PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Analysis of trend rainfall: Case of North-Eastern Algeria

Treść / Zawartość
Identyfikatory
Warianty tytułu
PL
Analiza tendencji opadów – przykład północno-wschodniej Algierii
Języki publikacji
EN
Abstrakty
EN
The climatic change is a reality largely recognized today in the scientific community. Nevertheless, its impact on precipitation, especially on annual, monthly and seasonally rainfall in arid and semi-arid regions is not yet certain. Indeed, very few studies have dealt with this matter in Algeria. In this context to examine spatial distribution of annual and seasonal rainfall an attempt has been made using the inverse distance weighting (IDW) method. Trends and magnitude estimate of change in rainfall series were detected by Mann–Kendall tests and Sen's test slope, has been applied to the data registered of 35 stations in the watershed Constantinois Seybouse Mellegue (CSM) North-Eastern Algeria over a period of 43 years (1969–2012). Results from spatial plot of annual rainfall showed that the rainfall increases with altitude, but is higher for the stations exposed to moist winds. It also increases from east to west and conversely decreases as one moves away from the coast to the south. From statistical method showed that there are increase trends at 95% confidence at annual scale in some rainfall stations with high altitude and coastal stations during winter season.
PL
Zmiana klimatu jest faktem powszechnie uznawanym obecnie przez społeczność naukową. Mimo to jej wpływ na opady, szczególnie na roczny, miesięczny i sezonowy opad na obszarach klimatu suchego i półsuchego, nie jest jeszcze dobrze rozpoznany. Do tej pory tylko kilka badań w Algierii dotyczyło tej kwestii. W związku z tym podjęto próbę zbadania przestrzennego rozmieszczenia rocznych i sezonowych opadów za pomocą metody odwrotnej odległości (IDW – ang. inverse distance weighting). Trendy i wielkość oszacowanych zmian w seriach opadów analizowano testem Manna–Kendalla, a test nachylenia Sena użyto do danych zgromadzonych w 35 posterunkach opadowych w zlewni Constantinois Seybouse Mellegue (CSM) w północno- -wschodniej Algierii w ciągu 43 lat (1969–2012). Wyniki analiz przestrzennego rozkładu rocznych opadów wykazały, że opad rośnie wraz z wysokością nad poziomem morza i jest większy w stanowiskach eksponowanych na wilgotne wiatry. Opad rośnie ze wschodu na zachód, a maleje od wybrzeża w kierunku południowym. Metody statystyczne ujawniły rosnący (przedział ufności 95%) trend opadów w niektórych posterunkach na dużych wysokościach i w posterunkach przybrzeżnych w okresie zimy.
Wydawca
Rocznik
Tom
Strony
105--115
Opis fizyczny
Bibliogr. 42 poz., rys., tab.
Twórcy
autor
  • University of Badji Mokhtar, Faculty of Engineering Science, Department of Hydraulics, Annaba, Algeria, University Mohamed Cherif Mesaadia, Laboratory of Research Infra-Res, Souk Ahras, Algeria
autor
  • University Mohamed Cherif Mesaadia, Laboratory of Research Infra-Res, Souk Ahras, Algeria
autor
  • University of Badji Mokhtar, Faculty of Engineering Science, Department of Hydraulics, Annaba, Algeria
Bibliografia
  • ADLER R.F., HUFFMAN G.J., BOLVIN D.T., CURTIS S., NELKIN E.J. 2000. Tropical rainfall distributions determined using TRMM combined with other satellite and rain gauge information. Journal of Applied Meteorology. Vol. 39 p. 2007–2023.
  • BALAH B., AMARCHI H. 2016. Variabilité des séries pluviométriques du bassin versant de la Seybouse du Nord Est-Algérien [Variability of rainfall series of Seybouse watershed of North-East of Algeria]. Revue Sciences Technologies, Synthèse. Vol. 32 p. 86–97.
  • BENKHALED A., BOUZIANE M.T., ACHOUR B. 2008. Detecting trends in annual discharge and precipitation in the Chott Melghir Basin in Southeastern Algeria. Larhyss Journal. Vol. 7 p. 103–119.
  • BUFFONI L., MAUGERI M., NANNI T. 1999. Precipitation in Italy from 1833 to 1996. Theoretical and Applied Climatology. Vol. 63 p. 33–40.
  • CALOIERO T., COSCARELLI R., FERRARIC E., MANCINIA M. 2011. Trend detection of annual and seasonal rainfall in Calabria (Southern Italy). International Journal of Climatology. Vol. 31 p. 44–56.
  • CAMBERLIN P. 1994. Les précipitations dans la Corne de l'Afrique-climatologie, variabilité et connexions avec quelques indicateurs océan-atmosphériques [Precipitation in the Horn of Africa-climatology, variability and connections with some ocean-atmospheric indicators]. PhD Thesis. Dijon, France. Université de Bourgogne, Centre de Recherches de Climatologie pp. 379.
