Detecting shoreline change employing remote sensing images (Case study: Beris Port - east of Chabahar, Iran)

سال انتشار: 1398
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 163

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شناسه ملی سند علمی:

JR_IJCOE-3-4_001

تاریخ نمایه سازی: 15 بهمن 1399

چکیده مقاله:

Coastal areas are one of the most crucial and important area in each country. They are also one the most dynamics area, which undergo significant changes in relatively short periods. Protecting coastlines from erosion and/or sedimentation thus, is one of the most important duties in each country. In this study, shoreline change in the Beris Port - east of Chabahar, Iran, was investigated using remote sensing technique and DSAS tools. Beris Port is located 85 km east of Chabahar, on the Makran coast. Landsat 8 and 5 satellite images were used to detect shoreline change, due to the portchr('39')s construction date, satellite imagery of 1988, 1990, 2014 and 2019 was used. Using the NSM, SCE, EPR and LRR statistical indexes of the DSAS tool, erosion and accretion rates were calculated in for the area. According to the LRR index, the lowest shoreline change rate is -1.51 m/year and is detected to be to the east of port. The highest rate of shoreline change is 7.44 m/year at the port. According the results, the main reason for this high rate of change is the location of the port, which is in the area perpendicular to its neighborhood coastal area, which causes to trap the current in this area to increase its dynamic activities. Shortly speaking, it was found that the accretion is dominant in port Beris and east of the port is the zone with least amount of accretion.

کلیدواژه ها:

نویسندگان

Danial Ghaderi

University of Hormozgan

Maryam Rahbani

University of Hormozgan

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  • Ardani S, Soltanpour M (2015) Modelling of sediment transport in ...
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  • Lillesand T, Kiefer RW, Chipman J (2015) Remote sensing and ...
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  • Dolan R, Fenster MS, Holme SJ (1991) Temporal analysis of ...
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  • 1- Parthasarathy K, Deka PC (2019) Remote sensing and GIS ...
  • Van TT, Binh T. T (2008) Shoreline change detection to ...
  • Bird ECF, Ongkosongo OS (1980) Environmental changes on the coasts ...
  • Oost A, Hoekstra P, Wiersma A, Flemming B, Lammerts E, ...
  • Van Cuong C, Russell M, Brown S, & Dart P ...
  • Marfai MA, Almohammad H, Dey S, Susanto B, King L ...
  • Do AT, de Vries S, Stive MJ (2018) The Estimation ...
  • Maiti S, Bhattacharya AK (2009) Shoreline change analysis and its ...
  • Nassar K, Mahmod W E, Fath H, Masria A, Nadaoka ...
  • Ardani S, Soltanpour M (2015) Modelling of sediment transport in ...
  • Hajivalie F, Soltanpour M (2007) Beris fishing port, interfering in ...
  • Thieler ER, Himmelstoss EA, Zichichi JL, Ergul A (2009) The ...
  • Sayehbani M, Ghaderi D (2019) Numerical Modeling of Wave and ...
  • Berrisford P, Dee D, Poli P, et al (2011) The ...
  • Blodget H, Taylor P, Roark J (1991) Shoreline changes along ...
  • Lillesand T, Kiefer RW, Chipman J (2015) Remote sensing and ...
  • Louati M, Saïdi H, Zargouni F (2015) Shoreline change assessment ...
  • Mather PM, Koch M (2011) Computer processing of remotely-sensed images: ...
  • Masria A, Nadaoka K, Negm A, Iskander M (2015) Detection ...
  • Niya AK, Alesheikh AA, Soltanpor M, Kheirkhahzarkesh MM (2013) Shoreline ...
  • Kuleli T (2010) Quantitative analysis of shoreline changes at the ...
  • Chand P, Acharya P (2010) Shoreline change and sea level ...
  • Emran A, Rob MA, Kabir MH, Islam MN (2016) Modeling ...
  • Dolan R, Fenster MS, Holme SJ (1991) Temporal analysis of ...
  • Crowell M, Douglas BC, Leatherman SP (1997) On forecasting future ...
  • Dolan R, Fenster MS, Holme SJ (1991) Temporal analysis of ...
  • Crowell M, Douglas BC, Leatherman SP (1997) On forecasting future ...
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