Satellite Data and Applying the DSAS Tool to ShorelineChange Assessment of the Mekong Delta
- Hanoi University of Mining and Geology, Vietnam
- Institute of Marine Environment and Resources (IMER), Vietnam Academy of Science and Technology (VAST), Haiphong, Viet Nam
- School of Mechanical and Automotive Engineering, Zhejiang University science and Technology, Hangzhou, P.R.China
- Anji-zust research institute, Huzhou, P.R.China
Received: 2024-09-07
Revised: 2024-10-26
Accepted: 2025-01-02
Published in Issue 2026-06-30
Published Online: 2025-05-25
Copyright (c) -1 Bui Minh Quan, Ngo Thi Kim Chi, Bui Vinh Hau, Nguyen Dac Ve, Binbin Jiang (Author)

This work is licensed under a Creative Commons Attribution 4.0 International License.
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Abstract
The Mekong Delta is the third-largest delta in the world, with a large population, a significant food production area in Vietnam and home to large-scale biodiversity, is seriously affected by erosion - accretion of the coast, land subsidence. Several dams have been built upstream of the delta (Manwan, Nuozhadu…), and large-scale commercial sand mining in the river and delta channels, along with subsidence caused by groundwater extraction, are the causes of sediment decline in the Mekong Delta. This affects the daily lives of more than 21 million people. Using high-resolution satellite imagery (Landsat) for the period 1989-2020, this paper assesses erosion-accretion rates at the Mekong estuary to Ca Mau cape. Extracting the shoreline using the Normalized Difference Vegetation Index used to measure vegetation change and the Digital Shoreline Analysis System used to analyze changes in the shoreline. The results show that the Mekong estuary is having an alternating process of erosion-accretion, the balance of erosion-accretion tends to imbalance with dominant accretion. The Mekong estuary area, including the Tieu, Dai, Ba Lai, Ham Luong, Co Chien, Cung Hau, Dinh An and Tran De mouths, experiences erosion and accretion ranging from 1.37 to 120.98 m/yr and 74.94 to 117.06 m/yr, respectively. From My Thanh mouth to Ca Mau Cape, with erosion ranging from 66.07 to 115.5 m/yr and accretion from 29.67 to 91.06 m/yr, respectively. Our research emphasizes the fragility of the Mekong Delta coastline and underscores the critical role of remote sensing imagery in effective shoreline management.
Keywords
- Mekong Delta,
- Erosion and accretion,
- Landsat,
- Shoreline change
References
- Anthony EJ, Brunier G, Besset M, Goichot M, Dussouillez P, Nguyen VL (2015) Linking rapid erosion of the Mekong River delta to human activities. Scientific Reports 5: 1-12. https://doi.org/10.1038/srep14745
- Arjmandzadeh R., Rashvanlou V.S., Dabiri R., Almasi A. (2017) Satellite thermal surveys to detecting hidden active faults and fault termination, Case study of Quchan fault, NE Iran, Iranian Journal of Earth Sciences 9(1):39-47
- Bao TQ (2011) Effect of mangrove forest structures on wave attenuation in coastal Vietnam. Oceanologia 53: 807-818. https://doi.org/10.5697/oc.53-3.807
- Bera R, Maiti R (2019) Quantitative analysis of erosion and accretion (1975–2017) using DSAS — A study on Indian Sundarbans. Regional Studies in Marine Science 28: 100583. https://doi.org/10.1016/j.rsma.2019.100583
- Besset M, Anthony EJ, Brunier G, Dussouillez P (2016) Shoreline change of the Mekong River delta along the southern part of the South China Sea coast using satellite image analysis (1973-2014). Géomorphologie: relief, processus, environnement 22: 137-146. https://doi.org/10.4000/geomorphologie.11336
- Besset M, Brunier G, Anthony E (2015) Recent morphodynamic evolution of coastline of Mekong river Delta, towards an increased vulnerability. Geophysical Research Abstracts 17: 2015-5427.
- Binh DV, Kanoush S, Mai NP, Sumi T (2018) Water Level Changes Under Increased Regulated Flows and Degraded River in Vietnamese Mekong Delta. Journal of Japan Society of Civil Engineers, Ser. B1 (Hydraulic Engineering) 74: 871-876. https://doi.org/10.2208/jscejhe.74.5_i_871
- Boretti A (2020) Implications on food production of the changing water cycle in the Vietnamese Mekong Delta. Global Ecology and Conservation 22. https://doi.org/10.1016/j.gecco.2020.e00989
- Bravard J, Goichot M, Gaillot S (2013) Geography of Sand and Gravel Mining in the Lower Mekong River: First Survey and Impact Assessment. EchoGéo 26: 1-18. https://doi.org/10.4000/echogeo.13659
- Coleman JM, Roberts HH (1989) Deltaic coastal wetlands. Coastal lowlands, geology and geotechnology. Proc., KNGMG symposium, The Hague, 1987 24: 1-24.
