Long-term simulation of the eutrophication of the North Sea: temporal development of nutrients, chlorophyll and primary production in comparison to observations

被引:73
作者
Patsch, J [1 ]
Radach, G [1 ]
机构
[1] Univ Hamburg, Inst Meereskunde, D-22529 Hamburg, Germany
关键词
eutrophication; long-term simulation; North Sea; nutrients; chlorophyll; primary production; ecosystem model; ERSEM;
D O I
10.1016/S1385-1101(97)00051-8
中图分类号
Q17 [水生生物学];
学科分类号
071004 ;
摘要
The ecosystem model ERSEM II has been used to hindcast the development of the ecosystem of the North Sea during the years 1955 to 1993. The simulation was driven by the box-aggregated output from a general circulation model of the North Sea of corresponding duration; radiation, river inputs, atmospheric input and boundary conditions at the borders to the Atlantic Ocean and to the Baltic Sea were applied as realistically as possible. The general features of the eutrophication process are reproduced in the hindcast: the coastal areas show strong changes in nutrient concentrations in the hindcast as well as in the observations. Eutrophication not only shows up in the nutrient concentrations, but also in primary production. The simulated spatial distributions of phosphate, nitrate and primary production compare well with the observed ones. In addition, the hindcast simulates considerable trend-like changes of the nutrients in the southern part of the North Sea, where the nutrients are transported from the continental coastal strip to the southern central North Sea. The line from the river Humber to southern Norway separates the region of noticeable anthropogenic influence of riverine and atmospheric input from the northern area, which is mainly influenced by the Atlantic nutrient inflow. The observed annual cycles in the central and northern North Sea are quite well reproduced by the hindcast. The comparison of the hindcast with the long-term observations at two sites in the continental coastal zone of the North Sea shows that the long-term behaviour of phosphate, nitrate and silicate is simulated well. Primary production is increased in summers during the main period of eutrophication, 1975 to 1989, in the hindcast and in the observations. The flagellates at Helgoland, however, experience much more pronounced annual cycles with much less interannual variability in the hindcast than in the observations. (C) 1997 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:275 / 310
页数:36
相关论文
共 74 条
[1]   ECOLOGICAL MODELING IN COASTAL WATERS - TOWARDS PREDICTIVE PHYSICAL-CHEMICAL-BIOLOGICAL SIMULATION-MODELS [J].
AKSNES, DL ;
ULVESTAD, KB ;
BALINO, BM ;
BERNTSEN, J ;
EGEE, JK ;
SVENDSEN, E .
OPHELIA, 1995, 41 :5-36
[2]  
BACKHAUS JO, 1989, DANA-J FISH MAR RES, V8, P69
[3]  
BACKHAUS JO, 1986, ICES CM 1986 C, V38, P1
[4]  
BACKHAUS JO, 1985, 385 U HAMB I MEER TE, P1
[5]   THE EUROPEAN-REGIONAL-SEAS-ECOSYSTEM-MODEL, A COMPLEX MARINE ECOSYSTEM MODEL [J].
BARETTA, JW ;
EBENHOH, W ;
RUARDIJ, P .
NETHERLANDS JOURNAL OF SEA RESEARCH, 1995, 33 (3-4) :233-246
[6]   Microbial dynamics in the marine ecosystem model ERSEM II with decoupled carbon assimilation and nutrient uptake [J].
Baretta-Bekker, JG ;
Baretta, JW ;
Ebenhoh, W .
JOURNAL OF SEA RESEARCH, 1997, 38 (3-4) :195-211
[7]   An improved model of carbon and nutrient dynamics in the microbial food web in marine enclosures [J].
Baretta-Bekker, JG ;
Baretta, JW ;
Hansen, AS ;
Riemann, B .
AQUATIC MICROBIAL ECOLOGY, 1998, 14 (01) :91-108
[8]  
BEDDIG S, 1995, IN PRESS MAR POLLUT, V34
[9]   An analysis of benthic biological dynamics in a North Sea ecosystem model [J].
Blackford, JC .
JOURNAL OF SEA RESEARCH, 1997, 38 (3-4) :213-230
[10]  
BROCKMANN UH, 1994, CIRCULATION CONTAMIN, P56