综述与评述

海岸沙丘对风暴潮响应研究进展与展望

  • 邱星 ,
  • 董玉祥
展开
  • 1.中山大学地理科学与规划学院/广东省城市化与地理环境空间模拟重点实验室, 广东 广州 510275
    2.广州新华学院资源与城乡规划学院, 广东 广州 510520
邱星(1996-),男,广东阳江人,硕士研究生,主要从事海岸风沙地貌研究. E-mail: qiux23@mail2.sysu.edu.cn
董玉祥(1964-),男,河南西平人,教授,主要从事海岸风沙地貌和土地退化研究. E-mail: eesdyx@mail.sysu.edu.cn

收稿日期: 2022-05-09

  修回日期: 2022-07-03

  网络出版日期: 2022-09-13

基金资助

国家自然科学基金项目“中国海岸风蚀地貌的发育与演变”(41871006)

Research Progress and Prospect of the Response of Coastal Dunes to Storm Surge

  • Xing QIU ,
  • Yuxiang DONG
Expand
  • 1.Guangdong Provincial Key Laboratory of Urbanization and Geo-simulation, School of Geography and Planning, Sun Yat-sen University, Guangzhou 510275, China
    2.School of Resources and Planning, Xinhua College of Guangzhou, Guangzhou 510520, China
QIU Xing (1996-), male, Yangjiang City, Guangdong Province, Master student. Research area includes coastal aeolian landform. E-mail: qiux23@mail2.sysu.edu.cn
DONG Yuxiang (1964-), male, Xiping County, Henan Province, Professor. Research areas include coastal aeolian landform and land degradation. E-mail: eesdyx@mail.sysu.edu.cn

Received date: 2022-05-09

  Revised date: 2022-07-03

  Online published: 2022-09-13

Supported by

the National Natural Science Foundation of China “Formation and evolution of coastal wind-erod‐ed landforms in China”(41871006)

摘要

气候变化加剧了风暴潮等极端事件的发生,海岸沙丘因其抵御风暴潮的功能日益受到关注,海岸沙丘对风暴潮响应研究也取得了显著进展。针对海岸沙丘形态对风暴潮的跃岸、沿岸与集群响应,近期从特征至机理进行了较为深入的研究,其研究进展主要体现为研究区域的拓广、响应特征的完善、响应机理的深入、研究技术与方法的创新等方面,但同时也存在理论与方法体系尚需健全、要素影响机理仍需深化、形态响应中沙丘的恢复未能量化、区域尺度对比研究仍待开拓等问题。未来应在健全理论与方法体系的基础上,针对要素影响机理的深入、集群响应期间沙丘的恢复以及区域响应特征的对比等方面开展相关研究。

本文引用格式

邱星 , 董玉祥 . 海岸沙丘对风暴潮响应研究进展与展望[J]. 地球科学进展, 2022 , 37(8) : 811 -821 . DOI: 10.11867/j.issn.1001-8166.2022.048

Abstract

As climate change intensifies the frequency and magnitude of extreme weather events such as storm surges, coastal dunes are receiving increasing attention for their storm surge resilience, and research on the response of coastal dunes to storm surges has made remarkable progress. In view of the cross-shore, alongshore, and cluster responses of coastal dunes to storm surges, a more in-depth study has recently been conducted on their characteristics and mechanisms. Significant progress has been made in terms of the expansion of study areas, improvement of response characteristics, depth of response mechanisms, and innovation of research techniques and methods. However, theoretical and methodological systems still need to be improved, and insight on the influence mechanism of coastal dune elements still needs to be deepened. Additionally, the recovery of coastal dunes in morphology response has not been properly quantified, and comparative studies at the regional scale still need to be developed. In the future, based on a sound theoretical and methodological system, research should be enhanced to better understand these factors.

