MAPPING TOTAL SUSPENDED MATTER CONCENTRATIONS IN THE BLACK SEA USING LANDSAT TM MULTISPECTRAL SATELLITE IMAGERY

被引:0
作者
Dihkan, Mustafa [1 ]
Karsli, Fevzi [1 ]
Guneroglu, Abdulaziz [2 ]
机构
[1] Karadeniz Tech Univ, Dept Geomat, Fac Engn, TR-61080 Trabzon, Turkey
[2] Karadeniz Tech Univ, Fac Marine Sci, Dept Maritime Transportat & Management Engn, TR-61600 Surmene Trabzon, Turkey
来源
FRESENIUS ENVIRONMENTAL BULLETIN | 2011年 / 20卷 / 1A期
关键词
Black Sea; Total Suspended Matter; Water Pollution; Landsat TM; THEMATIC MAPPER DATA; WATER-QUALITY; SEDIMENT CONCENTRATIONS; OPTICAL-PROPERTIES; CHLOROPHYLL-A; DANUBE RIVER; REFLECTANCE; RETRIEVAL; MODEL; ALGORITHMS;
D O I
暂无
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Black Sea is a semi-enclosed mid-latitude basin, under threat of eutrophication for the last decades due to anthropogenic activities. The problem is not only limited to the north-western part of the basin but also can be traced along the southern coast. Recreational use of coastal waters is generally limited by strong turbidity gradients. Total Suspended Matter (TSM) is a major water component affecting water clarity, and one of the most important matters in determining the optical characteristics of water. The aim of this study is to develop a simple statistical algorithm for operational mapping of TSM in coastal waters of the Anatolian coast. Retrieved algorithm revealed 67% (R-2) overall accuracy in estimating total TSM concentration. TSM distribution of major Anatolian rivers was thematically mapped. It is found that the TSM concentration is ranging between 2-25 g/m(3) for the study area based on model calculations. Even though the results are encouraging, the proposed algorithm should be used with caution for other parts of the basin, due to the spatial and temporal limitations. It should be stressed that a fully general analytical algorithm is an urgent need for monitoring purposes of coastal waters of the Black Sea basin.
引用
收藏
页码:262 / 269
页数:8
相关论文
共 44 条
[21]  
GUNEROGLU A, 2009, FRESEN ENVIRON BULL, V19, P452
[22]  
Gurgen G., 2004, J Gazi Educ Fac, V24, P79
[23]  
Herut B, 2002, FRESEN ENVIRON BULL, V11, P782
[24]   Atmospheric correction of SeaWiFS imagery over turbid coastal waters: A practical method [J].
Hu, CM ;
Carder, KL ;
Muller-Karger, FE .
REMOTE SENSING OF ENVIRONMENT, 2000, 74 (02) :195-206
[25]   MEASUREMENTS AND SIGNIFICANCE OF BIOOPTICAL PARAMETERS FOR REMOTE-SENSING IN 2 SUB-ALPINE LAKES OF DIFFERENT TROPHIC STATE [J].
JAQUET, JM ;
SCHANZ, F ;
BOSSARD, P ;
HANSELMANN, K ;
GENDRE, F .
AQUATIC SCIENCES, 1994, 56 (03) :263-305
[26]   Remote sensing reflectance and its relationship to optical properties of natural waters [J].
Jerome, JH ;
Bukata, RP ;
Miller, JR .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1996, 17 (16) :3135-3155
[27]   Origin and chemical partitioning of heavy metals in riverbed sediments [J].
Karbassi A.R. ;
Bayati I. ;
Moattar F. .
International Journal of Environmental Science & Technology, 2006, 3 (1) :35-42
[28]   TESTING THE UTILITY OF SIMPLE MULTI-DATE THEMATIC MAPPER CALIBRATION ALGORITHMS FOR MONITORING TURBID INLAND WATERS [J].
LATHROP, RG ;
LILLESAND, TM ;
YANDELL, BS .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1991, 12 (10) :2045-2063
[29]  
LATHROP RG, 1986, PHOTOGRAMM ENG REM S, V52, P671
[30]   MAPPING OF COASTAL-WATER TURBIDITY USING LANDSAT IMAGERY [J].
LINDELL, LT ;
STEINVALL, O ;
JONSSON, M ;
CLAESSON, T .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1985, 6 (05) :629-642