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国土资源遥感  2016, Vol. 28 Issue (3): 188-193    DOI: 10.6046/gtzyyg.2016.03.29
  技术应用 本期目录 | 过刊浏览 | 高级检索 |
近42年黄河口海岸线遥感监测与变迁分析
王集宁, 蒙永辉, 张丽霞
山东省地质环境监测总站, 济南 250014
Remote sensing monitoring and change analysis of Yellow River Estuary coastline in the past 42 years
WANG Jining, MENG Yonghui, ZHANG Lixia
Shandong Province Geological Environment Monitoring Station, Ji'nan 250014, China
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摘要 

基于MSS,TM及OLI等遥感图像数据,在面向对象分类技术的支持下,采用多尺度分割、归一化差值水体指数(normalized difference water index,NDWI)、大津算法(OTSU)水陆分离、互信息操作和特征知识融入等方法,实现了黄河口海岸线1973,1977,1984,1991,2000,2010和2014年共7个时相的海岸线自动提取;借助ArcGIS空间分析技术,完成了1973-2014年黄河口海岸线遥感动态监测与变迁分析。研究结果表明:近42 a来黄河口海岸线总体呈现向海洋方向的增长趋势,海岸线总长度大约增加了298.8 km;海岸线的时空变化特征显著,不同时间段的不同海岸地段呈现不同的特点;根据海岸线的进退情况,可将黄河口海岸线分为强进淤型海岸、强蚀退型海岸和蚀退型海岸。在岸线进退的驱动力上,黄河口海岸线的变化主要受黄河流路变化和海水侵蚀的影响,尤其是黄河入海口的流路改变;人类活动作为第三驱动力,加剧了海岸线变化特征的复杂性。

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潘红播
邹峥嵘
张过
张云生
汪韬阳
关键词 高分卫星影像同轨约束区域网平差有理多项式模型(RFM)    
Abstract

Using object-oriented classification technology, the authors achieved the automatic extraction of the Yellow River Estuary coastline in 1973, 1977, 1984, 1991, 2000, 2010 and 2014, and completed the remote sensing dynamic monitoring and the change analysis for the Yellow River Estuary coastline from 1973 to 2014. The results show that the length of shoreline in the Yellow River Estuary was increased by about 298.8 km2 in the past 42 years overall. The coastline change process had an obvious spatio-temporal characteristics. The change rate was different at different periods and different locations. According to the characteristics of the coastline expanion and retreat, it could be divided into 3 categories:fast silt coastline, strong erosion coastline and erosion regressive coastline. For the driving force, the location of Yellow River port and sea erosion seem to have been the main factors. The coastline was mainly influenced by the flow path of the Yellow River. And, the recent human activity seems to be the third driving force. Human activities, such as port building, saltpan construction and exploitation of coastal resources, have exacerbated the complexity of coastline change.

Key wordshigh resolution satellite image    same strip constraint    block adjustment    rational function model(RFM)
收稿日期: 2015-04-14      出版日期: 2016-07-01
:  TP79  
基金资助:

山东省国土资源厅2011年度省地质勘查项目"黄河三角洲高效生态经济区海(咸)水入侵调查与监控预警系统建设"(编号:鲁勘字[2011]14号)资助。

作者简介: 王集宁(1972-),男,高级工程师,主要从事海岸带地质环境遥感调查与矿山地质环境综合监测研究。Email:wjn8934045@126.com。
引用本文:   
王集宁, 蒙永辉, 张丽霞. 近42年黄河口海岸线遥感监测与变迁分析[J]. 国土资源遥感, 2016, 28(3): 188-193.
WANG Jining, MENG Yonghui, ZHANG Lixia. Remote sensing monitoring and change analysis of Yellow River Estuary coastline in the past 42 years. REMOTE SENSING FOR LAND & RESOURCES, 2016, 28(3): 188-193.
链接本文:  
https://www.gtzyyg.com/CN/10.6046/gtzyyg.2016.03.29      或      https://www.gtzyyg.com/CN/Y2016/V28/I3/188