参考文献

1 FENG Shizuo. Introduction to storm surge[M]. Beijing: Science Press,1982.
1 冯士筰. 风暴潮导论[M]. 北京: 科学出版社, 1982.
2 XIA Dongxing, WANG Wenhai, WU Guiqiu, et al. Coastal erosion in China[J]. Acta Geographica Sinica, 1993, 48(5): 468-476.
2 夏东兴,王文海,武桂秋,等. 中国海岸侵蚀述要[J]. 地理学报, 1993, 48(5): 468-476.
3 IPCC. Climate change 2021: the physical science basis. Contribution of working group I to the sixth assessment report of the intergovernmental panel on climate change[R].Cambridge: Cambridge University Press, 2021.
4 GóMEZ-PINA G, MU?OZ-PéREZ J J, RAMíREZ J L, et al. Sand dune management problems and techniques, Spain[J]. Journal of Coastal Research, 2002, 36(special issue): 325-332.
5 BURGH L M B D, WIJNBERG K M, HULSCHER S J M H. Dune morphology along a nourished coastline[J]. Journal of Coastal Research, 2009, 56(special issue): 292-296.
6 DAVIDSON S G, HESP P A, da SILVA G M. Controls on dune scarping[J]. Progress in Physical Geography: Earth and Environment, 2020, 44(6): 923-947.
7 DONNELLY C, KRAUS N, LARSON M. State of knowledge on measurement and modeling of coastal overwash[J]. Journal of Coastal Research, 2006, 224: 965-991.
8 ROELVINK D, RENIERS A, van DONGEREN A, et al. Modelling storm impacts on beaches, dunes and barrier islands[J]. Coastal Engineering, 2009, 56(11/12): 1 133-1 152.
9 SIMMONS J A, SPLINTER K D. A multi-model ensemble approach to coastal storm erosion prediction[J]. Environmental Modelling & Software, 2022, 150: 105356.
10 LARSON M, BYRNES M R, KRAUS N C, et al. SBEACH: numerical model for simulating storm-induced beach change: report 1, empirical foundation and model development[M]. Vicksburg, Miss: U.S. Army Engineer Waterways Experiment Station, 1989.
11 DONG Yuxiang, HUANG Dequan, ZHANG Xueqin. Preliminary observation of morphological responses to typhoon of coastal dunes[J]. Geographical Research, 2016, 35(10): 1 925-1 934.
11 董玉祥, 黄德全, 张雪琴. 海岸沙丘形态对台风响应的初步观测[J]. 地理研究, 2016, 35(10): 1 925-1 934.
12 YANG Lin, DONG Yuxiang, HUANG Dequan. Morphological change of coastal climbing dunes in Pingtan Island of China after typhoon group[J]. Journal of Desert Research, 2020, 40(2): 1-8.
12 杨林,董玉祥,黄德全. 台风群后海岸爬坡沙丘形态变化特征[J]. 中国沙漠, 2020, 40(2): 1-8.
13 YANG Lin, DONG Yuxiang, HUANG Dequan. Morphological response of coastal sand sheets to typhoons[J]. Tropical Geography, 2021, 41(5): 968-974.
13 杨林,董玉祥,黄德全. 海岸沙席对台风的形态响应特征[J]. 热带地理, 2021, 41 (5): 968-974.
14 QI Hongshuai, CAI Feng, LEI Gang, et al. Storm response characteristic of beach in South China[J]. Progress in Natural Science, 2009, 19(9): 975-985.
14 戚洪帅,蔡锋,雷刚,等. 华南海滩风暴响应特征研究[J]. 自然科学进展, 2009, 19(9): 975-985.
15 LEI Gang, CAI Feng. Typhoon response model of sedimentary and geomorphological associations on Xiasha beach, Jiangtian, Fujian[J]. Journal of Oceanography in Taiwan Strait, 2005, 24(3): 395-403.
15 雷刚,蔡锋. 福建江田下沙沙滩沉积地貌组合对台风的响应模式[J]. 台湾海峡, 2005, 24(3): 395-403.
16 CAI Feng, LEI Gang, SU Xianze, et al. Study on process response of Fujian beach geomorphology to Typhoon Aere[J]. The Ocean Engineering, 2006, 24(1): 98-109.
16 蔡锋,雷刚,苏贤泽,等. 台风“艾利”对福建沙质海滩影响过程研究[J]. 海洋工程, 2006, 24(1): 98-109.
17 CALDWELL J M. Shore erosion by storm waves[M]. America: Beach Erosion Board, 1959.
18 HAYES M O. Hurricanes as geological agents case studies of Hurricanes Carla, 1961, and Cindy, 1963[R]. The University of Texas Austin,Bureau of Economic Geology, 1967.
