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胶州湾围隔浮游生态系统氮、磷营养盐迁移-转化模型研究

, PP. 76-83

Keywords: 胶州湾,氮磷营养盐,迁移-转化模型,围隔

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Abstract:

通过对目前生态动力学模型的总结和综合,以生态系统中氮、磷营养盐循环为主线,建立了适用于海洋围隔浮游生态系统的多变量的营养盐迁移-转化动力学模型.该模型包括浮游植物、浮游动物、溶解无机态营养盐、溶解有机态营养盐和生物碎屑5个模块,涉及溶解无机氮、磷酸盐、溶解有机氮、溶解有机磷、浮游植物、浮游动物和生物碎屑7个状态变量.分别利用1999年秋季和2000年夏季胶州湾围隔生态实验数据进行了模型和验证工作,成功地模拟了富加营养盐条件下围隔浮游生态系统中氮、磷营养盐生物化学迁移-转化过程,并确定了20余个参数的量值.

References

[1]  RILEY G A.Factors controlling phytoplankton populations on Georges Bank[J],Journal of Marine Research,1946,6:54-73.
[2]  RILEY G A.A theoretical analysis of the zooplankton population of Georges Bank[J].Journal of Marine Research,1947,7(2):104-113.
[3]  FRANSZ H G,MOMMAERTS J P,RADACH G.Ecology modelling of the North Sea[J].Netherlands Journal of Sea Research,1991,28(1/2):67-140.
[4]  MOLL A,RADACH G.Review of three-dimensional ecological modelling related to the North Sea shelf system Part 1:models and their results[J].Progress in Oceanography,2003,57(2):175-217.
[5]  叶常明.多介质环境污染研究[M].北京:科学出版社,1997.94.
[6]  陈长胜.海洋生态系统动力学与模型[M].北京:高等教育出版社,2003..
[7]  高会旺 冯士Zuo.海洋浮游生态系统动力学模式的研究[J].海洋与湖沼,:.
[8]  管玉平 林一骅.海洋生态系统动力学浅说[J].地球科学进展,:.
[9]  刘桂梅 孙松 王辉.海洋生态系统动力学模型及其研究进展[J].地球科学进展,2003,18(3):427-432.
[10]  任玲 杨军.海洋中氮营养盐循环及其模型研究[J].地球科学进展,:.
[11]  唐启升 苏纪兰 孙松 张经 黄大吉 金显仕 仝龄.中国近海生态系统动力学研究进展[J].地球科学进展,2005,20:1288-1299.
[12]  万振文 袁业立.海洋浮游生态系统连续介质动力学的模型的建立[J].海洋与湖沼,:.
[13]  王辉.海洋生态系统模型研究的几个基本问题[J].海洋与湖沼,:.
[14]  魏皓 武建平 等.浮游植物动力学模型及其在海域富营养化研究中的应用[J].地球科学进展,2001,16(2):220-225.
[15]  吴增茂 俞光耀.海洋生态系统动力学模型的基本特征及其研究进展[J].地球科学进展,:.
[16]  CHEN C,JI R,ZHENG L,et al.Influences of physical processes on the ecosystem in Jiaozhou Bay:a coupled physical and biological model experiment[J].Journal of Geophysical Research.1999,104(C12):29 925-29 949.
[17]  CUI M C,ZHU H.Coupled physical-ecological modelling in the central part of Jiaozhou Bay.Ⅱ.Coupled with an ecological mode[J]l.Chinese Journal of Oceanology and Limnology,2001,19(1):21-28.
[18]  REN L,ZHANG M,BROCKMANN U H,et al.Pelagic nitrogen cycling in Jiaozhou Bay,a model study:Ⅰ.the conceptual model[J].Chinese Journal of Oceanology and Limnology,2003,21(4):358-367.
[19]  俞光耀 吴增茂.胶州湾北部水层生态动力学模型与模拟:I.胶州湾北部水层?…[J].青岛海洋大学学报:自然科学版,:.
[20]  吴增茂 俞光耀.胶州湾北部水层生态动力学模型与模拟:II.胶州湾北部水层 …[J].青岛海洋大学学报:自然科学版,:.
[21]  吴增茂 张志南 等.胶州湾北部水层—底栖耦合生态系统的动力数值模拟分析[J].海洋与湖沼,:.
[22]  GAO H,FENG S,GUAN Y.Modelling annual cycles of primary production in different regions ofthe Bohai Sea[J].Fisheries Oceanography,1998,7(3/4):258-264.
[23]  WEI H,SUN J,MOLL A.Phytoplankton dynamicsin the Bohai Sea-observations and modeling[J].Journal of Marine Systems,2004,44(3-4):233-251.
[24]  高会旺 王强.1999年渤海浮游植物生物量的数值模拟[J].中国海洋大学学报,2004,34(5):867-873.
[25]  苏纪兰 唐启升.中国海洋生态系统动力学研究,Ⅱ渤海生态系统动力学过程[M].北京:科学出版社,2002.1-445.