[1] 姚晓静,高义,杜云艳,等.基于遥感技术的近30a海南岛海岸线时空变化分析[J].自然资源学报,2013,28(1):114-125. Yao X J,Gao Y,Du Y Y,et al.Spatial and temporal changes of Hainan coastline in the past 30 years based on RS[J].Journal of Nature Resources,2013,28(1):114-125.
[2] 孙晓宇,吕婷婷,高义,等.2000-2010年渤海湾岸线变迁及驱动力分析[J].资源科学,2014,36(2):413-419. Sun X Y,Lü T T,Gao Y,et al.Driving force analysis of Bohai bay coastline change from 2000 to 2010[J].Resources Science,2014,36(2):413-419.
[3] 陈晓英,张杰,马毅.近40年来海州湾海岸线时空变化分析[J].海洋科学进展,2014,32(3):324-334. Chen X Y,Ma J,Ma Y.Analysis of the spatial and temporal changes of the coastline in the Haizhou Bay during the past 40 years[J].Advances in Marine Science,2014,32(3):324-334.
[4] 张霞,庄智,张旭凯,等.秦皇岛市海岸线遥感提取及变化监测[J].遥感技术与应用,2014,29(4):625-630. Zhang X,Zhuang Z,Zhang X K,et al.Coastline extraction and change monitoring by remote sensing technology in Qinhuangdao City[J].Remote Sensing Technology and Application,2014,29(4):625-630.
[5] 高义,王辉,苏奋振,等.中国大陆海岸线近30a的时空变化分析[J].海洋学报,2013,35(6):31-42. Gao Y,Wang H,Su F Z,et al.The analysis of spatial and temporal changes of the continental coastlines of China in recent three decades[J].Acta Oceanologica Sinica,2013,35(6):31-42.
[6] 朱长明,张新,骆剑承,等.基于样本自动选择与SVM结合的海岸线遥感自动提取[J].国土资源遥感,2013,25(2):69-74.doi:10.6046/gtzyyg.2013.02.13. Zhu C M,Zhang X,Luo J C,et al.Automatic extraction of coastline by remote sensing technology based on SVM and auto-selection of training samples[J].Remote Sensing for Land and Resources,2013,25(2):69-74.doi:10.6046/gtzyyg.2013.02.13.
[7] 朱俊凤,王耿明,张金兰,等.珠江三角洲海岸线遥感调查和近期演变分析[J].国土资源遥感,2013,25(3):130-137.doi:10.6046/gtzyyg.2013.03.22. Zhu J F,Wang G M,Zhang J L,et al.Remote sensing investigation and recent evolution analysis of Pearl River delta coastline[J].Remote Sensing for Land and Resources,2013,25(3):130-137.doi:10.6046/gtzyyg.2013.03.22.
[8] 黄鹄,胡自宁,陈新康,等.基于遥感和GIS相结台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. Hang H,Hu Z N,Chen X K,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.
[9] 朱小鸽.珠江口海岸线变化的遥感监测[J].海洋环境科学,2002,21(2):19-22. Zhu X G.Remote sensing monitoring of coastline changes in Pearl River Estuary[J].Marine Environmental Science,2002,21(2):19-22.
[10] 于杰,杜飞雁,陈国宝,等.基于遥感技术的大亚湾海岸线的变迁研究[J].遥感技术与应用,2009,24(4):512-516. Yu J,Du F Y,Chen G B,et al.Research on coastline change of Daya Bay using remote sensing technology[J].Remote Sensing Technology and Application,2009,24(4):512-516.
[11] Ekercin S.Coastline change assessment at the Aegean Sea coasts in Turkey using multitemporal Landsat imagery[J].Journal of Coastal Research,2007,23(3):691-698.
[12] White K,El Asma H M. Monitoring changing position of coastlines using thematic mapper imagery,an example from the Nile Delta[J].Geomorphology,1999,29(1/2):93-105.
[13] Lee J S,Jurkevich I.Coastline detection and tracing in SAR images[J].IEEE Transactions on Geoscience and Remote Sensing,1990,28(4):662-668.
[14] Sohn H G,Jezek K C.Mapping ice sheet margins from ERS-1 SAR and SPOT imagery[J].International Journal of Remote Sensing,1999,20(15/16):3201-3216.
[15] Ryu J H,Won J S,Min K D.Waterline extraction from Landsat TM data in a tidal flat:A case study in Gomso Bay,Korea[J].Remote Sensing of Environment,2002,83(3):442-456.
[16] 瞿继双,王超,王正志.一种基于多阈值的形态学提取遥感图象海岸线特征方法[J].中国图象图形学报,2003,8(7):805-809. Qu J S,Wang C,Wang Z Z.A multi-threshold based morphological approach for extracting coastal line feature from remote sensed images[J].Journal of Image and Graphics,2003,8(7):805-809.
[17] 张朝阳,冯伍法,张俊华.基于色差的遥感影像海岸线提取[J].测绘学院学报,2005,22(4):259-262. Zhang Z Y,Feng W F,Zhang J H.A coastline-detection method based on the color difference for the RS image[J].Journal of Institute of Surveying and Mapping,2005,22(4):259-262.
[18] 王琳,徐涵秋,李胜.厦门岛及其邻域海岸线变化的遥感动态监测[J].遥感技术与应用,2005,20(4):404-410. Wang L,Xu H Q,Li S.Dynamic monitoring of the shoreline changes in Xiamen island with its surrounding areas of SE China using remote sensing technology[J].Remote Sensing Technology and Application,2005,20(4):404-410.
[19] Liu H,Jezek K C.Automated extraction of coastline from satellite imagery by integrating canny edge detection and locally adaptive thresholding methods[J].International Journal of Remote Sensing,2004,25(5):937-958.
[20] Benz U C,Hofmann P G,Willhauck G,et al.Multi-resolution, object-oriented fuzzy analysis of remote sensing data for GIS-ready information[J].ISPRS Journal of Photogrammetry and Remote Sensing,2004,58(3/4):239-258.
[21] Blaschke T,Hay G J.Object-oriented image analysis and scale-space:Theory and methods for modeling and evaluating multiscale landscape structures[J].International Archives of Photogrammetry and Remote Sensing,2001,34(4/5):22-29.
[22] 贾明明,刘殿伟,王宗明,等.面向对象方法和多源遥感数据的杭州湾海岸线提取分析[J].地球信息科学学报,2013,15(2):262-269. Jia M M,Liu D W,Wang Z M,et al.Coastline changes in Hangzhou Bay based on object-oriented method using multi-source remote sensing data[J].Journal of Geo-Information Science,2013,15(2):262-269.
[23] 杨虎,郭华东,王长林.TM-SAR数据融合在黄河口沙咀动态监测中的应用研究[J]. 地理学与国土研究,2001,17(4):15-19. Yang H,Guo H D,Wang C L.Coast line dynamic inspect and land cover classification at Yellow River mouth using TM-SAR data fusion method[J].Geography and Territorial Research,2001,17(4):15-19.
[24] Otsu N.A threshold selection method from gray-level histograms[J].IEEE Transactions On Systems,Man,and Cybernetics,1979,9(1):62-66.
[25] Thieler E R,Himmelstoss E A,Zichichi J L,et al.Digital shoreline analysis system(DSAS) version 3.0:An ArcGIS extension for calculating shoreline change[EB/OL]. U.S.Geological Survey Open-File Report,2005:1304[2014-10-18].http://woodshole.er.usgs.gov/project-pages/DSAS/.

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