19 WANG P, KIRBY J H, HABER J D, et al. Morphological and sedimentological impacts of hurricane ivan and immediate poststorm beach recovery along the northwestern Florida barrier-island coasts[J]. Journal of Coastal Research, 2006, 226: 1 382-1 402.
20 GEORGE E, LUNARDI B, SMITH A, et al. Short communication: Storm impact and recovery of a beach-dune system in Prince Edward Island[J]. Geomorphology, 2021, 384:107721.
21 REY W, SALLES P, TORRES-FREYERMUTH A, et al. Spatiotemporal storm impact on the northern Vucatan coast during hurricanes and central American cold surge events[J]. Journal of Marine Science and Engineering, 2020, 8(1): 2.
22 BULLARD J E, ACKERLEY D, MILLETT J, et al. Post-storm geomorphic recovery and resilience of a prograding coastal dune system[J]. Environmental Research Communications, 2019, 1(1): 011004.
23 CASTELLE B, BUJAN S, FERREIRA S, et al. Foredune morphological changes and beach recovery from the extreme 2013/2014 winter at a high-energy sandy coast[J]. Marine Geology, 2017, 385: 41-55.
24 de WINTER R C, GONGRIEP F, RUESSINK B G. Observations and modeling of alongshore variability in dune erosion at Egmond aan Zee, the Netherlands[J]. Coastal Engineering, 2015, 99: 167-175.
25 ?ABUZ T A. Erosion and its rate on an accumulative Polish dune coast: the effects of the January 2012 storm surge[J]. Oceanologia, 2014, 56(2): 307-326.
26 CARTER R W G, ORFORD J D. Overwash processes along a gravel beach in south-east Ireland[J]. Earth Surface Processes and Landforms, 1981, 6(5): 413-426.
27 MOHANTY P K, KAR P K, BEHERA B. Impact of very severe cyclonic storm Phailin on shoreline change along South Odisha Coast[J]. Natural Hazards, 2020, 102(2): 633-644.
28 de OLIVEIRA J F, SCARELLI F M, MANZOLLI R P, et al. Geomorphological responses due to storm wave events at Praia da Barra, Garopaba-Santa Catarina State, southern Brazil[J]. Journal of Coastal Research, 2020, 95(special issue): 474-478.
29 CHOI K, JUNG P M, KIM Y, et al. Erosion and recovery of coastal dunes after tropical storms[J]. Journal of the Korean Geomorphological Association, 2012, 19: 17-27.
30 SPLINTER K D, KEARNEY E T, TURNER I L. Drivers of alongshore variable dune erosion during a storm event: observations and modelling[J]. Coastal Engineering, 2018, 131: 31-41.
31 van der MEULEN T, GOURLAY M R. Beach and dune erosion tests[C]//11th international conference on coastal engineering. London, United Kingdom. Reston, VA, USA: American Society of Civil Engineers, 1968: 701-707.
32 KANA T, MICHEL J, VOULGARIS G. Introduction and tribute[J]. Journal of Coastal Research, 2013, 69(special issue): 4-7.
33 FISHER J S, LEATHERMAN S P, PERRY F C. Overwash processes on Assateague Island[C]//American society of civil engineers. Proceedings 14th coastal engineering conference. New York: ASCE, 1975: 1 194-1 212.
34 LEATHERMAN S P, ZAREMBA R E. Overwash and aeolian processes on a U.S. northeast coast barrier[J]. Sedimentary Geology, 1987, 52(3/4): 183-206.
35 NISHI R, KRAUS N C. Mechanism and calculation of sand dune erosion by storms[C]//25th international conference on coastal engineering. Orlando, Florida, USA. Reston, VA, USA: American Society of Civil Engineers, 1996: 3 034-3 047.
36 VELLINGA P. Beach and dune erosion during storm surges[J]. Coastal Engineering, 1982, 6(4): 361-387.
37 KRIEBEL D L, DEAN R G. Numerical simulation of time-dependent beach and dune erosion[J]. Coastal Engineering, 1985, 9(3): 221-245.
