基于MODIS L1B数据的黄海悬浮体季节性分布的反演

余佳, 王厚杰, 毕乃双, 肖合辉, 张勇. 基于MODIS L1B数据的黄海悬浮体季节性分布的反演[J]. 海洋地质与第四纪地质, 2014, 34(1): 1-9. doi: 10.3724/SP.J.1140.2014.01001
引用本文: 余佳, 王厚杰, 毕乃双, 肖合辉, 张勇. 基于MODIS L1B数据的黄海悬浮体季节性分布的反演[J]. 海洋地质与第四纪地质, 2014, 34(1): 1-9. doi: 10.3724/SP.J.1140.2014.01001
YU Jia, WANG Houjie, BI Naishuang, XIAO Hehui, ZHANG Yong. SEASONAL DISTRIBUTION AND VARIATION OF SUSPENDED SEDIMENT IN THE YELLOW SEA IN 2010 BASED ON RETRIEVED MONTHLY DATA FROM MODIS L1B IMAGERY[J]. Marine Geology & Quaternary Geology, 2014, 34(1): 1-9. doi: 10.3724/SP.J.1140.2014.01001
Citation: YU Jia, WANG Houjie, BI Naishuang, XIAO Hehui, ZHANG Yong. SEASONAL DISTRIBUTION AND VARIATION OF SUSPENDED SEDIMENT IN THE YELLOW SEA IN 2010 BASED ON RETRIEVED MONTHLY DATA FROM MODIS L1B IMAGERY[J]. Marine Geology & Quaternary Geology, 2014, 34(1): 1-9. doi: 10.3724/SP.J.1140.2014.01001

基于MODIS L1B数据的黄海悬浮体季节性分布的反演

  • 基金项目:

    国家自然科学基金重点项目(40920164004);1∶25万海洋区域地质调查(试点)(GZH200900501)

详细信息
    作者简介: 余佳(1987-),男,硕士,主要从事海洋沉积动力和悬浮体遥感反演研究。E-mail:yujia0548@hotmail.com
  • 中图分类号: P736.2

SEASONAL DISTRIBUTION AND VARIATION OF SUSPENDED SEDIMENT IN THE YELLOW SEA IN 2010 BASED ON RETRIEVED MONTHLY DATA FROM MODIS L1B IMAGERY

  • 基于2010-2011年春、秋和冬季在黄海3个航次调查取得的悬浮体数据,结合MODIS L1B遥感数据,建立基于MODIS第4波段反射率的表层悬浮体浓度(SSC)的反演模型。利用合成的MODIS月均数据和悬浮体反演模型,反演出黄海表层悬浮体的月际分布,并对形成机制进行探讨。结果显示:黄海悬浮体分布有3个高值区,分别对应3个悬浮体来源,苏北浅滩及成山头高值区来源为海底泥沙的再悬浮,山东半岛北岸高值区来源为由渤海海峡输入黄海的泥沙。黄海悬浮体的分布及扩散具有显著的季节性变化特征,冬季,由于冬季风形成的波浪与沿岸流强盛,黄海3个高值区明显,其中山东半岛北岸与成山头形成一条连续的高悬浮体浓度水体条带;春季,由于波浪及沿岸流减弱,黄海悬浮体浓度显著减小,山东半岛北岸与成山头成为2个独立的高值区,表明其不同的悬浮体来源;夏季,仅苏北浅滩形成由于潮流导致再悬浮的悬浮体浓度高值区;秋季,由于冬季风逐渐加强,黄海悬浮体浓度显著增加,并逐渐过渡到冬季分布状态。
  • 加载中
  • [1]

    杨作升,郭志刚,王兆祥,等.黄东海陆架悬浮体向其东部深海区输送的宏观格局[J].海洋学报,1992,14(2):81-90.

    [YANG Zuosheng, GUO Zhigang, WANG Zhaoxiang,et al. Yellow Sea continental shelf and other macro pattern of suspension conveying its deep-sea areas east of Oceanography[J]. Acta Oceanologica Sinica,1992,14(2):81-90.]

    [2]

    Dongliang Yuan, Ya Hsueh. Dynamics of the cross-shelf circulation in the Yellow and East China Seas in winter. Kuroshio and the Marginal Seas, 2010, 57(19-20):1745-1761.

    [3]

    BI Naishuang, YANG Zuosheng, WANG Houjie, et al. Seasonal variation of suspended-sediment transport through the southern Bohai Strait. Estuarine, Coastal and Shelf Science,2011,(5):1-9.