- Commission Mekong River (2005) Overview of the Hydrology of the Mekong Basin.
- Dalrymple RW, Zaitlin BA, Boyd R (1992) Estuarine facies models : conceptual basis and stratigraphic implications. Journal of Sedimentary Petrology 62: 1130-1146. https://doi.org/10.1306/D4267A69-2B26-11D7-8648000102C1865D
- Dar IA, Dar MA, 2009 Prediction of shoreline recession using geospatial technology: A case study of Chennai coast, Tamil Nadu, India. Journal of Coastal Research 25: 1276-1286. https://dx.doi.org/10.2112/JCOASTRES-D-09-00051.1
- Do VL (2016) Final result report of investigation and assessment of modern geodynamics to improve climate change scenarios and adaptation solution proposals in Mekong Plain. Archived at Geological Information Centre and Museum: Vietnam Geological Department, 500p (in Vietnamese).
- Fan D, Nguyen DV, Su J, Bui VV, Tran DL (2019) Coastal morphological changes in the Red River Delta under increasing natural and anthropic stresses. Anthropocene Coasts 2: 51-71. https://doi.org/10.1139/anc-2018-0022
- Fletcher CH, Romine BM, Genz AS, Barbee MM, Dyer M, Anderson TR, Lim SC, Vitousek S, Bochicchio C, Richmond BM (2012) National assessment of shoreline change: Historical shoreline change in the Hawaiian Islands: U.S. Geological Survey Open-File Report 2011–1051. 55. http://pubs.usgs.gov/of/2011/1051
- Gebhardt S, Nguyen LD, Kuenzer C (2012) Mangrove Ecosystems in the Mekong Delta – Overcoming Uncertainties in Inventory Mapping Using Satellite Remote Sensing Data. Springer Environmental Science and Engineering, pp. 315-330. https://doi.org/10.1007/978-94-007-3962-8_12
- Griffin M, Burke H (2003) Compensation of Hyperspectral Data for Atmospheric Effects. Lincoln Laboratory Journal 14: 29-54.
- Gugliotta M, Saito Y, Nguyen VL, Ta TKO, Nakashima R, Tamura T, Uehara K, Katsuki K, Yamamoto S (2017) Process regime, salinity, morphological, and sedimentary trends along the fluvial to marine transition zone of the mixed-energy Mekong River delta, Vietnam. Continental Shelf Research 147: 7-26. https://doi.org/10.1016/j.csr.2017.03.001
- Ha DT, Ouillon S, Van VG (2018) Water and suspended sediment budgets in the lower Mekong from high-frequency measurements (2009-2016). Water (Switzerland) 10. https://doi.org/10.3390/w10070846
- Jayson-Quashigah PN, Addo KA, Kodzo KS (2013) Medium resolution satellite imagery as a tool for monitoring shoreline change. Case study of the Eastern coast of Ghana. Journal of Coastal Research 65: 511-516. https://doi.org/10.2112/si65-087.1
- Khoi DN, Dang TD, Pham LTH, Loi PT, Thuy NTD, Phung NK, Bay NT (2020) Morphological change assessment from intertidal to river-dominated zones using multiple-satellite imagery: A case study of the Vietnamese Mekong Delta. Regional Studies in Marine Science 34: 101087. https://doi.org/10.1016/j.rsma.2020.101087
- Kondolf GM, Rubin ZK, Minear JT (2014) Dams on the Mekong: Cumulative sediment starvation. Water Resources Research 50: 5158-5169. https://doi.org/10.1002/2013WR014651
- Kummu M, Lu XX, Rasphone A, Sarkkula J, Koponen J (2008) Riverbank changes along the Mekong River: Remote sensing detection in the Vientiane-Nong Khai area. Quaternary International 186: 100-112. https://doi.org/10.1016/j.quaint.2007.10.015
- Li X, Liu JP, Saito Y, Nguyen VL (2017) Recent evolution of the Mekong Delta and the impacts of dams. Earth-Science Reviews 175: 1-17. https://doi.org/10.1016/j.earscirev.2017.10.008
