PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

The Water Requirements of Grapevines (Vitis vinifera L.) Under Climatic Conditions of Central Poland

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The purpose of this study was to estimate the water needs of grapevines in central Poland in 1981-2010. Water needs were calculated by the plant coefficients, which were assumed according to the Doorenbos and Pruitt method. Reference evapotranspiration was assessed by the Blaney-Criddle’s equation, modified for Polish conditions. Rainfall deficit with the occurrence probability of normal, medium dry and very dry years was determined by the Ostromęcki’s method. Water needs of grapevines during the growing season was 434 mm. Upward time trend in the water needs both in the periods May-October and June-August was estimated. Temporal variability in the water needs was significant for most of the provinces. The rainfall deficit was recorded with the occurrence probability of normal as well as medium or very dry years in the entire study area. Due to climate changes, vineyards will require irrigation in the near future. This research significantly broadens and refines the knowledge about the water needs of grapevines in central Poland, which will allow the design of resource-efficient irrigation programs for grapevines in the studied region of Poland.
Rocznik
Tom
Strony
731--743
Opis fizyczny
Bibliogr. 52 poz., rys., tab.
Twórcy
  • Department of Agrometeorology, Plant Irrigation and Horticulture, Faculty of Agriculture and Biotechnology, Bydgoszcz University of Science and Technology, Poland
  • Department of Plant Biology and Biotechnology, Faculty of Biotechnology and Horticulture, University of Agriculture in Krakow, Poland
  • Department of Land Improvement, Environmental Development and Spatial Management, Faculty of Environmental Engineering and Mechanical Engineering, Poznań University of Life Sciences, Poland
  • Department of Agrometeorology, Plant Irrigation and Horticulture, Faculty of Agriculture and Biotechnology, Bydgoszcz University of Science and Technology, Poland
Bibliografia
  • Acevedo-Opazoa, C., Ortega-Fariasa, S., Fuentes, S. (2010). Effects of grapevine (Vitis vinifera L.) water status on water consumption, vegetative growth and grape quality: An irrigation scheduling application to achieve regulated deficit irrigation. Agricultutal Water Management, 97(7), 956-964. DOI: 10.1016/j.agwat.2010.01.025
  • Adamczewska-Sowińska, K., Bąbelewski, P., Chohura, P., Czaplicka-Pędzich, M., Gudarowska, E., Krężel, J., Mazurek, J., Sosna, I., Szewczuk, A. (2016). Agrotechniczne aspekty uprawy winorośli [Agrotechnical aspects of viticulture]. Wrocław: Druk-24h (in Polish).
  • Bąk, B., Łabędzki, L. (2014). Thermal conditions in Bydgoszcz region in growing seasons 2011–2050 in view of expected climate change. Journal Water and Land Development, 23, 21-29. DOI: 10.1515/jwld-2014-0026
  • Bokwa, A., Klimek, M. (2009). Warunki klimatyczne Pogórza Wielickiego dla potrzeb uprawy winorośli [Climate conditions of the Wieliczka Foothills for the purposes of viticulture]. In: A. Zborowski, Z. Górka (Editors). Człowiek i rolnictwo [Man and agriculture] (pp. 103-111). Kraków: IGiGP UJ (in Polish).
  • Chaves, M.M., Santos, T.P., Souza, C.R., Ortuño, M.F., Rodrigues, M.L., Lopes, C.M., Maroco, J.P., Pereira, J.S. (2007). Deficit irrigation in grapevine improves water‐ use efficiency while controlling vigour and production quality. Annals of Applied Biology, 150(2), 237-252. DOI: 10.1111/j.1744-7348.2006.00123.x
  • Chaves, M.M., Zarrouk, O., Francisco, R., Costa, J.M., Santos, T., Regalado, A.P., Rodrigues, M.L., Lopes, C.M. (2010). Grapevine under deficit irrigation: hints from physiological and molecular data. Annals of Botany, 105(5), 661-676. DOI: 10.1093/aob/mcq030
  • Doorenbos, J., Pruitt, W.O. (1977). Guidelines for predicting crop water requirements. FAO Irrigation and Drainage Paper 24, 176.
  • Burg, P. (2008). The influence of drip irrigation on the quality of vine grapes. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis, 56(1), 31-36.