38 van de GRAAFF J. Coastal and dune erosion under extreme conditions[J]. Journal of Coastal Research, 1994, 12(special issue): 253-262.
39 SALLENGER J A H. Storm impact scale for barrier islands[J]. Journal of Coastal Research, 2000, 16(3): 890-895.
40 HéQUETTE A, RUZ M H, ZEMMOUR A, et al. Alongshore variability in coastal dune erosion and post-storm recovery, northern coast of France[J]. Journal of Coastal Research, 2019, 88(): 25-45.
41 MARMOUSH R Y, MULLIGAN R P. A three-dimensional laboratory investigation of beach morphology change during a storm event[J]. Geomorphology, 2020, 363: 107224.
42 CAI Feng. Morphodynamical processes of sandy beaches in south China[D]. Qingdao: Ocean University of China, 2005.
42 蔡锋. 华南沙质海滩动力地貌过程[D]. 青岛: 中国海洋大学, 2005.
43 GAO Wei, LI Ping, GAO Shan, et al. Response process of the Haiyang beach evolution to Typhoon Lekima in Shandong Province[J]. Haiyang Xuebao, 2020, 42(11): 88-99.
43 高伟,李萍,高珊,等. 台风“利奇马”对山东省海阳市海滩演化过程的影响[J]. 海洋学报, 2020, 42(11): 88-99.
44 YANG L, DONG Y X, HUANG D Q. Morphological response of coastal dunes to a group of three typhoons on Pingtan Island, China[J]. Aeolian Research, 2018, 32: 210-217.
45 TONG X, LIN T. Dune restoration experiments during a typhoon season on Taiwan’s Si-Cao coast[J]. Journal of Marine Science and Technology, 2016, 24(5): 1 032-1 040.
46 LIU Jianhui, CAI Feng, QI Hongshuai, et al. Geomorphologic features of the beach-dune system along Fujian coast[J]. Marine Geology & Quaternary Geology, 2014, 34(1): 45-56.
46 刘建辉,蔡锋,戚洪帅,等. 福建沿岸海滩—沙丘系统地貌变化特征及关系模式[J]. 海洋地质与第四纪地质, 2014, 34(1): 45-56.
47 CASTELLE B, MARIEU V, BUJAN S, et al. Impact of the winter 2013-2014 series of severe western Europe storms on a double-barred sandy coast: beach and dune erosion and megacusp embayments[J]. Geomorphology, 2015, 238: 135-148.
48 SUANEZ S, CARIOLET J M, CANCOU?T R, et al. Dune recovery after storm erosion on a high-energy beach: Vougot Beach, Brittany (France)[J]. Geomorphology, 2012, 139/140: 16-33.
49 MARIAS A, VILA-CONCEJO A, FERREIRA O, et al. Sediment dynamics of barriers with frequent overwash[J]. Journal of Coastal Research, 2009, 25(3): 768-780.
50 JOHNSON C L, CHEN Q, OZDEMIR C E. Lidar time-series analysis of a rapidly transgressing low-lying mainland barrier (Caminada Headlands, Louisiana, USA)[J]. Geomorphology, 2020, 352: 106979.
51 CLAUDINO-SALES V, WANG P, HORWITZ M H. Effect of hurricane Ivan on coastal dunes of Santa Rosa Barrier Island, Florida: characterized on the basis of pre- and poststorm LIDAR surveys[J]. Journal of Coastal Research, 2010, 263: 470-484.
52 MORTON R, SALLENGER A. Morphological impacts of extreme storms on sandy beaches and barriers[J]. Journal of Coastal Research, 2003, 19: 560-573.
53 WANG P, ADAM J D, CHENG J, et al. Morphological and sedimentological impacts of hurricane michael along the northwest Florida coast[J]. Journal of Coastal Research, 2020, 36(5): 932-950.
54 PRIES A J, MILLER D L, BRANCH L C. Identification of structural and spatial features that influence storm-related dune erosion along a barrier-island ecosystem in the gulf of Mexico[J]. Journal of Coastal Research, 2008, 24(): 168-175.
55 YIN K, XU S D, HUANG W R, et al. Modeling beach profile changes by typhoon impacts at Xiamen coast[J]. Natural Hazards, 2019, 95(3): 783-804.
56 YANG Baoming, GAO Shu, ZHOU Liang, et al. A coastal dune overwash record of typhoon storm events from southeastern Hainan Island[J]. Acta Sedimentologica Sinica, 2017, 35(6): 1 133-1 143.
