참고문헌
- 국립해양조사원 (2006) 선갑도분근 연안해역 해저정보조사 결과보고서. 123 p
- 금병철, 신동혁, 정섬규 , 이용국, 오재경 (2010a) 황해 경기만 남부해역에 발달된 층면구조의 형태적 특징과 제어요인. 한국지구과학회지 31(6):608-624
- 금병철, 신동혁 , 정섬규 , 장석, 장남도 , 오재경 (2010b) 경기만 남부에 발달된 해저지형의 형태적 특징 및 해사채취에 의한 변화. Ocean and Polar Res 32(4):337-350 https://doi.org/10.4217/OPR.2010.32.4.337
- 김태희, 오희진, 윤용훈 (2004) 경기만 주변 해역의 국지파랑 관측자료 비교. 한국기상학회지 40(4):485-495
- 박문진 (2008) 화옹(남양만) 방조제에 따른 아산만의 조석변화. 한국해양학회지 바다 13(4):320-324
- 박준석 (2007) HEM-3D 수치모델을 이용한 경기만 남부지역의 지형변화 양상. 이학석사 학위논문, 인하대학교 59 p
- 방효기, 이치원, 오재경 (1994a) 한반도 서부대륙붕에 발달한 사퇴의 발생기원과 특성. 한국해양학회지 29(3):217-227
- 방효기, 이호영, 장정해, 이치원, 오재경 (1994b). 경기만에 발달한 조류성사퇴의 역사 및 특성. 한국해양학회지 29(3): 278-286
- 손규희, 한경남 (2007) 경기만의 해사채취에 의한 생물군집 구조변경 . Ocean and Polar Res 29(3):205-216 https://doi.org/10.4217/OPR.2007.29.3.205
- 오재경, 방기영 (2003) 한강 유역과 경기만 퇴적환경의 연계 성. 한국해양학회지 바다 8(3):222-236
- 유옥환, 이형곤, 이재학, 김동성 (2006) 경기만에서 해사채취 가 대형저서동물 군집구조에 미치는 영향. Ocean and Polar Res 28(2):129-144 https://doi.org/10.4217/OPR.2006.28.2.129
- 장태수, 민건홍, 서영교, 하헌준, 백건하 (2012) 다중빔 음향 측심기를 이용한 해저수중사구의 층면구조 분석 : 어청도 서부해역. 한국수로학회지 1(1):57-65
- 최동림, 김성렬, 석봉출 , 한상준 (1992) 한반도 황해 중부 태 안반도 근해 사질퇴적물의 이동 . 한국해양학회지 27(1): 66-77
- 환경부 (1999) 해양 환경감시 및 평가기술 -해저층 퇴적물 이동 관측 및 예측기술. 한국해양연구원, BSPN9633800-1000-5, 359 p
- 해양수산부 (2007) 해사채취의 친환경적 관리방안 연구 (III). 한국해양수산개발원 , GOVP1200810214, 1174 p
- Ashley GM (1990) Classification of large-scale subaqueous bedforms: a new look at an old problem. J Sediment Petrol 60(1):160-172 https://doi.org/10.2110/jsr.60.160
- Baas JH (1994) A flume study on the development and equilibrium morphology of current ripples in very fine sand. Sedimentology 41(2):185-209 https://doi.org/10.1111/j.1365-3091.1994.tb01400.x
- Baas JH (1999) An empirical model for the development and equilibrium morphology of current ripples in fine sand. Sedimentology 46(1):123-138 https://doi.org/10.1046/j.1365-3091.1999.00206.x
- Bartholdy J, Bartholomae A, Flemming BW (2002) Grain-size control of large compound flow-transverse bedforms in a tidal inlet of the Danish Wadden Sea. Mar Geol 188(3-4):391-413 https://doi.org/10.1016/S0025-3227(02)00419-X
- Besio G, Blondeaux P, Brocchini M, Vittori G (2004) On the modeling of sand wave migration. J Geophy Res 109(C4): C04018. doi:10.1029/2002JC001622
- Buijsman MC, Ridderinkhof HO (2008) Long-term evolution of sand waves in the marsdiep inlet. II: Relation to hydrodynamics. Continental Shelf Res 28(9):1202-1215 https://doi.org/10.1016/j.csr.2008.02.014
- Chang TS, Kim SP, Yoo DG, Lee SJ, Lee EI (2010) A large mid-channel sand bar in the marcrotidal seaway of Asan Bay, Korea; 30 years of morphologic response to anthropogenic impacts. Geo-Mar Lett 30:15-22 https://doi.org/10.1007/s00367-009-0146-6
- Chough SK (1983) Marine geology of Korean Seas. Internation Human Resources Developement Coopration, Boston, 157 p
- Chu YS (2000) Sediment dynamics and maintenance processes of linear tidal sand body; Jangan sandbank in the central west coast of Korea. Ph.D. Thesis, Seoul National University, 240 p
- Ernstsen VB, Noormets R, Winter C, Hebbeln D (2005) Development of subaqueous barchanoid-shaped dunes due to lateral grain size vaiability in a tidal inlet channel of the Danish Wadden Sea. J Geophy Res 110(F4): F04S08. doi:10.1029/2004JF000180
- Ernstsen VB, Noormets R, Winter C, Hebbeln D, Bartholom A, Flemming BW, Barholdy J (2006) Quantification of dune dynamics during a tidal cycle in an inlet channel of the Danish Wadden Sea. Geo-Mar Lett 26(3):151-163. https://doi.org/10.1007/s00367-006-0026-2
- Flemming BW (2000) The role of grain size, water depth and flow velocity as scaling factors controlling the size of subaqueous dunes. In: Marine Sandwave Dynamics, Proceeding of an International Workshop, Lille, France, 23 and 24 March 2000, pp 240
- Glenn SM, Grant WD (1987) A suspended sediment stratification correction for combined wave and current flows. J Geophys Res 92(C8):8244-8264 https://doi.org/10.1029/JC092iC08p08244