    [4]

    秦蕴珊,赵一阳,陈丽蓉,等.黄海地质[M].北京:海洋出版社,1989.[QIN Yunshan, ZHAO Yiyang, CHEN Lirong, et al. Yellow Sea Geology, Beijing:China Ocean Press, 1989.]

    [5]

    孙效功,方明,黄伟.黄、东海陆架区悬浮体输运的时空变化规律.海洋与湖沼,2000,31(6):581-587.

    [SUN Xiaogong, Fang Ming, Huang Wei. Spatial and temporal variation of the Huanghai Sea and the Donghai Sea continental shelf suspension transport[J].Oceanology and Limnology, 2000,31(6):581-587.]

    [6]

    秦蕴珊,李凡,郑铁民,等.南黄海冬季海水中悬浮体的研究[J].海洋科学,1986,10(6):1-7.

    [QIN Yunshan, LI Fan, ZHENG Tiemin,et al. Suspension research of the South Huanghai Sea waters in winter[J]. Marine Science, 1986,10(6):1-7.]

    [7]

    郭志刚, 杨作升, 张东奇,等. 冬、夏季东海北部悬浮体分布及海流对悬浮体输运的阻隔作用[J].海洋学报,2002,24(5):71-80.

    [GUO Zhigang, YANG Zuosheng,ZHANG Qidong,et al. the North Donghai Sea of the barrier effect on the suspension of the distribution and ocean currents transport,In winter and summer[J], Acta Oceanologica Sinica, 2002,24(5):71-80.]

    [8]

    Stumpf R P, Pennock J R. Calibration of a general optical equation for remote sensing of suspended sediments in a moderately turbid estuary[J]. J Geophys. ResL., 1998, 94:63-71.

    [9]

    Milier R L, Mckee B A. Using MODIS Terra 250 m imagery to map concentrations of total suspended matter in coastal waters[J]. Remote Sens Environ, 2004, 93:259-66.

    [10]

    Tassan S. Local algorithms using SeaWiFS data for the retrieval of phyto-plankton, pigments, suspended sediment, and yellow substance in coastal waters[J]. Applied Optics, 1994, 33(12):2369-2378.

    [11]

    Warrick J,Mertes L,Siegel D,Mackenzie C. Estimatingsuspended sediment concentrations in turbid coastal waters of the Santa Barbara Channel with SeaWiFS. International Journal of Remote Sensing, 2004, 25(10):1995-2002.

    [12]

    庞重光,杨扬,刘志亮.黄东海悬浮泥沙输运结构及其形成机制[J].泥沙研究,2010(3):24-30.[PANG Chongguang, YANG Yang, LIU Zhiliang. Studies of suspended sediment transport and formation mechanisms in Huanghai Sea[J], Sediment Research,2010

    (3):24-30.]

    [13]

    Minwei Zhang, Junwu Tang, Qing Dong, et al. Retrieval of total suspended matter concentration in the Yellow and East China Seas from MODIS imagery[J]. Remote Sensing of Environment, 2010, 114:392-403[Minwei Zhang, Junwu Tang, Qing Dong, et al. Retrieval of total suspended matter concentration in the Yellow and East China Seas from MODIS imagery. Remote Sensing of Environment, 2010, 114:392-403.]

    [14]

    王炳忠.太阳能中大天文参数的计算[J].太阳能.1999,(2):8-10.[WANG Binzhong..Calculated parameters of large solar[J]. Solar,1999

    , (2):8-10.]

    [15]

    方圣辉,张加晋.不同泥沙含量水体光谱特性分析[J].测绘信息与工程.2007,32(6):47-49.

    [Fang Shenghui ZHANG Jin analysis, spectral characteristics of different water sediment content Geomatics.2007,32(6):47-49.]

    [16]

    Liu J, Milliman J.,Gao S, et al. Holocene development of the YellowRiver's subaqueous delta,North Yellow Sea[J]. Marine Geology, 2004, 209(1-4):45-67.

    [17]

    YangZ, Liu J. A unique Yellow River-derived distal subaqueous delta in theYellow Sea[J]. Marine Geology,2007,240(1-4):169-176.

    [18]

  • 加载中
计量
  • 文章访问数:  1151
  • PDF下载数:  4
  • 施引文献:  0
出版历程
收稿日期:  2012-10-07
修回日期:  2012-11-20

目录