全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

珠江河口氮和磷循环及溶解氧的数值模拟Ⅰ.模式建立

, PP. 52-60

Keywords: 三维数值模式,,,溶解氧

Full-Text   Cite this paper   Add to My Lib

Abstract:

为了研究珠江河口营养物质循环和溶解氧,建立了一个生态型水质模式.在该水质模式中营养物质以溶解无机态、碎屑有机物质、底栖物质、浮游植物和浮游动物等5种形态出现,而每种形态均分氮和磷两种形式.水质模式采用三维形式,并与斜压水动力和泥沙模式联立运行.

References

[1]  VOLLENWEIDER R A. Input-output models with special reference to the phosphorus loading concept in limnology [ J ].Schweiz Z Hydrologie, 1975, 37: 53-84.
[2]  CHAPELLE A, LAZURE P, MENESGUEN A. Modeling eutrophication events in a coastal ecosystem. sensitivity analysis[J]. Estuarine Coastal and Shelf Science, 1994, 39: 529-548.
[3]  BLUMBERG A F, MELLOR G L. A description of a three-dimesional coastal ocean circulation model[A]. Heaps N. ThreeDimension Coastal Ocean Models[C]. American Geophysical Union, 1987. 1-16.
[4]  陈介中,王丽娅,董礼先,等.珠江河口海洋环境立体监测综合技术示范试验项目技术报告[R].香港:香港科技大学海岸与大气研究中心,2000.
[5]  EPPLEY R W. Temperature and phytoplankton growth in the sea[J]. Fishery bulletin, 1972, 70:1 063-1 085.
[6]  MOISAN J R. Modeling nutrient and plankton processes in the California coastal transition zone[ D]. Norfolk Va: Ph D thesis, Old Dominion Univ, 1993. 214.
[7]  DI TORO D M. Optics of turbid estuarine waters: approximations and applications[J]. Water Res, 1978, 12:1059-1068.
[8]  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.
[9]  SMAYDA T J, BIENFANG P K. Suspension properties of various phyletic groups of phytoplankton and tintinnids in an oligotrophic subtropical system[J]. Marine Ecology, 1983, 4: 289-300.
[10]  KAMP-NIELSEN L. A kinetic approach to the aerobic sediment-water exchange of phosphorus in lake Esrom[J].Ecological Modeling, 1975, 1: 153-160.
[11]  AMBROSE R B, WOOL T A, CONNOLY J P, et al. WASP4, a hydrodynamic and water quality model-model theory[A]. User\'s Manual, and Programmers Guide[ Z]. Athens GA: USEPA Environmental Research Laboratory, 1991.
[12]  CHEN X, SHENG Y P. Application of a coupled 3-D hydrodynamics-sediment-water quality model[A]. Estuarine and Coastal Modeling: IV[C]. American Society of Engineers, 1995. 325-339.
[13]  MALCHEREK A, MARKOFSKY M, ZIELKE W. Numerical modeling of settling velocity variations in estuaries[ J ].Advanc Limnol, 1996, 47: 353-362.
[14]  STEELE J H. Environment control of photosynthesis in the sea[J]. Limnology and oceanography, 1962, 7: 137-150.
[15]  RILEY G A. Oceanography of Long Island Sound 1952~ 1954 Ⅱ . Physical oceanography[A]. Bull Bingham Oceanog Collection, 15[C]. 1956. 15-16.
[16]  IVLEV V S. Experimental ecology of the feeding of fishes[M]. New Haven: Yale University Press, 1955.
[17]  MAGUE T H, FRIBERG E, HUGHES D J, et al. Extracellular release of carbon by marine phytoplankton: a physiological approach[J]. Limnology and Oceanography, 1980, 25: 262-279.
[18]  GUAN Wei-bing, ERIC WOLANSKI, DONG Li-xing. Cohesive sediment transport in the Jiaojiang River estuary, China[J]. Estuarine Coastal and Shelf Science, 1998, 46: 861-871.
[19]  RAVEN J A, BEARDALL J. Respiration and photorespiration[A]. Physiological Bases of Phytoplankton Ecology PLATT T. [C]. Canadian Bulletin of Fisheries and Aquatic Sciences, 1981. 55-82.
[20]  THOMANN R V, FITZPATRICK J F. Calibration and verification of a mathematical model of the eutrophication of the Potomac Estuary[R]. Mahwah N J: Hydroqul Inc, to DES, Dist Col, 1982.
[21]  APHA (AMERICAN PUBLIC HEALTH ASSOCIATION). Standard methods for the examination of water and waste water, 18th edition[S]. Washington DC, 1992.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133