首页|期刊导航|海洋地质与第四纪地质|山东半岛东部桑沟湾1985-2025年岸线演变及其驱动因素分析

山东半岛东部桑沟湾1985-2025年岸线演变及其驱动因素分析OA

Shoreline evolution and its driving factors in Sanggou Bay,eastern Shandong Peninsula from 1985 to 2025

中文摘要英文摘要

基于 1985-2025 年 Landsat 系列遥感影像,本文采用 MNDWI-Otsu-Canny 综合算法提取桑沟湾 40 年岸线序列,结合EOT20 潮汐模型与无人机-RTK 摄影测量技术,构建"卫星遥感+无人机摄影测量+RTK 定位"多源数据融合的岸线分析框架,实现多时相岸线的统一潮汐校正.利用 DSAS 对砂质岸线进行多指标定量分析,并整合 ERA5 风浪数据、潮流观测资料及岸线开发历史,系统揭示了桑沟湾岸线演变特征及其动力机制.结果表明:① 岸线类型显著人工化.40 年间岸线总长度由49.41 km 增至 55.05 km,人工岸线占比由 24%升至 55%,成为主导类型,砂质岸线与基岩岸线持续减少.② 砂质岸线整体处于侵蚀状态,净岸线移动均值为-17.33 m,端点速率-0.43 m/a,线性回归速率-0.17 m/a,呈现"北轻南重、南北两侧淤积"空间分异格局.③ 岸线演变受自然动力与人类活动共同驱动,波浪作用作为主控因素对砂质岸线形成长期冲刷,潮流的不对称性以及地形地貌的影响,共同调节着泥沙运输格局,加上人类活动的影响,多重因素耦合共同驱动岸线演变.本研究创新性地将无人机-RTK 高精度地形测量与 Landsat 时序遥感相结合,使用基于实测潮间带坡度的潮汐位置校正方法,有效降低了潮差引起的岸线提取系统误差,为长时序岸线演变分析的不确定性评估提供了量化依据.研究揭示了半封闭海湾岸线演化机制,可为桑沟湾岸线管理与海岸带可持续治理提供科学参考.

Based on Landsat imagery from 1985-2025,an integrated MNDWI-Otsu-Canny algorithm was applied to extract a 40-year shoreline time series of the Sanggou Bay,Weihai,Shandong.A multi-source data fusion framework was established combining satellite remote sensing,UAV photogrammetry,and RTK positioning,and the EOT20 tidal model was employed to normalize multi-temporal shorelines to a mean sea level(MSL)datum.Sandy shoreline segments were quantitatively analyzed using the Digital Shoreline Analysis System(DSAS),and results were interpreted together with ERA5 wind-wave reanalysis data,tidal current observations,and the history of coastal development to elucidate the shoreline evolution patterns and driving mechanisms.Results indicate:(1)the shoreline has been obviously artificialized.Over the 40-year period,the total shoreline length increased from 49.41 km to 55.05 km,of which the artificial proportion rose from 24%to 55%and has become the dominant type,while sandy and rocky shorelines declined continuously.(2)Sandy shorelines exhibit an overall erosional trend,and the mean Net Shoreline Movement of-17.33 m,End Point Rate of-0.43 m/a,and Linear Regression Rate of-0.17 m/a were noticed,displaying a distinct spatial pattern of"light erosion in the north,intensive erosion in the south,and accretion in both flanks".(3)Shoreline evolution is driven by the coupled effects of natural dynamics and anthropogenic activities.Wave action serves as the primary controlling factor,exerting persistent erosion on sandy shorelines;tidal asymmetry and geomorphological configuration jointly regulate the sediment transport patterns.Combined with human activities,these multiple factors interact to drive shoreline evolution.This study innovatively integrates UAV-RTK high-precision topographic surveying with Landsat time-series remote sensing,applying a tidal position correction method based on measured intertidal slope gradients,which effectively reduced systematic errors in shoreline extraction caused by tidal range variations and provided a quantitative basis for uncertainty assessment in long-term shoreline evolution analysis.This research revealed the evolution mechanisms of shorelines in a semi-enclosed bay and offered scientific guidance for shoreline management and sustainable coastal zone governance in Sanggou Bay.

张少奇;薛碧颖;陈斌;岳保静;徐刚;邹亮;许帅;胡睿;仇建东;王蜜蕾

中国地质大学(北京)海洋学院,北京 100083中国地质调查局青岛海洋地质研究所,青岛 266237中国地质调查局青岛海洋地质研究所,青岛 266237中国地质调查局青岛海洋地质研究所,青岛 266237中国地质调查局青岛海洋地质研究所,青岛 266237中国地质调查局青岛海洋地质研究所,青岛 266237中国地质调查局青岛海洋地质研究所,青岛 266237中国地质调查局青岛海洋地质研究所,青岛 266237中国地质调查局青岛海洋地质研究所,青岛 266237中国地质调查局青岛海洋地质研究所,青岛 266237

海洋科学

海岸线演变数字岸线分析系统潮汐校正无人机-RTK多源数据融合桑沟湾

shoreline evolutionDigital Shoreline Analysis Systemtidal correctionUAV-RTKmulti-source data fusionSanggou Bay

《海洋地质与第四纪地质》 2026 (4)

38-53,16

国家地质调查专项"我国重点海域海洋自然资源综合调查与评价"(DD202303005)部省合作项目"山东半岛东南部海域海洋生态保护修复效果关键技术研究"(2024ZRBSHZ111)

10.16562/j.cnki.0256-1492.2025112801

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