Seasonality of floc strength in the southern North Sea

被引:38
作者
Fettweis, Michael [1 ]
Baeye, Matthias [1 ]
Van der Zande, Dimitry [1 ]
Van den Eynde, Dries [1 ]
Lee, Byung Joon [2 ]
机构
[1] Royal Belgian Inst Nat Sci, Operat Directorate Nat Environm, Brussels, Belgium
[2] Kyungpook Natl Univ, Sch Construct & Environm Engn, Sangju, South Korea
关键词
suspended particulate sediments; flocculation; seasonal variation; algae bloom; EXOPOLYMER PARTICLES TEP; SUSPENDED PARTICULATE MATTER; SETTLING VELOCITY; COHESIVE SEDIMENT; HIGH TURBIDITY; SIZE; SHELF; FLOCCULATION; DYNAMICS; MUD;
D O I
10.1002/2013JC009750
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
The suspended particulate matter (SPM) concentration in the high turbidity zones of the southern North Sea is inversely correlated with chlorophyll (Chl) concentration. During winter, SPM concentration is high and Chl concentration is low and vice versa during summer. This seasonality has often been associated with the seasonal pattern in wind forcing. However, the decrease in SPM concentration corresponds well with the spring algal bloom. Does the decrease of SPM concentration caused by changing wind conditions cause the start of algae bloom, or does the algae bloom decrease SPM concentrations through enhanced flocculation and deposition? To answer the question, measurements from 2011 of particle size distribution (PSD), SPM, and Chl concentrations from the southern North Sea have been analyzed. The results indicate that the frequency of occurrence of macroflocs has a seasonal signal, while seasonality has little impact upon floc size. The data from a highly turbid coastal zone suggest that the maximum size of the macroflocs is controlled by turbulence and the available flocculation time during a tidal cycle, but the strength of the macroflocs is controlled by the availability of sticky organic substances associated with enhanced primary production during spring and summer. The results highlight the shift from mainly microflocs and flocculi in winter toward more muddy marine snow with larger amounts of macroflocs in spring and summer. The macroflocs will reduce the SPM concentrations in the turbidity maximum area as they settle faster. Consequently, the SPM concentration decreases and the light condition increases in the surface layer enhancing algae growth further.
引用
收藏
页码:1911 / 1926
页数:16
相关论文
共 59 条
[41]   Influence of shear rate, organic matter content, pH and salinity on mud flocculation [J].
Mietta, Francesca ;
Chassagne, Claire ;
Manning, Andrew J. ;
Winterwerp, Johan C. .
OCEAN DYNAMICS, 2009, 59 (05) :751-763
[42]   Seasonal and spatial variation of floc size, settling velocity, and density on the inner Adriatic Shelf (Italy) [J].
Mikkelsen, Ole A. ;
Hill, Paul S. ;
Milligan, Timothy G. .
CONTINENTAL SHELF RESEARCH, 2007, 27 (3-4) :417-430
[43]   Calibration and validation of a generic multisensor algorithm for mapping of total suspended matter in turbid waters [J].
Nechad, B. ;
Ruddick, K. G. ;
Park, Y. .
REMOTE SENSING OF ENVIRONMENT, 2010, 114 (04) :854-866
[44]   Transparent exopolymer particles (TEP) in aquatic environments [J].
Passow, U .
PROGRESS IN OCEANOGRAPHY, 2002, 55 (3-4) :287-333
[45]   The origin of transparent exopolymer particles (TEP) and their role in the sedimentation of particulate matter [J].
Passow, U ;
Shipe, RF ;
Murray, A ;
Pak, DK ;
Brzezinski, MA ;
Alldredge, AL .
CONTINENTAL SHELF RESEARCH, 2001, 21 (04) :327-346
[46]   Diatom succession, silicification and silicic acid availability in Belgian coastal waters (Southern North Sea) [J].
Rousseau, V ;
Leynaert, A ;
Daoud, N ;
Lancelot, C .
MARINE ECOLOGY PROGRESS SERIES, 2002, 236 :61-73
[47]   Shear velocity estimates on the inner shelf off Grays Harbor, Washington, USA [J].
Sherwood, Christopher R. ;
Lacy, Jessica R. ;
Voulgaris, George .
CONTINENTAL SHELF RESEARCH, 2006, 26 (17-18) :1995-2018
[48]   Seabed stress determinations using the inertial dissipation method and the turbulent kinetic energy method [J].
Stapleton, KR ;
Huntley, DA .
EARTH SURFACE PROCESSES AND LANDFORMS, 1995, 20 (09) :807-815
[49]  
Thompson CEL, 2003, J COASTAL RES, V19, P1094
[50]  
Trowbridge J, 2001, J PHYS OCEANOGR, V31, P2403, DOI 10.1175/1520-0485(2001)031<2403:TMITSZ>2.0.CO