(4):24-31.
Su Min, Gu Hao, Chen Yongping, et al. Experimental study on the measure‐ ment accuracy improvement of bed shear stress by ADV[J]. Journal of Sediment Research, 2023, 48(4): 24-31. |
[66] |
Wright J D, Baas J H. Despiking ultrasonic doppler velocity profiling data[J]. Journal of Sedimentary Research, 2013, 83(11): 954-961. |
[67] |
Ciutat A, Widdows J, Readman J W. Influence of cockle cerastoderma edule bioturbation and tidal-current cycles on resus‐pension of sediment and polycyclic aromatic hydrocarbons[J]. Marine Ecology Progress Series, 2006, 328: 51-64. |
[68] |
Hawley N. Flume experiments on the origin of flaser bedding[J]. Sedimentology, 1981, 28(5): 699-712. |
[69] |
Schieber J, Southard J B. Bedload transport of mud by floccule ripples-direct observation of ripple migration processes and their implications[J]. Geology, 2009, 37(6): 483-486. |
[70] |
Schieber J, Southard J, Thaisen K. Accretion of mudstone beds from migrating floccule ripples[J]. Science, 2007, 318(5857):1760-1763. |
[71] |
Terwindt J H J, Breusers H N C. Experiments on the origin of flaser, lenticular and sand‐clay alternating bedding[J]. Sedimentology, 1972, 19(1/2): 85-98. |
[72] |
Sato T, Taniguchi K, Takagawa T, et al. Generation of tidal bedding in a circular flume experiment: Formation process and pre-servation potential of mud drapes[J]. Geo-Marine Letters, 2011, 31(2): 101-108. |
[73] |
Talling P J, Masson D G, Sumner E J, et al. Subaqueous sediment density flows: Depositional processes and deposit types[J]. Sedimentology, 2012, 59(7): 1937-2003. |
[74] |
Postma H. Sediment transport and sedimentation in the estuarine environment[M]//Lauff G H. Estuaries. Washington, DC: American Association for Advancement of Science, 1967: 158-180. |
[75] |
Hizzett J L, Sumner E J, Cartigny M J B, et al. Mud-clast armoring and its implications for turbidite systems[J]. Journal of Sedimentary Research, 2020, 90(7): 687-700. |
[76] |
Haughton P, Davis C, McCaffrey W, et al. Hybrid sediment gravity flow deposits: Classification, origin and significance[J]. Marine and Petroleum Geology, 2009, 26(10): 1900-1918. |
[77] |
Baar A W, de Smit J, Uijttewaal W S J, et al. Sediment transport of fine sand to fine gravel on transverse bed slopes in rotating annular flume experiments[J]. Water Resources Research, 2018, 54 (1): 19-45. |
[78] |
谈明轩,朱筱敏,耿名扬,等. 沉积物重力流流体转化沉积—混合事件层[J]. 沉积学报,2016,34(6):1108-1119.
Tan Mingxuan, Zhu Xiaomin, Geng Mingyang, et al. The flow transforming deposits of sedimentary gravity flow-hybrid event bed[J]. Acta Sedimentologica Sinica, 2016, 34(6): 1108-1119. |
[79] |
Baas J H, Best J L, Peakall J, et al. A phase diagram for turbulent, transitional, and laminar clay suspension flows[J]. Journal of Sedimentary Research, 2009, 79(4): 162-183. |
[80] |
李胜利,李顺利,付超. 长试管静置沉降实验结果对湖盆细粒沉积纹层成因的启示[J]. 古地理学报,2022,24(3):405-414.
Li Shengli, Li Shunli, Fu Chao. Implication of the large-tube settling experiment results on genesis of fine-grained deposition lamination of lacustrine basin[J]. Journal of Palaeogeography, 2022, 24(3): 405-414. |
[81] |
Allen J R L. Current ripples: Their relation to patterns of water and sediment motion[M]. Amsterdam: North-Holland Publishing Company, 1968: 1-433. |
[82] |
Dou L X, Best J, Bao Z D, et al. The sedimentary architecture of hyperpycnites produced by transient turbulent flows in a shallow lacustrine environment[J]. Sedimentary Geology, 2021, 411: 105804. |
[83] |
Wu X X, Baas J H, Parsons D R, et al. Wave ripple development on mixed clay‐sand substrates: Effects of clay winnowing and armoring[J]. Journal of Geophysical Research: Earth Surface, 2018, 123(11): 2784-2801. |
[84] |
Taniguchi K, Takagawa T, Masuda F. Forming conditions of Giant Ripples in a circular water flume[C]//Sekiguchi, Hideo (Hg.): Proceedings 4th International Conference on Scour and Erosion (ICSE-4).Tokyo, Japan. Tokyo: The Japanese Geotechnical Society, 2008: 558-561. |
[85] |
Takagawa T. Experimental study on formative conditions of hummocky cross-stratification using circular flume[D]. Kyoto: Kyoto University, 2007. |
[86] |
Baar A W, Weisscher S A H, Kleinhans M G. Interaction between lateral sorting in river bends and vertical sorting in dunes[J]. Sedimentology, 2020, 67(1): 606-626. |
[87] |
李华国,袁美琦,张秀芹. 淤泥临界起动条件及冲刷率试验研究[J]. 水道港口,1995(3):20-26.
Li Huaguo, Yuan Meiqi, Zhang Xiuqin. Study on critical motion and erosion of cohesive sediment[J]. Journal of Waterway and Harbor, 1995(3): 20-26. |
[88] |
王兆印,黄金池,苏德惠. 河道冲刷和清水水流河床冲刷率[J]. 泥沙研究,1998(1):3-13.
Wang Zhaoyin, Huang Jinchi, Su Dehui. River channel scour and scour rate of clear water flow[J]. Journal of Sediment Research, 1998(1): 3-13. |
[89] |
Gurka R, Liberzon A, Hetsroni G. Detecting coherent patterns in a flume by using PIV and IR imaging techniques[J]. Experiments in Fluids, 2004, 37(2): 230-236. |
[90] |
Gharabaghi B, Inkratas C, Krishnappan B G, et al. Flow characteristics in a rotating circular flume[J]. The Open Civil Engineering Journal, 2007, 1(1): 30-36. |
[91] |
Scheingross J S, Hovius N, Dellinger M, et al. Preservation of organic carbon during active fluvial transport and particle abrasion[J]. Geology, 2019, 47(10): 958-962. |