Analysis of shoreline changes in the Fangcheng Bay of Guangxi based on remote sensing technique

ZHOU Xiang-jun, LI Xiao-min, MA Yi, WU Pei-qiang

Journal of Marine Sciences ›› 2014, Vol. 32 ›› Issue (1) : 47-55.

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Journal of Marine Sciences ›› 2014, Vol. 32 ›› Issue (1) : 47-55. DOI: 10.3969/j.issn.1001-909X.2014.01.006

Analysis of shoreline changes in the Fangcheng Bay of Guangxi based on remote sensing technique

  • ZHOU Xiang-jun, LI Xiao-min*, MA Yi, WU Pei-qiang
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Abstract

With the population increasing, the boom of industry and city, the policy stimulation, as well as the rise of external trade, shoreline changes accelerated in the Fangcheng Bay. Using Landsat data of 1973, 1979, 1990, 2000 and HJ-1B data of 2010, shoreline changes of the Fangcheng Bay during past 40 years were analyzed. The results show that the shoreline of the Fangcheng Bay kept expanding seaward constantly from 1973 to 2010, resulted in the land area increased by 4 216.61 hm2, while the shoreline length decrease by 36.96 km, which was mainly induced by anthropogenic factors. As for the decreased shoreline, the muddy shoreline occupied mostly and the rocky shoreline occupied secondly. Based on the regional character of the Fangcheng Bay, the study area was divided into three parts: the Fangchengjiangkou coast, the Anbukoujiang coast and the Yuwan Island. The rocky shoreline along the Fangchengjiangkou changed slightly from 1973 to 2010, with an increase near the Fangcheng River Estuary of only 74.58 hm2. Since the shoreline along Anbukoujiang is muddy, it has kept expanding seaward during past 40 years, therefore, many flexuous bays were filled. The shoreline of Yuwan Island changed the most dramatically. There's a 2 027.41 hm2 increase of land area and a 2.46 km decrease of shoreline length. The remote sensing image of Yuwan Island indicates that it had united with the continent in 1990. The fractal dimension shows that the shoreline becomes straighter.

Key words

shoreline change / the Fangcheng Bay / remote sensing

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ZHOU Xiang-jun, LI Xiao-min, MA Yi, WU Pei-qiang. Analysis of shoreline changes in the Fangcheng Bay of Guangxi based on remote sensing technique[J]. Journal of Marine Sciences. 2014, 32(1): 47-55 https://doi.org/10.3969/j.issn.1001-909X.2014.01.006

References

[1] GB/T18190—2000 Oceanological terminology: Marine geology[S]. 2000.
GB/T18190—2000 海洋学术语·海洋地质学[S].2000.
[2] 908 Project Office of State Oceanic Administration. Chinese offshore investigation and assessment technical regulation of coastline measurement: Trial implementation[M]. Beijing: Ocean Press,2007.
国家海洋局908专项办公室.我国近海海洋综合调查与评价专项海岸线修测技术规程:试行本[M].北京:海洋出版社,2007.
[3] CHEN Zheng-hua, MAO Zhi-hua, CHEN Jian-yu. Coastline change monitoring using 4 periods remote sensing data in Zhejiang Province from 1986 to 2009[J].Remote Sensing Technology and Application,2011,26(1):68-73.
陈正华,毛志华,陈建裕.利用4期卫星资料监测1986~2009年浙江省大陆海岸线变迁[J].遥感技术与应用,2011,26(1):68-73.
[4] LI You, WANG Yang-lin, PENG Jian, et al. Research on dynamic changes of coastline in Shenzhen City based on Landsat image[J].Resources Science,2009,31(5):875-883.
李猷,王仰麟,彭建,等.深圳市1978年至2005年海岸线的动态演变分析[J].资源科学,2009,31(5):875-883.
[5] LIU Xin. Analyzing shoreline changes of Tieshan Port in Guangxi Province using remote sensing technology [J]. Geospatial Information,2012,10(1):102-106.
刘鑫.应用遥感方法的广西铁山港区海岸线变迁分析[J].地理空间信息,2012,10(1):102-106.
[6] HUANG Hu, HU Zi-ning, CHEN Xin-geng, et al. Analyses on spatial and temporal changes of Guangxi shoreline based on remote sensing and GIS[J].Journal of Tropical Oceanography,2006,25(1):66-70.
黄鹄,胡自宁,陈新庚,等.基于遥感和GIS相结合的广西海岸线时空变化特征分析[J].热带海洋学报,2006,25(1):66-70.
[7] SHEIK M, CHANDRASEKAR. A shoreline change analysis along the coast between Kanyakumari and Tuticorin, India, using digital shoreline analysis system [J]. Arabia Journal of Geoscience, 2011,14(4):282-293.
[8] DEWIDAR K. Changes in the shoreline position caused by natural processes for coastline of Marsa Alam and Hamata, Red Sea, Egypt[J].International Journal of Geosciences,2011,2:523-529.
[9] ZHAO Zong-ze, LIU Rong-jie, MA Yi, et al. Remote sensing monitoring and analysis of coastline changes in the Meizhou Bay since the last 30 years[J].Coastal Engineering,2013,32(1):19-27.
赵宗泽,刘荣杰,马毅,等.近30年来湄洲湾海岸线变迁遥感监测与分析[J].海岸工程,2013,32(1):19-27.
[10] ZENG Qing-liu. Shoreline change analysis of Shandong Province on remote sensing since 1986[D]. Qingdao: Shandong University of Science and Technology,2012:1-60.
曾庆留.1986年以来山东省海岸线变迁遥感分析[D].青岛:山东科技大学,2012:1-60.
[11] The Navigation Guarantee Department of the Chinese Navy Headquarters. Guide to Chinese ports: South China Sea[M]. Tianjin: China Navigation Publication Press,2005.
中国人民解放军海军司令部航海保障部.中国港口指南:南海海区[M].天津:中国航海图书出版社,2005.
[12] LI Jun-jie. Resources and environment satellite image processing methods[EB/OL].http://www.cresda.com/n16/n1115/n1522/n149706/n149771.files/n149794.pdf.
李俊杰.资源、环境卫星影像加工处理方法[EB/OL].http://www.cresda.com/n16/n1115/n1522/n149706/n149771.files/n149794.pdf.
[13] SUN Wei-fu, MA Yi, ZHANG Jie, et al. Study of remote sensing interpretation keys and extraction technique of different types of shoreline[J].Bulletin of Surveying and Mapping,2011,3:41-44.
孙伟富,马毅,张杰,等.不同类型海岸线遥感解译标志建立和提取方法研究[J].测绘通报,2011,3:41-44.
[14] ZHU Xiao-hua, PAN Ya-juan. Study on fractal determination of coast based on GIS[J].Marine Science Bulletin,2002,21(2):49-54.
朱晓华,潘亚娟.GIS支持的海岸类型分形判定研究[J].海洋通报,2002,21(2):49-54.
[15] ZHANG Hua-guo, HUANG Wei-gen. Study on spatial scale of shoreline remote sensing information based on fractal theory[J]. Journal of Remote Sensing,2006,10(4):463-468.
张华国,黄韦艮.基于分形的海岸线遥感信息空间尺度研究[J].遥感学报,2006,10(4):463-468.
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