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高校地质学报 ›› 2026, Vol. 32 ›› Issue (04): 547-560.DOI: 10.16108/j.issn1006-7493.2025042

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钱塘江河口区表层沉积物粒度端元提取及其展布特征

余力涵1,范代读2,王 军3,林春明1,王 博1,苏建锋2,张 霞1*,王 瑾1,南 风1
  

  1. 1. 南京大学 地球科学与工程学院,地球科学国家级实验教学示范中心(南京大学),南京 210023;
    2. 同济大学 海洋与地球科学学院,上海 200092;
    3. 中国石油天然气股份有限公司 长庆油田分公司第五采油厂,榆林 719000
  • 出版日期:2026-08-20 发布日期:2026-08-20

Extraction and Distribution Patterns of Grain-size End-members for the Surface Sediments in the Qiantang River Estuary District

YU Lihan1,FAN Daidu2,WANG Jun3,LIN Chunming1,WANG Bo1,SU Jianfeng2,ZHANG Xia1*,WANG Jin1,NAN Feng1#br#   

  1. 1. School of Earth Sciences and Engineering, National Demonstration Center for Experimental Teaching of Earth Sciences (Nanjing University), Nanjing University, Nanjing 210023, China;
    2. School of Ocean and Earth Science, Tongji University, Shanghai 200092, China;
    3. No.5 Oil Production Plant, Changqing Oilfield Company, PetroChina Company Limited, Yulin 719000, China
  • Online:2026-08-20 Published:2026-08-20

摘要: 以钱塘江河口区表层沉积物为研究对象,文章运用基本端元模型算法与非参数估计分解算法对粒度数据进行分析,旨在揭示该区域粒度端元的组成特征、平面展布规律及其与物源和环境变化的耦合关系。结果表明,两种算法所得结果具有良好的一致性,但基本端元模型算法能够更准确地识别各端元的单峰形态。钱塘江河口区表层沉积物可分解为EM1(黏土和粉砂)、EM2(粗粉砂和极粗粉砂)、EM3(极细砂和细砂)、EM4(细砂和中砂)和EM5(中砂和粗砂)五个粒度端元。其中,EM1和EM2代表长距离搬运的悬浮沉积物,主要来源于长江;EM3主要分布于湾口,指示长江口残留砂
的改造;EM4代表较远距离搬运的河流砂,EM5则为短距离运输的河流极粗砂,二者主要来自钱塘江上游及其支流。研究表明,对于源—汇系统复杂的河口沉积环境,基本端元模型算法能够提高粒度分析的区分度与效率,敏感地反映水动力条件、源—汇过程及事件沉积特征。因此,该方法有望在全球范围内类似河口区的多元复杂源—汇系统与水动力条件研究中得到广泛应用。

关键词: 钱塘江河口区, 敏感粒级, 端元模型, 物源体系, 沉积过程

Abstract: The surface sediment grainsize data from the Qiantang River estuary is investigated using the End-member Modeling
Algorithm and a non-parametric estimation decomposition algorithm. In order to characterize the compositional features and planar distribution patterns of different grainsize endmembers, and explore their coupling relationships with sediment provenance and environmental changes. Results show that the data obtained by algorithms have good consistency, however, the End-member Modeling Algorithm demonstrate superior performance in accurately identifying unimodal distributions of each endmember. Surface sediments of the Qiantang River estuary can be divided into five grain-size end-members: EM1 (clay and silt), EM2 (coarse silt and very coarse silt), EM3 (very fine sand and fine sand), EM4 (fine sand and medium sand), and EM5 (medium sand and coarse sand). EM1 and EM2 represent the suspended sediments transported over long distances, primarily derived from the Yangtze River (Changjiang). EM3, distributed in the estuary mouth, indicates the reworking of residual sands from the Yangtze River estuary. EM4 denotes fluvial sandy sediments transported over a relatively long distance, while EM5 represents very coarse fluvial sand transported over a short distance; both primarily originate from the upper reaches of the Qiantang River and its tributaries. This study demonstrates that for estuarine sedimentary environments with complex source-to-sink systems, the End-member Modeling Algorithm enhances the resolution and efficiency of grain-size analysis and can sensitively indicate hydrodynamic conditions, source-to-sink processes, and event deposits. Therefore, this method holds promise for application in analyzing diverse and complex source-to-sink systems and hydrodynamic conditions in similar estuarine regions worldwide.

Key words: Qiantang River estuary, sensitive grain size, end-member modeling, source-to-sink system, sedimentary process

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