  • Dzieżyc, J. (1988). Rolnictwo w warunkach nawadniania [Irrigationin agriculture]. Warszawa: PWN (in Polish).
  • Grabowski, J., Kopytowski, J. (2009). Czas aktywnego wzrostu roślin w Polsce północno- wschodniej, a warunki uprawy winorośli [The time of active plant growth in north-eastern Poland and the conditions of viticulture]. Zeszyty Problemowe Postepów Nauk Rolniczych, 536, 87-94 (in Polish).
  • Intrigliolo, D.S., Castel, J.R. (2008). Effects of irrigation on the performance of grapevine cv. Tempranillo in Requena, Spain. American Journal of Enology and Viticulture, 59, 30-38.
  • Intrigliolo, D.S., Pérez, D., Risco, D., Yeves, A., Castel, J.R. (2012). Yield components and grape composition responses to seasonal water deficits in Tempranillo grapevines. Irrigation Science, 30(5), 339-349. DOI: 10.1007/s00271-012-0354-0
  • Jagosz, B., Rolbiecki, S., Stachowski, P., Ptach, W., Łangowski, A., Kasperska- Wołowicz, W., Sadan, H.A., Rolbiecki, R., Prus, P., Kazula, M.J. (2020). Assessment of water needs of grapevines in western Poland from the perspective of climate change. Agriculture 10, 0477. DOI: 10.3390/agriculture10100477
  • Kapłan, M. (2013). Możliwości uprawy winorośli w Polsce [Possibilities of viticulture in Poland]. Nauki Przyrodnicze, 2, 4-12.
  • Kopeć, B. (2009). Uwarunkowania termiczne wegetacji winorośli na obszarze południowo- wschodniej Polski [Thermal conditions of grape’s vegetation in southeastern Poland]. Infrastructure and Ecology of Rural Areas, 4, 251-262.
  • Koźmiński, C., Michalska, B. (2001). Atlas klimatycznego ryzyka uprawy roślin w Polsce [Atlas of climatic risk to crop cultivation in Poland] (pp. 17-18). Szczecin: Usz. (in Polish).
  • Kuchar, L., Iwański, S. (2011). Symulacja opadów atmosferycznych dla oceny potrzeb nawodnień roślin w perspektywie oczekiwanych zmian klimatycznych [Rainfall simulation for the prediction of crop irrigation in future climate]. Infrastructure and Ecology of Rural Areas, 5, 7-18 (in Polish).
  • Kuchar, L., Iwański, S. (2013). Ocena opadów atmosferycznychdla potrzeb produkcji roślinnej w perspektywie lat 2050-2060 i wybranych scenariuszy zmian klimatu w północno-centralnej polsce. [Rainfall evaluation for crop production until 2050- 2060 and selected climate change scenarios for North Central Poland]. Infrastructure and Ecology of Rural Areas, 2(I), 187-200 (in Polish).
  • Kuchar, L., Iwański, S., Diakowska, E., Gąsiorek, E. (2015). Symulacja warunków hydrotermicznych w północnej części centralnej polski w perspektywie lat 2050-2060 dla potrzeb produkcji roślinnej i wybranych scenariuszy klimatycznych. [Simulation of hydrothermal conditions for crop production purpose until 2050- 2060 and selected climate change scenarios for North Central Poland]. Infrastructure and Ecology of Rural Areas, II(1), 319-334 (in Polish).
  • Kuchar, L., Iwański, S., Diakowska, E., Gąsiorek, E. (2017). Ocena suszy meteorologicznej w 2015 roku w północnej części centralnej polski z wykorzystaniem wskaźnika hydrotermicznego (htc) w kontekście zmian klimatycznych [Assessment of meteorological drought in 2015 for North Central part of Poland using hydrothermal coefficient (HTC) in the context of climate change]. Infrastructure and Ecology of Rural Areas, I(2), 257-273. DOI: dx.medra.org/10.14597/infraeco.2017.1.2.019 (in Polish).
  • Lisek, J. (2011). Winorośl w uprawie przydomowej i towarowej [Vines in home and commercial cultivation]. Warszawa: Hortpress (in Polish).
