Donk V.E., Grimm M.P., Gulati R.D., Breteler J.P.G., 1990, Whole-lake food-web manipulation
as a means to study community interactions in a small ecosystem, Hydobiologia, Vol.
200/201, pp. 275-289

Flores B.E., 1986, A pragmatic view of accuracy measurement in forecasting, Omega,
Vol. 14, No. 2, pp. 93-98

Forsberg C., Ryding S.O., 1980, Eutrophication parameters and trophic state indices
in 30 swedish waste-receiving lakes, Archiv für Hydrobiologie, Vol. 89, pp. 189-207

Han River Flood Control Office (HRFCO), 2017, http://www.wamis.go.kr (accessed Aug.
2018), Water Resources Management Information Syatem (WAMIS)
Kennedy R.H., Walker W.W., 1990, Reservoir nutrient dynamics, Reservoir Limnology:
Ecological Perspectives, Wiley-Interscience, pp. 109-131
Kong D., 1992, [Korean Literature], Limnological and ecological characteristics of
lake Paldang, Ph.D thesis, Korea University, pp. 1-421
Kong D., 2014, Water quality modeling of the eutrophic transition zone in a river-type
reservoir Paldang, Korean Journal of Ecology and Environment, Vol. 30, pp. 429-440

Kong D., 2017, Simple material budget modeling for the Paldang reservoir in the spring
season, [Korean Literature], Journal of Korean Society on Water Environment, Vol.
33, No. 6, pp. 696-714

Kong D., 2018, Phosphorus budget of a river reservoir, Paldang, [Korean Literature],
Journal of Korean Society on Water Environment, Vol. 34, No. 3, pp. 270-284

Kong D., Chung I. Y., Kim S. S., Yang H. J., Kim S. M., Lee H. J., Park J. H., Kang
T. G., Kim B. I., Park H. K., Byeon M. S., Chung M. S., Kim S. H., 2007, [Korean Literature],
Multidimensional analysis on material transport in lake Paldang (I), No. 2007-59-915,
National Institute of Environmental Research, NIER, pp. 1-169
Kong D., Jung D. I., Lee H. J., Kim S. H., Kim S. S., Par H. K., Mun H. S., Park J.
H., Kim S. M., Kang T. G., Chung I. Y., Byeon M. S., Kang P. G., Shin K. S., Seo J.
M., Jang S. H., 2005, [Korean Literature], Investigation on loading andwater quality
variation in Namhangang drainage basin, National Institute of Environmental Research,
NIER No. 2005-34-779
Larsen D.P., Mercier H.T., 1976, Phosphorus retention capacity of lakes, Journal of
the Fisheries Research Board of Canada, Vol. 33, pp. 1742-1750

Long T.Y., Wu L., Meng G.H., Guo W.H., 2011, Numerical simulation for impacts of hydrodynamic
conditions on algae growth in Chongqing Section of Jialing river, China, Ecological
Modelling, Vol. 222, pp. 112-119

Ministry of Environment (ME), 2017, http://water.nier.go.kr/waterMeasurement/selectWater.do
(accessed Oct. 2017), Water Environment Information System (WEIS)
Organization for Economic Co-operation and Development (OECD), 1982, Eutrophication
of waters. monitoring, assessment and control, OECD Cooperative Programme on Monitoring
of Inland Waters, OECD, pp. 1-154

Park H.K., 2014, Elemental stoichiometry of natural phytoplankton communities in reservoirs
of the Han river systems, Journal of Korean Society on Water Environment, Vol. 30,
No. 6, pp. 665-672

Park H.K., Byeon M.S., Shin Y.N., Jung D.I., 2009, Sources and spatial and temporal
characteristics of organic carbon in two large reservoirs with contrasting hydrologic
characteristics, Water Resources Research, Vol. 45, pp. W11418

Park H. K., Kim S., Byeon M., Chun M., Seo J., 2002, Mechanism of algal occurrence
and succession in lake Paldang - Study on Spatiotemporal Algal Growth Pattern -, NIER
No. 2002-30-669. [Korean Literature], Report of NIER, Vol. 24, pp. 505-517

Park H.K., Lee H.J., Kim E.K., Jung D.I., 2005, Characteristics of algal abundance
and statistical analysis of environmental factors in lake Paldang, [Korean Literature],
Journal of Korean Society on Water Environment, Vol. 21, No. 6, pp. 584-594

Sicko-Goad L.M., Schelske C.L., Stoermer E.F., 1984, Estimation of intracellular carbon
and silica content of diatoms from natural assemblages using morphometric techniques,
Limnology and Oceanography, Vol. 29, No. 6, pp. 1170-l178

Søndergaad M., Jeppesen E., Mortensen E., Dall E., Kristensen P., Sortkjær O., 1990,
Phytoplankton biomass reduction after planktivorous fish reduction in a shallow, eutrophic
lake: a combined effect of reduced internal P-loading and increased zooplankton grazing,
Hydrobiologia, Vol. 200/201, pp. 229-240

Thornton K.W., Kimmel B.L., Payne F.E., 1990, Reservoir limnology: ecological perspectives,
Wiley-Interscience, pp. 246
Uhm S.H., Hwang S.J., 2006, Grazing relationship between phytoplankton and zooplankton
in lake Paldang ecosystem, (Korean Literature), Korean Journal of Limnology, Vol.
39, No. 3, pp. 390-401

Vollenweider R.A., 1969, Möglichkeiten und grenzen elementarer modelle der stoffbilanz
von seen, Archiv für Hydrologie, Vol. 66, pp. 1-36

Vollenweider R.A., 1975, Input-output models with special reference to the phosphorus
loading concept in limnology, Schweizerische Zeitschrift für Hydrologie, Vol. 37,
pp. 53-84

Vollenweider R.A., 1976, Advances in defining critical loading levels for phosphorus
in lake eutrophication, Memorie dell’' Istituto Italiano di Idrobiologia, Vol. 33,
pp. 53-83

Vollenweider R.A., Kerekes J., 1982, Eutrophication of waters. monitoring, assessment
and control, OECD Cooperative programme on monitoring of inland waters, OECD, pp.
154

Wetzel R.G., 1983, Limnology, Saunders College Publishing, Philadelphia
Yan R.R., Pang Y., Chen X.F., Zhao W., Ma J., 2008, Effect of disturbance on growth
of Microcystis aeruginosa in different nutrient levels, Environmental Science, Vol.
29, No. 10, pp. 2750-2753