- Li Y, Chen A, Mao G, Chen P, Huang H, Yang H, Wang Z, Wang K, Chen H, Meng Y, Zhong R, Wang P, Wang H, Liu J (2023) Multi-model analysis of historical runoff changes in the Lancang-Mekong River Basin – Characteristics and uncertainties, Journal of Hydrology 619. https://doi.org/10.1016/j.jhydrol.2023.129297
- Liu JP, Demaster DJ, Nittrouer CA, Eidam EF, Nguyen TT (2017) A seismic study of the Mekong subaqueous delta: Proximal versus distal sediment accumulation. Continental Shelf Research 147: 1-16. https://doi.org/10.1016/j.csr.2017.07.009
- Loisel H, Mangin A, Vantrepotte V, Dessailly D, Ngoc Dinh D, Garnesson P, Ouillon S, Lefebvre JP, Mériaux X, Minh Phan T (2014) Variability of suspended particulate matter concentration in coastal waters under the Mekong’s influence from ocean color (MERIS) remote sensing over the last decade. Remote Sensing of Environment 150: 218-230. https://doi.org/10.1016/j.rse.2014.05.006
- Lu XX and Siew RY (2006) Water discharge and sediment flux changes over the past decades in the Lower Mekong River: Possible impacts of the Chinese dams. Hydrology and Earth System Sciences 10: 181-195. https://doi.org/10.5194/hess-10-181-2006
- Marchesiello P, Nguyen NM, Gratiot N, Loisel H, Anthony EJ, Dinh CS, Nguyen T, Almar R, Kestenare E (2019) Erosion of the coastal Mekong delta: Assessing natural against man induced processes. Continental Shelf Research 181: 72-89. https://doi.org/10.1016/j.csr.2019.05.004
- Meade RH (1996) River-Sediment Inputs to Major Deltas. In Sea-Level Rise and Coastal Subsidence: Causes, Consequences and Strategies. Coastal Systems and Continental Margins 2: 63-85. https://doi.org/10.1007/978-94-015-8719-8_4
- Milliman JD, Farnsworth KL (2011) River Discharge to the Coastal Ocean: A Global Synthesis. River Discharge to the Coastal Ocean: A Global Synthesis: Cambridge University Press, 384p. https://doi.org/10.1017/CBO9780511781247
- Milliman JD, Syvitski JPM (1992) Geomorphic/tectonic control of sediment discharge to the ocean: the importance of small mountainous rivers. Journal of Geology 100: 525-544. https://doi.org/10.1086/629606
- Minderhoud PSJ, Erkens G, Pham VH, Bui VT, Erban L, Kooi H, Stouthamer E (2017) Impacts of 25 years of groundwater extraction on subsidence in the Mekong Delta, Vietnam. Environmental Research Letters 12. https://doi.org/10.1088/1748-9326/aa7146
- Nguyen AD, Savenije HHG (2006) Salt intrusion in multi-channel estuaries: A case study in the Mekong Delta, Vietnam. Hydrology and Earth System Sciences 10: 743-754. https://doi.org/10.5194/hess-10-743-2006
- Nowacki DJ, Ogston AS, Nittrouer CA, Fricke AT, Pham DT, Van (2015) Sediment dynamics in the lower Mekong River: Transition from tidal river to estuary. Journal of Geophysical Research: Oceans 120: 6363-6383. https://doi.org/10.1002/2015JC010754
- Pawar U, Try S, Muttil N, Rathnayake U, Suppawimut W (2023) Frequency and trend analyses of annual peak discharges in the Lower Mekong Basin. Heliyon 9: e19690. https://doi.org/10.1016/j.heliyon.2023.e19690
- Phan HM, Reniers A, Ye Q, Stive M (2017) Response in the Mekong Deltaic Coast To Its Changing Sediment Sources and Sinks. Proceedings of Coastal Dynamics 2017: 311-322. https:// repository.tudelft.nl/record/uuid:e964293a-f6e9-4ae1-ba51-a550e9ad3cc0
- Phan LK, Van Thiel De Vries JSM, Stive MJF (2015) Coastal mangrove squeeze in the Mekong Delta. Journal of Coastal Research 31: 233-243. https://doi.org/10.2112/JCOASTRES-D-14-00049.1
- Rouse JW, Haas RH, Schell JA, Deeering D (1973) Monitoring vegetation systems in the Great Plains with ERTS (Earth Resources Technology Satellite). Third Earth Resources Technology Satellite-1 Symposium 1: 309-317.