  • Lisek, J. (2008). Climatic factors affecting development and yielding of grapevine in Central Poland. Journal of Fruit and Ornamental Plant Research, 16, 286-293.
  • Łabędzki, L. (2009a). Przewidywane zmiany klimatyczne a rozwój nawodnień w Polsce [Foreseen climate changes and irrigation development in Poland]. Infrastructure and Ecology of Rural Areas, 3, 7-18.
  • Łabędzki, L. (2009b). Expected development of irrigation in Poland in the context of climate change. Journal Water and Land Development, 13b, 17-29. DOI: 10.2478/v10025-010-0002-0
  • Łabędzki, L., Szajda, J., Szuniewicz, J. (1996). Ewapotranspiracja upraw rolniczych – terminologia, definicje, metody obliczania. Przegląd stanu wiedzy [Evapotranspiration of agricultural crops – terminology, definitions, calculation methods. Review]. Materiały Informacyjne IMUZ Falenty, 33, 1-15 (in Polish).
  • Łabędzki, L., Bąk, B., Liszewska, M. (2013). Wpływ przewidywanej zmiany klimatu na zapotrzebowanie ziemniaka późnego na wodę [Impact of climate change on water demand of late potato]. Infrastructure and Ecology of Rural Areas, 2(I), 155-165.
  • Myśliwiec, R. (2013). Uprawa winorośli [Viticulture]. Warszawa: PWRiL (in Polish).
  • Myśliwiec, R. (2006). Winorośl i wina [Vines and wines]. Warszawa: PWRiL (in Polish).
  • Nolz, R., Loiskandl, W., Kammerer, G., Himmelbauer, M.L. (2016). Survey of soil water distribution in a vineyard and implications for subsurface drip irrigation control. Soil and Water Research, 11, 250-258. DOI: 10.17221/170/2015-SWR
  • Nolz, R., Loiskandl, W. (2017). Evaluating soil water content data monitored at different locations in a vineyard with regard to irrigation control. Soil and Water Research, 12, 152-160. DOI: 10.17221/9/2016-SWR
  • Piña-Rey, A., González-Fernández, E., Fernández-González, M., Lorenzo, M.N., Rodríguez-Rajo, F.J. (2020). Climate change impacts assessment on wine-growing bioclimatic transition areas. Agriculture, 10, 605. DOI: 10.3390/agriculture10120605
  • Pink, M. (2015). Polska jako kraj winiarski? Od tradycji do rodzących się możliwości [Poland as a wine country? From tradition to emerging possibilities]. Problemy Problems of Small Agricultural Holdings, 2, 37-56. DOI: 0.15576/PDGR/2015.2.37 (in Polish).
  • Rojek, M. (2006). Potrzeby nawadniania w Polsce [Irrigation needs in Poland]. In: S. Karczmarczyk, L. Nowak (Editors). Nawadnianie roślin [Plant irrigation] (pp. 91-108). Poznań: PWRiL (in Polish).
  • Ruiz-Sanchez, M.C., Domingo, R., Castel, J.R. (2010). Review. Deficit irrigation in fruit trees and vines in Spain. Spanish Journal of Agricultural Research, 8, 5-20. DOI: 10.5424/sjar/201008S2-1343
  • Rolbiecki, S. (2018). O szacowaniu potrzeb wodnych drzew owocowych w Polsce na podstawie temperatury powietrza [On the estimation of the water needs of fruit trees in Poland based on air temperature]. Infrastructure and Ecology of Rural Areas, II(1), 393-406. DOI: 10.14597/INFRAECO.2018.2.1.02 (in Polish).