56 杨保明, 高抒, 周亮, 等. 海南岛东南部海岸砂丘风暴冲越沉积记录[J]. 沉积学报, 2017, 35(6): 1 133-1 143.
57 XU Xiaomei, GAO Shu, ZHOU Liang, et al. Sedimentary records of extreme wave events on the northeastern Hainan Island coast, southern China[J]. Acta Oceanologica Sinica, 2019, 41(6): 48-63.
57 徐笑梅, 高抒, 周亮, 等. 海南岛东北部海岸极端波浪事件沉积记录[J]. 海洋学报, 2019, 41(6): 48-63.
58 HE Yanyu. Beach aeolian sand transport influenced by tide[D]. Fuzhou: Fuzhou University, 2018.
58 何岩雨. 潮汐作用影响下的海滩风沙运动过程研究[D]. 福州: 福州大学, 2018.
59 HOUSER C, WERNETTE P, WEYMER B A. Scale-dependent behavior of the foredune: implications for barrier island response to storms and sea-level rise[J]. Geomorphology, 2018, 303: 362-374.
60 HOUSER C. Alongshore variation in the morphology of coastal dunes: implications for storm response[J]. Geomorphology, 2013, 199: 48-61.
61 ?ABUZ T A, KOWALEWSKA-KALKOWSKA H. Coastal erosion caused by the heavy storm surge of November 2004 in the southern Baltic Sea[J]. Climate Research, 2011, 48(1): 93-101.
62 CLAUDINO-SALES V, WANG P, HORWITZ M H. Factors controlling the survival of coastal dunes during multiple hurricane impacts in 2004 and 2005: Santa Rosa barrier island, Florida[J]. Geomorphology, 2008, 95(3/4): 295-315.
63 T?TUI F, VESPREMEANU-STROE A, PREOTEASA L. Alongshore variations in beach-dune system response to major storm events on the Danube Delta coast[J]. Journal of Coastal Research, 2014, 70(special issue): 693-699.
64 LONG J W, DE BAKKER A T M, PLANT N G. Scaling coastal dune elevation changes across storm-impact regimes[J]. Geophysical Research Letters, 2014, 41(8): 2 899-2 906.
65 THORNTON E B, MACMAHAN J, SALLENGER A H. Rip Currents, mega-cusps, and eroding dunes[J]. Marine Geology, 2007, 240(1/2/3/4): 151-167.
66 BALDOCK T E, GRAVOIS U, CALLAGHAN D P, et al. Methodology for estimating return intervals for storm demand and dune recession by clustered and non-clustered morphological events[J]. Coastal Engineering, 2021, 168: 103924.
67 DISSANAYAKE P, BROWN J, WISSE P, et al. Effects of storm clustering on beach/dune evolution[J]. Marine Geology, 2015, 370: 63-75.
68 DISSANAYAKE P, BROWN J, WISSE P, et al. Comparison of storm cluster vs isolated event impacts on beach/dune morphodynamics[J]. Estuarine, Coastal and Shelf Science, 2015, 164: 301-312.
69 DISSANAYAKE P, BROWN J, KARUNARATHNA H. Impacts of storm chronology on the morphological changes of the Formby beach and dune system, UK[J]. Natural Hazards and Earth System Sciences, 2015, 15(7): 1 533-1 543.
70 DANCHENKOV A R, BELOV N S. Morphological changes in the beach-foredune system caused by a series of storms. Terrestrial laser scanning evaluation[J]. Russian Journal of Earth Sciences, 2019, 19(4): ES4003.
71 MATHEW S, DAVIDSON-ARNOTT R G D, OLLERHEAD J. Evolution of a beach-dune system following a catastrophic storm overwash event: Greenwich Dunes, Prince Edward Island, 1936-2005[J]. Canadian Journal of Earth Sciences, 2010, 47(3): 273-290.
72 PYE K, BLOTT S J. Decadal-scale variation in dune erosion and accretion rates: an investigation of the significance of changing storm tide frequency and magnitude on the Sefton coast, UK[J]. Geomorphology, 2008, 102(3/4): 652-666.
73 FURMA?CZYK K K, DUDZI?SKA-NOWAK J, FURMA?CZYK K A, et al. Dune erosion as a result of the significant storms at the western Polish coast (Dziwnow Spit example)[J]. Journal of Coastal Research, 2011, 64(special issue): 756-759.
