• Journal of Geographical Sciences
  • Vol. 30, Issue 7, 1179 (2020)
Yuanting DING1, Jitao YU2、*, and Huangxin CHENG3
Author Affiliations
  • 1School of Environmental Studies, China University of Geosciences, Wuhan 430074, China
  • 2School of Surveying and Land Information Engineering, Henan Polytechnic University, Jiaozuo 454000, Henan, China
  • 3Department of Landscape Architecture, China University of Geosciences, Wuhan 430074, China
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    DOI: 10.1007/s11442-020-1776-x Cite this Article
    Yuanting DING, Jitao YU, Huangxin CHENG. Beach morphodynamic characteristics and classifications on the straight coastal sectors in the west Guangdong[J]. Journal of Geographical Sciences, 2020, 30(7): 1179 Copy Citation Text show less
    References

    [1] et alLongshore variability of beach states and bar types in a microtidal, storm-influenced, low-energy environment. Geomorphology, 241, 175-191(2015).

    [2] Sediment-wave parametric characterization of beaches. Journal of Coastal Research, 14, 347-352(1998).

    [3] et alAnalysis on morphodynamics of sandy beaches in South China. Journal of Coastal Research, 23, 236-246(2007).

    [4] et alAnalysis on morphodynamics of sandy beaches in South China. Acta Oceanologica Sinica, 27, 106-114(2005).

    [5] Application of correspondence analysis to discriminate dynamic depositional environments in Shuidong Bay, western Guangdong Province. Tropic Oceanology, 10, 55-62(1991).

    [6] The response characteristics of beaches in an arc-shaped coast to the typhoon with high waves. China Science Bulletin, 40, 2168-2170(1995).

    [7] Analysis on spatial and temporal processes of beach profile variations. Marine Science Bulletin, 29, 42-48(2000).

    [8] Analysis on geomorphological dynamics of beach profile of intermediate transitional zone in arc-shaped shore. Marine Sciences, 2, 6-12(1990).

    [9] Geomorphological states of beach profiles in an arc-shaped shore of Shuidong, western Guangdong. Tropic Oceanology, 12, 61-68(1993).

    [10] Analysis on beach profile processes of tangential zone in arc-shaped shore of Shuidong Bay in Guangdong. Acta Oceanologica Sinica, 13, 82-90(1991).

    [11] . Bays in West Guangdong. Records of Bays in China, vol. 10, 97-101(1999).

    [12] et alPersistence of storm-induced morphology on a modal low-energy beach: A case study from NW-Iberian Peninsula. Marine Geology, 224, 43-56(2005).

    [13] Patterns, processes and regulatory mechanisms in sandy beach macrofauna: A multi-scale analysis. Marine Ecology Progress Series, 295, 1-20(2005).

    [14] Coupling between macrofauna community structure and beach type: A deconstructive meta-analysis. Marine Ecology Progress Series, 433, 29-41(2011).

    [15] Seasonal changes in beach topography and beach volume in Delaware. Marine Geology, 81, 79-96(1988).

    [16] Tide and tidal current charts for the marginal seas adjacent to China. Chinese Journal of Oceanology and Limnology, 4, 1-16(1986).

    [17] A simple universal equation for grain settling velocity. Journal of Sedimentary Research, 74, 933-937(2004).

    [18] Brazos river bar: A study in the significance of grain size parameters. Journal of Sedimentary Petrology, 27, 3-26(1957).

    [19] et alMorphodynamic classification of sandy beaches in low energetic marine environment. Marine Geology, 242, 235-246(2007).

    [20] et alAn empirical relationship between sea wave spectrum peak period and zero-crossing period. Advances in Marine Science, 22, 16-20(2004).

    [21] et alSpectral signatures for swash on reflective, intermediate and dissipative beaches. Marine Geology, 355, 88-97(2014).

    [22] Flow velocity and sediment transport in the swash zone of a steep beach. Marine Geology, 138, 91-103(1997).

    [23] Geological control of beach morphodynamic state. Marine Geology, 216, 297-314(2005).

    [24] Comment on the article “morphodynamic classification of sandy beaches in low energetic marine environment”. Marine Geology, 255, 96-101(2008).

    [25] et alMorphodynamics of structurally controlled headland-bay beaches in southeastern Brazil: A review. Coastal Engineering, 57, 98-111(2010).

    [26] Beach morphodynamics and profile sequence for a headland bay coast. Journal of Coastal Research, 17, 812-835(2001).

