帮助 关于我们

返回检索结果

长江口表层沉积物分布特征及动力响应
Characteristics of Surface Sediment Distribution and Its Hydrodynamic Responses in the Yangtze River Estuary

查看参考文献22篇

文摘 基于长江VI2003年2月采集的58个表层沉积物样品及以同步水动力资料的分析表明.表层沉积物中值粒径自江阴—口外逐渐变细.由江阴附近的217.8μm减少到南槽VI外的12.1μm;浑浊带海域表层沉积物中值粒径北港最大,平均为126.2μm,北槽其次,平均为48.4μm。南槽最小。平均为14.2μm:VI外海域则北槽最大,为22.4μm。北港其次。为16.5μm,南槽最小,为12.1μm。沉积物分选性大多为中等—很差,中值粒径越大。分选系数越小;沉积物偏度大多是近对称—极正偏;峭度表现为中等峭度—很窄尖。横沙以上区域表层沉积物类型以砂为主,口外海域沉积物类型以粘土质粉砂为主,浑浊带海域表层沉积物类型复杂多样。长江口主槽表层沉积物中值粒径与落潮历时、Ve/Vf值和余流值等动力参数呈正相关关系.落潮动力条件是决定长江口表层沉积物中值粒径大小的主要动力因素。
其他语种文摘 The analysis results of 58 surface showed that the median diameter of surface sediment samples collected in February 2003 sediment (D50) was decreased gradually from Jiangyin to the mouth of the Yangtze River Estuary, and the value decreased from 217.8 μm of Jiangyin to 12.1 μm of the mouth of South Passage. In Turbidity Maximum, the coarsest surface sediment was in North Channel, and the average median diameter was 126.2 μm. The coarser surface sediment was in North Passage, and the average median diameter was 48.4 μm. The finest surface sediment was in South Passage, and the average median diameter was 14.2 μm. While in the mouth of the estuary, the coarsest surface sediment was in North Passage, then in North Channel, and the finest surface sediment was in South Passage. The median diameter of the mouth of North Passage was 22.4 μm, and that of North Channel 16.5 μm, and South Passage 12.1 μm. The sorting of surface sediment was mainly moderately sorted to very poorly sorted, and the greater the median diameter, the smaller the sorting coefficient. The skewness was mainly nearly symmetrical to very positive. The kurtosis was mesokurtic to extremely leptokurtic. The composition of surface sediment in upper Hengsha island was mainly sand, while in the mouth of the estuary was mainly clayey silt. In Turbidity Maximum, it was much more complex and variational. There was positive relationship between the D50 of surface sediment and the ebb tidal duration, value of Ve/Vf and residual current speed in channel of the Yangtze River Estuary, and the ebb current condition was the main dynamic factor to determine D50.
来源 地理学报 ,2007,62(1):81-92 【核心库】
关键词 长江口 ; 沉积物 ; 中值粒径 ; 潮流
地址

华东师范大学, 河口与海岸学国家重点实验室, 上海, 200062

语种 中文
文献类型 研究性论文
ISSN 0375-5444
学科 海洋学
基金 国家自然科学基金 ;  国家973计划
文献收藏号 CSCD:2734459

参考文献 共 22 共2页

1.  高抒. 沉积物输运对砂质海底稳定性影响的评估方法及应用实例. 海洋科学集刊,2001,43:25-37 CSCD被引 27    
2.  Hemminga M A. Bedload and nearbed detritus transport in a tidal saltmarsh creek. Estuarine,Coastal and Shelf Science,1996,42(1):55-62 CSCD被引 4    
3.  Milliman J D. Transport and deposition of river sediment in the Changjiang Estuary and adjacent continental shelf. Cont Shelf Res,1985,4:37-45 CSCD被引 130    
4.  Celso Garcia. Continuous monitoring of bedload flux in a mountain gravel-bed river. Geomorphology,2000,34:23-31 CSCD被引 2    
5.  Carbonneau E. The effect of bedload transport on mean and turbulent flow properties Patrice. Geomorphology,2000,35:267-278 CSCD被引 1    
6.  董永发. 长江河口沉积物粒度特征与水动力关系. 长江河口动力过程和地貌演变,1988:314-322 CSCD被引 8    
7.  刘苍字. 长江口水下三角洲的沉积结构、构造特征及沉积作用机制. 华东师范大学学报,1995:159-164 CSCD被引 4    
8.  孟翊. 长江口沉积物重金属元素地球化学特征及其底质环境评价. 海洋地质与第四纪地质,2003,23(3):37-42 CSCD被引 39    
9.  贾海林. 长江口北支沉积动力环境分析. 华东师范大学学报(自然科学版),2001(1):90-96 CSCD被引 21    
10.  杨欧. 长江口北支沉积物粒径趋势及泥沙来源研究. 水利学报,2002(2):79-84 CSCD被引 35    
11.  李九发. 长江河口底沙运动规律. 华东师范大学学报,1995:62-68 CSCD被引 1    
12.  Folk R L. Brazos River Bar:a study in the significance of grain size parameters. Journal of Sedimentary Petrology,1957,27:3-26 CSCD被引 614    
13.  王元叶. 长江口近底边界层观测研究. 长江口近底边界层观测研究[硕士学位论文],2004:18 CSCD被引 1    
14.  McLaren P. The effects of sediment transportation on grain-size distributions. Journal of Sediment Petrology,1985,55(4):457-470 CSCD被引 67    
15.  Pejrup M. The triangular diagram used for classification of estuarine sediments:a new approach. Tide-influenced Sedimentary Environments and Facies,1987:298-300 CSCD被引 4    
16.  Allen G P. Relationship between grain size parameter distribution and current patterns in the Gironde Estuary(France). Journal of Sedimentary Petrology,1971,41:74-88 CSCD被引 4    
17.  Grochowski N L. Sediment transport predictions for the English Channel using numerical models. Journal of the Geological Society(London),1993,150:683-695 CSCD被引 1    
18.  沈焕庭. 长江河口潮流特性及其对河槽演变的影响. 长江河口动力过程和地貌演变,1988:80-90 CSCD被引 4    
19.  刘红. 长江口表层沉积物分布特性研究. 长江口表层沉积物分布特性研究[硕士学位论文],2006:12-38 CSCD被引 1    
20.  金缪. 长江口深水航道的回淤问题. 中国港湾建设,2003(4):1-6 CSCD被引 2    
引证文献 30

1 杨旸 杭州湾北部潮流深槽区细颗粒物质输运与再悬浮过程 海洋学报,2008,30(2):92-101
CSCD被引 9

2 王丽萍 长江口及毗邻海域沉积物生态环境质量评价 生态学报,2008,28(5):2191-2198
CSCD被引 27

显示所有30篇文献

论文科学数据集

1. 黄羊河,中国西部全新世黄土粒径及地球化学数据集

2. 青藏高原两湖地区湖泊表层沉积物元素地球化学组成数据集(2019)

数据来源:
国家青藏高原科学数据中心
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号