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1996 | 436 |

Tytuł artykułu

Modelling the water balance and grass production using SWACROP/GRASS and GRAGRO models

Autorzy

Treść / Zawartość

Warianty tytułu

PL
Modelowanie bilansu wodnego i produkcji traw przy zastosowaniu modeli SWACROP/GRASS i GRAGRO

Języki publikacji

EN

Abstrakty

EN
In this paper especially the SWACROP/GRASS-model is described while only for comparing also a general introduction to GRAGRO - model, is given.
PL
W pracy opisano model SWACROP/GRASS i jako porównawczy model GRAGRO dla określenia bilansu wodnego gleb i produkcyjności traw.

Wydawca

-

Rocznik

Tom

436

Opis fizyczny

p.109-126,fig.,ref.

Twórcy

autor
  • Department of Water Supply and Waste-Water Disposal, Technical University, Nadbystrzycka 40, 20-618 Lublin, Poland
  • Institute for Land Reclamation and Grassland Farming, Gleboka 29, 20-612 Lublin, Poland
autor
  • Staring Centre, Wageningen, The Netherland

Bibliografia

  • 1. Aslyng H. C., Hansen S.: Water balance and crop production simulation. Hydrotech. Lab., Royal Yet. and Agric. Univ., Copenhaga, 200, 1982.
  • 2. Beker D. N., Hesketh J. G., Wearn R. E. C.: Crop architecture in relation to yield. Crop Physiol. (Textbook, Chapter 3) - manuscript, 1976.
  • 3. Belmans C., Bauma J., Feddes R. A., De Graaf M., Dekker L.W., Jeurissen J. W. M: Simulating soil; water regimes in the context of land evaluation. In: Progress in land evaluation (Eds J. C. F. M. Haans, G. G. L. Steur, G. Heids). Balkcma, Rotterdam, 309, 1984.
  • 4. Belmans C., Wesseling J. G., Feddes R. A.: Simulation model of the water balance of a cropped soil SWATRE. J. Hydrol., 63, 271 - 286, 1983.
  • 5. Childs E. C., Collins George N. C.: Interaction of water and porous materials, soil geometry and soil water equilibrium. Faraday Soc., 3, 78 - 85, 1968.
  • 6. De Jong R., Kabat P.: Calibration and asessment if the model SWACROP for grass production. Int. Symp. Water Manage for Food Production., Athens, Dec. 1988.
  • 7. De Wit C. T.: Photosynthesis of leaf canopies. Agric. Res. Rep., 663, PUDOC, Wageningen, 57, 1965.
  • 8. Ehlers W.: Transpiration efficiency oats. Agron. J., 80, 1988.
  • 9. Feddes R. A.: Crop water use and dry matter production: state of the art. In: Les besoins en eau des cultures/Crop water requirements (Eds A Perrier, Ch. Riou). f. internat. INRA, Paris, 11 – 14 Sept. 1984.
  • 10. Feddes R. A., Kabat P., van Backl P. J.T., Bronswijk J. J. B. Halbertsma J.: Modelling soil water dynamics in the unsaturated zone: state of the art. J. Hydrol, (in press).
  • 11. Feddes R. A., Kowalik P. J., Zaradny H.: Simulation of field water use and crop yield. Simulation Monograph, PUDOC, Wageningen, 189, 1978.
  • 12. Gardner W. C.: Relation of root distribution to water uptake availability. Amer. Soc. Agron., J., 41 - 45, 1964.
  • 13. Hanks R. J.: Model for predicting plant growth as influenced by evapotranspiration and soil water. Agron. J., 66, 660 - 665, 1974.
  • 14. Hansen G. K.: Utilization of photosynthates for growth, respiration and storage in tops and roots of Lolium multiflorum. Physiol. Plant, 42, 5 - 13, 1978.
  • 15. Mogensen V. O.: Field measurements of dark respiration rates of roots and aerial parts in Italian ryegrass and barley. J. Appl. Ecol. 14, 243 - 252, 1977.
  • 16. Olszta W.: Determination of the hydraulic conductivity in laboratory. Wiadomości IMUZ, 14 ,2, 1981.
  • 17. Olszta W.: Simulation of grass growth, water movement and soil temperature over high water table. Agr. Eng. Clemson University, Research Series. 19, SC. 29361, USA, 1975.
  • 18. Olszta W.: The influence of drainage depth on hydraulic conductivity of peat soils. Zesz. Probl. Post. Nauk Rol., 197, 69 - 77, 1977.
  • 19. Olszta W.: Investigations concerning the effect of the ground water table and transpiration on the moisture distribution in the profile of peat-muck soils by the simulation modelling method. Roczn. Gleboz., 31(3), Warszawa, 1980.
  • 20. Olszta W.: Investigation of soil moisture, grass growth and irrigation prognosis (in Polish). Habilitacia thesis. Falenty, 1981.
  • 21. Philip J. R.: Plant water relations: some physical aspects. Ann. Rev. Plant Physiol., 17, 245 - 268, 1966.
  • 22. Prins W. H., Van Burg P. F. J., Rauw G. J. G., Postmus J.: The seasonal response of grass to nitrogen at different levels of nitrogen pretreatment. II. Experiment 1974. Neth. Nitrogen, Tech. Bull., 1, 40,1981.
  • 23. Richards L. A.: Capillary conduction of liquids through porous media. Physics., 1, 318 - 333, 1931.
  • 24. Ritchie J. T.: Model for predicting evaporation from a row crop with incomplete cover. Water Res., 8, 1204 - 1213, 1972.
  • 25. Ryle G. J. A.: Effect of two levels of nitrogen on the growth of S37 Cocksfoot in small simulated swards in a controlled environment J. Br. Grassld. Soc. 25 : 20 - 28, 1970.
  • 26. Saugler B., Ripley E. A.: A model of growth and water use for natural grassland. In Proceedings of the 1975 Summer Comp. Simul. Conf., San Francisco, 1975, USA.
  • 27. Stakman W. P., van der Horst G. A.: Determination of soil moisture retention curves I. ICW, Wageningen, 1967.
  • 28. Stewart D. W., Dwyer L. M.: Development of a growth model for maize. Can. J. Plant Sci., 66, 267 - 280, 1986.
  • 29. Tenhunen J. D., Lange O. L., Jahner D.: The control by atmospheric factors and water stress of midday stomatal closure in Arlutus uneda growing in natural media. Becologia, 55, 165 - 169, 1982.
  • 30. Thom A. S., Oliver H. R.: On Penman’s equation for estimating regional evaporation. Quart J. Roy. Meteor. Soc. 103, 345 - 357, 1977.
  • 31. Visser W. C.: Moisture requirement of crop and rate of moisture depletion of soil. Tech. Bulletin No. 32, ICW, Wageningen, 1981.
  • 32. Wesseling J., Wit K. E:. An infiltration method for the determination of the capillary conductivity of undisturbed soil covers. Symp. Proc. Unesco II ASH, 1969. Mise. Repr. ICW, 81, 1966.
  • 33. Wit C. T. de.: Potential photosynthesis of crop surface. Neth. J. Agric. Sci. 7: 141 - 149, 1959.
  • 34. Wit C. T.: Transpiration and crop yields. Versl. Landb. k. Onderz. 64. 6 PUDOC, Wageningen, 1958.
  • 35. Zawadzki S.: Determination of soil moisture retention curves by laboratory method. Wiadomości IMUZ 14, 2, 1973.

Typ dokumentu

Bibliografia

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Identyfikator YADDA

bwmeta1.element.agro-68d7a280-e573-4355-a0ba-b3db0c2e03ce
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