74 FISHER J S, STAUBLE D K. Impact of Hurricane Belle on Assateague Island washover[J]. Geology, 1977, 5: 765-768.
75 RUESSINK B G, JEUKEN M C J L. Dunefoot dynamics along the Dutch coast[J]. Earth Surface Processes and Landforms, 2002, 27(10): 1 043-1 056.
76 GUISADO-PINTADO E, JACKSON D W T. Coastal impact from high-energy events and the importance of concurrent forcing parameters: the cases of Storm Ophelia (2017) and Storm Hector (2018) in NW Ireland[J]. Frontiers in Earth Science, 2019, 7: 190.
77 ELLIS J T, HARRIS M E, ROMáN-RIVERA M A, et al. Application of the Saffir-Simpson hurricane wind scale to assess sand dune response to tropical storms[J]. Journal of Marine Science and Engineering, 2020, 8(9): 670.
78 ESTEVES L S, BROWN J M, WILLIAMS J J, et al. Quantifying thresholds for significant dune erosion along the Sefton Coast, Northwest England[J]. Geomorphology, 2012, 143/144: 52-61.
79 CRAPOULET A, HéQUETTE A, MARIN D, et al. Variations in the response of the dune coast of northern France to major storms as a function of available beach sediment volume[J]. Earth Surface Processes and Landforms, 2017, 42(11): 1 603-1 622.
80 MORTON R. Factors controlling storm impacts on coastal barriers and beaches—a preliminary basis for near real-time forecasting[J]. Journal of Coastal Research, 2002, 18(3): 486-501.
81 CAI Feng, SU Xianze, XIA Dongxing. Study on the difference between storm effects of beaches on two sides of the tropical cyclone Track[J]. Advances in Marine Science, 2004,22(4): 436-445.
81 蔡锋,苏贤泽,夏东兴. 热带气旋前进方向两侧海滩风暴效应差异研究——以海滩对0307号台风“伊布都”的响应为例[J]. 海洋科学进展, 2004,22 (4): 436-445.
82 HARLEY M D, TURNER I L, SHORT A D. New insights into embayed beach rotation: the importance of wave exposure and cross-shore processes[J]. Journal of Geophysical Research: Earth Surface, 2015, 120(8): 1 470-1 484.
83 FIGLUS J, KOBAYASHI N, GRALHER C, et al. Wave overtopping and overwash of dunes[J]. Journal of Waterway, Port, Coastal, and Ocean Engineering, 2011, 137(1): 26-33.
84 BRYANT D B, ANDERSON BRYANT M, SHARP J A, et al. The response of vegetated dunes to wave attack[J]. Coastal Engineering, 2019, 152: 103506.
85 PALMSTEN M L, HOLMAN R A. Laboratory investigation of dune erosion using stereo video[J]. Coastal Engineering, 2012, 60: 123-135.
86 LARSON M, ERIKSON L, HANSON H. An analytical model to predict dune erosion due to wave impact[J]. Coastal Engineering, 2004, 51(8/9): 675-696.
87 SPLINTER K D, PALMSTEN M L. Modeling dune response to an east coast low[J]. Marine Geology, 2012, 329/330/331: 46-57.
88 BEUZEN T, HARLEY M D, SPLINTER K D, et al. Controls of variability in berm and dune storm erosion[J]. Journal of Geophysical Research: Earth Surface, 2019, 124(11): 2 647-2 665.
89 SCHWEIGER C, KAEHLER C, KOLDRACK N, et al. Spatial and temporal evaluation of storm-induced erosion modelling based on a two-dimensional field case including an artificial unvegetated research dune[J]. Coastal Engineering, 2020, 161: 103752.
90 DURáN O, MOORE L J. Vegetation controls on the maximum size of coastal dunes[J]. Proceedings of the National Academy of Sciences of the United States of America, 2013, 110(43): 17 217-17 222.
91 DAVIDSON-ARNOTT R, HESP P, OLLERHEAD J, et al. Sediment budget controls on foredune height: comparing simulation model results with field data[J]. Earth Surface Processes and Landforms, 2018, 43(9): 1 798-1 810.
文章导航

/