- Hoekstra P, Bell P, Van Santen P, Roode N, Levoy F, Whitehous R (2004) Bedform migration and bedload transport on an intertidal shoal. Cont Shelf Res 24(11): 1249-1269 https://doi.org/10.1016/j.csr.2004.03.006
- Jung WY, Suk BC, Min GH, Lee YK (1998) Sedimentary structure and origin of a mud-cored pseudo-tidal sand ridge, eastern Yellow Sea, Korea. Mar Geol 151(1-4):73- 88 https://doi.org/10.1016/S0025-3227(98)00058-9
- Knappen MAF (2005) Sandwave migration predictor based on shape information. J Geophy Res 110(F4):F04S11. doi:10.1029/2004JF000195
- Knappen MAF, Van Bergen Henegouw CN, Hu YY (2005) Quantifying bedform migration using multi-beam sonar. Geo-Mar Lett 25(5):306-314 https://doi.org/10.1007/s00367-005-0005-z
- Kubicki A (2008) Large and very large subaqueous dunes on the continental shelf off southern Vietnam, South China Sea. Geo-Mar Lett 28(4):229-238 https://doi.org/10.1007/s00367-008-0103-9
- Lee HJ, Yoon SH (1997) Development of stratigraphy and sediment distribution in the northeastern Yellow Sea during Holocene sea-level rise. J Sediment Res 67(2): 341-349
- Lee HJ, Lee S (2011) Sand Transport offshore the Saemangeum Dike, Midwest Coast of Korea. J Coastal Res 27(1):153- 165 https://doi.org/10.2112/JCOASTRES-D-10-00086.1
- Lobo FJ, Hernndez-Molina FJ, Somoza L, Rodero J, Maldonado A, Barnolas A (2000) Patterns of bottom current flow deduced from dune asymmetries over the Gulf of Cadiz shelf (southwest Spain). Mar Geol 164(3): 91-117 https://doi.org/10.1016/S0025-3227(99)00132-2
- McCave IN, Langhorne DN (1982) Sand waves and sediment transport around the end of a tidal sand bank. Sedimentology 29(1):95-110 https://doi.org/10.1111/j.1365-3091.1982.tb01712.x
- Stride AH (1963) Current swept sea floors near the southern half of Great Britain. Q J Geol Soc Lond 119(1-4):175- 197 https://doi.org/10.1144/gsjgs.119.1.0175
- Van den Berg JH (1987) Bedform migration and bed-load transport in some rivers and tidal environments. Sedimentology 34(4):681-698 https://doi.org/10.1111/j.1365-3091.1987.tb00794.x
- Van Dijk TAGP, Kleinhans MG (2005) Porcesses controlling the dynamics of compound sand waves in the North Sea, Netherlands. J Geophys Res 110(F4):F04S10. doi:10.1029/2004JF000173
- Van Landeghem KJJ, Wheeler AJ, Mitchell N, Sutton G (2009) Variations in sediment wave dimensions across the tidally dominated Irish Sea, NW Europe. Mar Geol 263(1-4):108-119 https://doi.org/10.1016/j.margeo.2009.04.003
- Van Landeghem KJJ, Baas JH, Mitchell NC, Wilcockson D, Wheeler AJ (2012) Reversed sediment wave migration in the Irish Sea, NW Europe: A reappraisal of the validity of geometry-based predictive modelling and assumptions. Mar Geol 295-298:95-112 https://doi.org/10.1016/j.margeo.2011.12.004
- Van Rijn LC (1984) Sediment transport, Part I: bedload transport. J Hydraul Eng 110(10):1431-1456 https://doi.org/10.1061/(ASCE)0733-9429(1984)110:10(1431)
- Venditti JG, Church M, Bennet SJ (2005) On the transition between 2D and 3D dunes. Sedimentology 52(6):1343- 1359 https://doi.org/10.1111/j.1365-3091.2005.00748.x
- Wienberg C, Hebbln D (2005) Impact of dumped sediments on subaqueous dunes, outer Weser Estuary, German Bight, southeastern North Sea. Geo-Mar Lett 25(1):43-53
- Xu JP, Wong FL, Kvitdk R, Smith DP, Paull CK (2008) Sandwave migration in Monterey Submarine Canyon, Central California. Mar Geol 248(3-4):193-212 https://doi.org/10.1016/j.margeo.2007.11.005
피인용 문헌
- Monitoring of Tidal Sand Shoal with a Camera Monitoring System and its Morphologic Change vol.39, pp.3, 2015, https://doi.org/10.5916/jkosme.2015.39.3.326
- Overview of the KIOST-HYU Joint Experiment for Acoustic Propagation in Shallow Water Geological Environment vol.34, pp.6, 2015, https://doi.org/10.7776/ASK.2015.34.6.411
- Improvements in the Marine Environmental Survey on Impact of Seawater Qualities and Ecosystems due to Marine Sand Mining vol.20, pp.2, 2014, https://doi.org/10.7837/kosomes.2014.20.2.143
- Modulation of Tidal Channel Signatures on SAR Images Over Gyeonggi Bay in Relation to Environmental Factors vol.10, pp.4, 2018, https://doi.org/10.3390/rs10040566