[26]  赵亮 魏皓 等.渤海氮磷营养盐的循环和收支[J].环境科学,2002,23(1):78-81.
[27]  张书文 夏长水 等.黄海冷水团水域物理—生态耦合数值模式研究[J].自然科学进展,2002,12(3):315~319.
[28]  田恬 魏皓 苏健 郑昌硕 孙文心.黄海氮磷营养盐的循环和收支研究[J].海洋科学进展,2003,21(1):1-10.
[29]  乔方利 彭业立.长江口海域赤潮生态动力学模型及赤潮控制因子研究[J].海洋与湖沼,:.
[30]  陈尚.[D].青岛:青岛海洋大学,2002.
[31]  管卫兵 王亚娅 许东峰.珠江河口氮和磷循环及溶解氧的数值模拟——Ⅰ.模式建立[J].海洋学报,2003,25(1):52-60.
[32]  管卫兵 王亚娅 许东峰.珠江河口氮和磷循环及溶解氧的数值模拟Ⅱ.模拟结果[J].海洋学报,2003,25(1):61-68.
[33]  SHANG S L,HONG H S.A vertical distribution model of nutrients and dissolved oxygen in the southern Taiwan Strait[J].Chinese Journal of Oceanology and Limnology,1995,13(1):51-61.
[34]  高会旺 翟雪梅.水层生态系统动力学模式参数的敏感性分析[J].青岛海洋大学学报:自然科学版,:.
[35]  翟雪梅 张志南.虾池生态系浮游生物亚模型[J].青岛海洋大学学报,1999,29(1):94-100.
[36]  唐启升 苏纪兰.中国海洋生态系统动力学研究:Ⅰ.关键科学问题与研究发展战略[M].北京:科学出版社,2000.1-251.
[37]  陆贤崑.海洋围隔生态系实验在海洋污染控制中的应用[J].环境科学,1987,8(4):78-83.
[38]  GRICE G D,REEVE M R.Marine Mesocosm:Biological and Chemical Research in Experimental Ecosystems[M].New York:Springer-Verlag,1982.1-430.
[39]  BARETTA-BEKKER J G,RIEMANN B,BARETTA J W,et al.Testing the microbial loop concept by comparing mesocosm data with results from a dynamical simulation model[J].Marine Ecology Progress Series,1994,106:187-198.
[40]  BARETTA-BEKKER J G,BARETTA J W,HANSEN A S,et al.An improved model of carbon and nutrient dynamics in the microbial food web in marine enclosures[J].Aquatic Microbial Ecology,1998,14:91-108.
[41]  BEYERS R J,ODUM H T.Ecological Microcosms[M].New York:Springer-Verlag,1993.1-557.
[42]  BARETTA J W,EBENHOH h W,RUARDIJ P.The Eutopean Regional Seas Ecosystem Model:a complex marine ecosystem model[J].Netherlands Journal of Sea Research,1995,33(3/4):233-246.
[43]  EBENHOH W,BARETTA-BEKKER J G,BARETTA J W.The primary production module in the marine ecosystem model ERSEM Ⅱ,with emphasis on the light forcing[J].Journal of Sea Research,1997,38:173-193.
[44]  GB12763-91.海洋调查规范[S].[S].,..
[45]  GESAMP (IMO/FAO/UNESCO-IOC/WMO/WHO/IAEA/UN/UNEP Joint Group of Experts on the Scientific Aspects of Marine Pollution).Coastal modelling[R].Rome:Report and Studies GESAMP,1991.43:187.
[46]  BARETTA J W,ADMIRAAL W,COLIJN F,et al.The construction of the pelagic submodel[A].BARETTA J W,RUARDIJ P.Tidal flat estuaries:Simulation and analysis of the Ems estuary.Ecol.Studies.71[C].Heidelberg:Springer-Verlag,1988.77-104.
[47]  SKOGEN M D,SOILAND H.A user\\'s guide to NORWECOM V2.0,The NORWegian ECOlogical Model system[J].Fisken Og Havet,1998,18:1-42.
[48]  VARELA R A,CRUZADO A,GABALDON J E.Modelling primary production in the North Sea using the European Regional Seas Ecosystem Model[J].Netherlands Journal of Sea Research,1995,33 (3/4):337-361.
[49]  BARETTA-BEKKER J G,BARETTA J W,KOCH RASMUSSEN E.The microbial food web in the European Regional Seas Ecosystem Model[J].Netherlands Journal of Sea Research,1995,33(3/4):363-379.