  • Rolbiecki, S., Piszczek, P. (2016). Effect of the forecast climate change on the grapevine water requirements in the Bydgoszcz region. Infrastructure and Ecology of Rural Areas, IV(4), 1847-1856. DOI: 10.14597/infraeco.2016.4.4.13
  • Rolbiecki, S., Piszczek, P. Chmura, K. (2017). Attempt at comparison of the grapevine water requirements in the regions of Bydgoszcz and Wrocław. Infrastructure and Ecology of Rural Areas, III(2), 1157-1166. DOI: 10.14597/infraeco.2017.3.2.088
  • Rolbiecki, S., Rolbiecki, R., Rzekanowski, C. (2002a). Response of black currant (Ribes nigrum L.) cv. ‘Titania’ to micro-irrigation under loose sandy soil conditions. Acta Horticulture, 585(2), 649-652. DOI: 10.12911/22998993/109859
  • Rolbiecki, S., Rolbiecki, R., Rzekanowski, C. (2002b). Effect of micro-irrigation on the growth and yield of raspberry (Rubus idaeus L.) cv. 'Polana' grown in very light soil. Acta Horticulture, 585(2), 653-657. DOI: 10.17660/ActaHortic.2002.585.108
  • Rolbiecki, S., Rzekanowski, C. (1997). Influence of sprinkler and drip irrigation on the growth and yield of strawberries grown on sandy soils. Acta Horticulture, 439(2), 669-672. DOI: 10.17660/ActaHortic.1997.439.112
  • Rzekanowski, C. (2009). Kształtowanie się potrzeb nawodnieniowych roślin sadowniczych w Polsce [Shaping of irrigation needs for fruit plants in Poland]. Infrastructure and Ecology of Rural Areas, 3, 19-27 (in Polish).
  • Rzekanowski, C., Rolbiecki, S. (2000a). The influence of drip irrigation on yields of some cultivars of apple trees in central Poland under different rainfall conditions during the vegetation season. Acta Horticulture, 537(2), 929-936. DOI: 10.14597/infraeco.2017.3.2.094
  • Rzekanowski, C., Rolbiecki, S. (2000b).The influence of drip irrigation on yields of some cultivars of stone fruit-bearing trees in central Poland under different rainfall conditions during the vegetation season. Acta Horticulture, 537(2), 937-942. DOI: 10.17660/ActaHortic.2000.537.114
  • Słowik, K. (1973). Deszczowanie roślin sadowniczych [Sprinkling of fruit plants]. Warszawa: PWRiL (in Polish).
  • Stachowski, P., Markiewicz, J. (2011). Potrzeba nawodnień w centralnej Polsce na przykładzie powiatu kutnowskiego. [The need of irrigation in central Poland on the example of Kutno county]. Rocznik Ochrona Środowiska, 13, 1453-1472 (in Polish).
  • Szymanowski, M., Smaza, M. (2007). Zmiana zasobów klimatycznych a możliwości uprawy winorośli na Dolnym Śląsku [Change of climatic resources and possibilities of viticulture in Lower Silesia]. Proceedings of the XXXII National Congress of Agrometeorologists and Climatologists, Kołobrzeg, Poland, September 13-15, 69-70.
  • Treder, W., Pacholak, E. (2006). Nawadnianie roślin sadowniczych [Irrigation of fruit plants]. In: S. Karczmarczyk, L. Nowak, (Editors). Nawadnianie roślin [Plant irrigation] (pp. 333-365). Poznań: PWRiL (in Polish).
  • Yunusa, I.A.M., Walker, R.R., Loveys, B.R., Blackmore, D.H. (2000). Determination of transpiration in irrigated grapevines: comparison of the heat-pulse technique with gravimetric and micrometeorological methods. Irrigation Science, 20(1), 1-8.
  • Yunusa, J., Bota, J., Escalona, J.M., Medrano, H., Flexas, J. (2005) Phyisological tools for irrigation scheduling in grapevine (Vitis vinifera L.): An open gate to improve water-use efficiency? Agriculture, Ecosystems & Environment, 106(2-3), 159-170. DOI: 10.1016/j.agee.2004.10.005
  • Żakowicz, S. (2010). Podstawy technologii nawadniania rekultywowanych składowisk odpadów komunalnych [Fundamentals of irrigation technology for reclaimed municipal waste Dumas]. Warszawa: SGGW (in Polish).
  • Żakowicz, S., Hewelke, P. (1995). Wybrane materiały meteorologiczne [Selected meteorological materials] (p. 356). Warszawa: SGGW (in Polish).
  • Żakowicz, S., Hewelke, P., Gnatowski, T. (2009). Podstawy infrastruktury technicznej w przestrzeni produkcyjnej [Basics of technical infrastructure in production space] (p. 192). Warszawa: SGGW (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f0ea5879-6092-42ba-a37e-37b113512f21
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.