- Smajgl A, Toan TQ, Nhan DK, Ward J, Trung NH, Tri LQ, Tri VPD, Vu PT (2015) Responding to rising sea levels in the Mekong Delta. Nature Climate Change 5: 167-174. https://doi.org/10.1038/nclimate2469
- Souza Filho PWM, Farias Martins E do S da Costa FR (2006) Using mangroves as a geological indicator of coastal changes in the Bragança macrotidal flat, Brazilian Amazon: A remote sensing data approach. Ocean and Coastal Management 49: 462-475. https://doi.org/10.1016/j.ocecoaman.2006.04.005
- Syvitski JPM, Charles JV, Albert JK, Pamela G (2005) Impact of humans on the flux of terrestrial sediment to the global coastal ocean. Science (New York, N.Y.) 308: 376-380. https://doi.org/10.1126/SCIENCE.1109454
- Ta TKO, Nguyen VL, Tateishi M, Kobayashi I, Saito Y (2001) Sedimentary facies, diatom and foraminifer assemblages in a late Pleistocene-Holocene incised-valley sequence from the Mekong River Delta, Bentre Province, Southern Vietnam: The BT2 core, Journal of Asian Earth Sciences 20: 83-94. https://doi.org/10.1016/S1367-9120(01)00028-1
- Ta TKO, Nguyen VL, Tateishi M, Kobayashi I, Saito Y (2005) Holocene Delta Evolution and Depositional Models of the Mekong River Delta, Southern Vietnam. River Deltas-Concepts, Model, and Examples 453-466. https://doi.org/10.2110/pec.05.83.0453
- Ta TKO, Nguyen VL, Tateishi M, Kobayashi I, Saito Y, Nakamura T (2002) Sediment facies and Late Holocene progradation of the Mekong River Delta in Bentre Province, southern Vietnam: An example of evolution from a tide-dominated to a tide- and wave-dominated delta. Sedimentary Geology 152: 313-325. https://doi.org/10.1016/S0037-0738(02)00098-2
- Tamura T, Horaguchi K, Saito Y, Nguyen VL, Tateishi M, Ta TKO, Nanayama F, Watanabe K (2010) Monsoon-influenced variations in morphology and sediment of a mesotidal beach on the Mekong River delta coast. Geomorphology 116: 11-23. https://doi.org/10.1016/j.geomorph.2009.10.003
- Thieler ER, Himmelstoss EA, Zichichi JL, Ergul A (2009) The Digital Shoreline Analysis System (DSAS) Version 4.0 - An ArcGIS extension for calculating shoreline change. Open-File Report. https://doi.org/10.3133/OFR20081278
- Tong PHS, Auda Y, Populus J, Aizpuru M, Al Habshi A, Blasco F (2004) Assessment from space of mangroves evolution in the Mekong Delta, in relation to extensive shrimp farming. International Journal of Remote Sensing 25: 4795-4812. https://doi.org/10.1080/01431160412331270858
- Unverricht D, Nguyen TC, Heinrich C, Szczuciński W, Lahajnar N, Stattegger K (2014) Suspended sediment dynamics during the inter-monsoon season in the subaqueous Mekong Delta and adjacent shelf, southern Vietnam. Journal of Asian Earth Sciences 79: 509-519. https://doi.org/10.1016/j.jseaes.2012.10.008
- Unverricht D, Szczuciński W, Stattegger K, Jagodziński R, Le XT, Kwong LLW (2013) Modern sedimentation and morphology of the subaqueous Mekong Delta, Southern Vietnam. Global and Planetary Change 110: 223-235. https://doi.org/10.1016/j.gloplacha.2012.12.009
- Vörösmarty CJ, Meybeck M, Fekete B, Sharma K, Green P, Syvitski JPM (2003) Anthropogenic sediment retention: Major global impact from registered river impoundments. Global and Planetary Change 39: 169-190. https://doi.org/10.1016/S0921-8181(03)00023-7
- Vu MT, Lacroix Y, Than VV, Nguyen VT (2020) Prediction of shoreline changes in Almanarre beach using geospatial techniques. Indian Journal of Geo-Marine Sciences 49: 207–217.
- Wang JJ, Lu XX, Kummu M (2011) Sediment load estimates and variations in the lower Mekong River. River Research and Applications 27: 33-46. https://doi.org/10.1002/rra.1337
- Yazdi A., ShahHoseini E., Razavi R. (2016) AMS, A method for determining magma flow in Dykes (Case study: Andesite Dyke). Research Journal of Applied Sciences 11(3): 62-67. DOI: http://doi.org/10.3923/rjasci.2016.62.67
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