[50]  BROEKHUIZEN N,HEATH M R,HAY S J,et al.Modelling the dynamics of the North Sea\\'s mesozooplankton[J].Netherlands Journal of Sea Research,1995,33(3/4):381-406.
[51]  EBENHOH W,KOHLMEIER C,RADFORD P J.The benthic biological submodel in the European Regional Seas Ecosystem Model[J].Netherlands Journal of Sea Research,1995,33(3/4):423-452.
[52]  EPPLEY R W.Temperature and phytoplankton growth in the sea[J].Fish Bulletin U.S.,1972,70:1 063-1 085.
[53]  RADACH G,MOLL A.Estimation of the variability of production by simulating annual cycles of phytoplankton in the central North Sea[J].Progress in Oceanography,1993,31(4):339-419.
[54]  SCHNOOR J L.Environmental modeling[M].New York:John Wiley & Sons Inc.,1996.185-229.
[55]  STEELE J H.Environmental control of photosynthesis in the sea[J].Limnology and Oceanography,1962,7(2):137-150.
[56]  DOBSON F W,SMITH S D.Bulk models of solar radiation at sea[J].Quarterly Journal of the Royal Meteorological Society,1988,114(479):165-182.
[57]  SELLERS W D.Physical Climatology[M].Chicago:The University of Chicago Press,1965.1-272.
[58]  潘友联.胶州湾两个站的海水透明度和水下照度周年观测资料的初步分析[J].海洋科学,1987,3:49-53.
[59]  RILEY G A.Oceanography of Long Island Sound 1952-1954 Ⅱ.Physical oceanography[J].Bulletin of the Bingham Oceanographic Collection,1956,15:15-46.
[60]  DUGDALE R C.Nutrient limitation in the sea:dynamics,identification,and significance[J].Limnology and Oceanography,1967,12(4):685-695.
[61]  LAWS E,CAPERON J.Carbon and nitrogen metabolism by Monochrysis lutheri:measurement of growth-rate-dependent respiration rates[J].Marine Biology,1976,36(1):85-97.
[62]  ZLOTNIK I,BUBINSKY Z.The effect of light and temperature on DOC excretion by phytoplankton[J].Limnology and Oceanography,1989,34:831-839.
[63]  FASHAM M J R,DUKLOW H W,MCKELVIE S M.A nitrogen-based model of plankton dynamics in the oceanic mixed layer[J].Journal of Sea Research,1990,48:591-639.
[64]  BUTLER E I,CORNER E D S,MARSHALL S M.On the nutrition and metabolism of zooplankton.Ⅵ.Feeding efficiency of Calanus in terms of nitrogen and phosphorus[J].Journal of the Marine Biological Association of the UK,1969,49:977-1 001.
[65]  PETERS R H.The ecological implications of body size[M].Cambridge:Cambridge Univ Press,1983.1-329.
[66]  HUNTLEY M R,BOYD C.Food limited growth of marine zooplankton[J].The American Naturalist,1984,124:455-479.
[67]  SCHARTAU M,OSCHLIES A,Willebrand J R.Parameter estimates of a zero-dimensional ecosystem model applying the adjoint method[J].Deep-Sea Research Ⅱ,2001,48:1 769-1 800.
[68]  HARMON R,CHALLENOR P A.Markov chain Monte Carlo method for estimation and assimilation into models[J].Ecological Modelling,1997,101(1):41-59.

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