    [27] Airy wave theory and breaker height prediction. Proceedings of 13th Coastal Engineering Conference, ASCE, 405-418(1972).

    [28] et alAssessment on the adjustable fluctuation between erosion and deposition on beach profile in sandy arc-shaped shore. Donghai Marine Science, 20, 20-27(2002).

    [29] Morphodynamic characteristics and classification of headland beaches in South China Coast. Marine Science Bulletin, 34, 181-189(2015).

    [30] Applicability of parametric beach morphodynamic state classification on embayed beaches. Marine Geology, 346, 153-164(2013).

    [31] Seasonal changes in beach morphology along the sheltered coastline of Perth, Western Australia. Marine Geology, 172, 243-263(2001).

    [32] The effect of tide range on beach morphodynamics and morphology: A conceptual beach model. Journal of Coastal Research, 9, 785-800(1993).

    [33] et alThe seasonal profile change characteristics due to beach reshaping southwest of Meizhou Island in Fujian. Transactions of Oceanology and Limnology, 61-68(2005).

    [34] et alThe response of three main beach types to tropical storms in South China. Marine Geology, 275, 244-254(2010).

    [35] Effects of sea level rise on deltaic regions in China and its countermeasures. In: Department of Geosicence, Chinese Academy of Science (ed.), Tendency of Sea Level Rise in Changjiang and Zhujiang River Deltas and Prediction on Sea Level Rise in 2050 A.D. Beijing: Science Press, 18-28(1994).

    [36] Beach morphodynamics and associated hazards in the UK. Plymouth: University of Plymouth(2009).

    [37] Morphodynamic characteristics and classification of beaches in England and Wales. Marine Geology, 286, 1-20(2011).

    [38] et alMorphodynamic response of a meso- to macro-tidal intermediate beach based on a long-term data-set. Geomorphology, 107, 263-274(2009).

    [39] Sand movement along the Scripps Institution Pier. American Journal of Science, 238, 272-284(1940).

    [40] Multiple offshore bars and standing waves. Journal of Geophysical Research, 80, 3838-3840(1975).

    [41] Wave power and beach-stages: A global model. Proceedings of 16th coastal Engineering Conference, ASCE, 1145-1162(1978).

    [42] Three dimensional beach-stage model. The Journal of Geology, 87, 553-571(1979).

    [43] Australian beach systems: Nature and distribution. Journal of Coastal Research, 22, 11-27(2006).

    [44] Single and multi-bar beach change models. Journal of Coastal Research, SI, 141-157(1993).

    [45] Wave, beach and dune interactions in southeastern Australia. Marine Geology, 48, 259-284(1982).

    [46] Rip currents and beach hazards: their impacts on public safety and implications for coastal management. Journal of Coastal Research, SI, 197-209(1994).

    [47] Beach systems of the Sydney region. Australian Geographer, 15, 8-16(1981).

    [48] et alInfragravity swash parameterization on beaches: The role of the profile shape and the morphodynamic beach state. Coastal Engineering, 136, 41-55(2018).

    [49] et alVariability of shore and shoreline evolution. Coastal Engineering, 47, 211-235(2002).

    [50] et alSpatial-temporal changes of the morphodynamic beach state before and after the 2010 mega-earthquake and tsunami along south-central Chile. New Zealand Journal of Marine and Freshwater Research, 51, 237-253(2017).

    [51] et alWave energy assessment in the East China Sea and South China Sea based on ERA-Interim high resolution data. Acta Energiae Solaris Sinica, 36, 1259-1267(2015).

    [52] . Coastal and inshore modern sedimentary in South China(1991).

    [53] et alMorphodynamics of reflective and dissipative beach and inshore systems, Southeastern Australia. Marine Geology, 50, 105-140(1979).

    [54] Morphodynamic variability of surf zones and beaches: A synthesis. Marine Geology, 56, 93-118(1984).

    [55] et alWave-dominated, mesotidal headland-bay beach morphodynamic classsfications of the Shuidong Bay in South China. Acta Oceanologica Sinica, 35, 87-95(2016).

    [56] Analysing the characteristics of wave distribution in the South China Sea on the basis of ship reports. Marine Science Bulletin, 3, 1-8(1984).

    Yuanting DING, Jitao YU, Huangxin CHENG. Beach morphodynamic characteristics and classifications on the straight coastal sectors in the west Guangdong[J]. Journal of Geographical Sciences, 2020, 30(7): 1179
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