  • CHAKRABORTY S., PANDEY R.P., CHAUBE U.C., MISHRA S.K. 2013. Trend and variability analysis of rainfall searies at Seonath River Basin, Chhattisgarh (India). International Journal Applied Science and Engineering Research. Vol. 2. Iss 4 p. 425–434.
  • CONRAD V.A., POLLAK L.W. 1950. Methods in climatology. Cambridge, Massachussets. Harvard University Press. ISBN 9780674187856 pp. 459.
  • FARHANGI M., KHOLGHI M., CHAVOSHIAN S.A. 2016. Rainfall trend analysis of hydrological subbasins in Western Iran. Journal of Irrigation and Drainage Engineering. Vol. 142. Iss. 10 p. 05016004-1–05016004-11.
  • GUIJARRO J.A., JANSA A., CAMPINS J. 2006. Time variability of cyclonic geostrophic circulation in the Mediterranean. Advances in Geosciences. Vol. 7 p. 45-49.
  • Groupe Chadule 1974. Initiation aux méthodes statistiques en géographie [Introduction to statistical methods in geography]. Paris. Masson et Cie pp. 192.
  • HASSINI N., ABDERRAHMANI B., DOBBI A. 2011. Trends of precipitation and drought on the Algerian littoral: Impact on the water reserves. International Journal of Water Resources and Arid Environments. Vol. 1. Iss. 4 p. 271–275.
  • IPCC 2013. Climate change 2013: The physical science basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [online]. Eds. T.F. Stocker, D. Qin, G.-K. Plattner, M. Tignor, S.K. Allen, J. Boschung, A. Nauels, Y. Xia, V. Bex, P.M. Midgley. Cambridge, United Kingdom, New York, NY, USA. Cambridge University Press. [Access 20.05.2017]. Available at: http://www.ipcc.ch/report/ar5/wg1/
  • JAGADEESH P., ANUPAMA C. 2014. Statistical and trend analyses of rainfall: A case study of Bharathapuzha River basin, Kerala, India. ISH Journal of Hydraulic Engineering. Vol. 20. Iss. 2 p. 119–132.
  • JAYAWARDENE H.K.W.I., SONNADARA D.U.J., JAYEWARDENE D.R. 2005. Trends of rainfall in Sri Lanka over the last century. Sri Lankan Journal of Physics. Vol. 6 p. 7–17.
  • KENDALL M.G. 1975. Rank correlation methods. 4th ed. London, UK. Charles Griffin. ISBN 0852641990 pp. 202.
  • KHOMSI K., MAHE G., SINAN M., SNOUSSI M., CHERIFI R., NAIT SAID Z. 2011. Evolution des évènements chauds rares et très rares dans les bassins versants du Tensift et du Bouregreg (Maroc) et identification des types de temps synoptiques associés. In: From prediction to prevention of hydrological risk in Mediterranean countries [Evolution of rare and very rare hot events in the watersheds of Tensift and Bouregreg (Morocco) and identification of the associated synoptic time types]. Eds. E. Ferrari, P. Versace. 4th International Workshop on Hydrological extremes. Cosenza, Italia. AMHY-Friend Group, University of Calabria p. 169–182.
  • KHOMSI K., MAHE G., SINAN M., SNOUSSI M., TRAMBLAY Y. 2015. Trends in rainfall and temperature extremes in Morocco. Natural Hazards and Earth System Sciences Discussions. Vol. 3 p. 1175–1201.
  • KINGUMBI A., BERGAOUI Z., BOURGES J., HUBERT P., KALLED R. 2000. Étude de l'évolution des séries pluviométriques de la Tunisie centrale [Study of the evolution of the rainfall series of Central Tunisia]. Documents Techniques en Hydrologie. No 51. Hydrologie des Régions Méditerranéennes, Actes du Séminaire de Montpellier, 2000. Paris. UNESCO p. 341–345.
  • KOURAT T., MEDJERAB A. 2016. Analyse et cartographie des pluies et l’incidence de leurs variabilité spatiotemporelle sur la délimitation des zones céréalières dans les hautes plaines orientales de l’Algérie [Rainfall analysis and mapping and the impact of their spatiotemporal variability on the delineation of cereal zones in the high eastern plains of Algeria]. Revue Agriculture. Vol. 1 p. 220–229.
  • KUMAR V., JAIN SHARAD K., SINGH Y. 2010. Analysis of long-term rainfall trends in India. Journal of Hydrological Sciences Journal. Vol. 55. Iss. 4 p. 484–496.
  • LONGOBARDI A., VILLANI P. 2010. Trend analysis of annual and seasonal rainfall time series in the Mediterranean area. International Journal of Climatology. Vol. 30. Iss. 10 p. 1538–1546.
  • LUPIKASZA E. 2008. Spatial and temporal variability of extreme precipitation in Poland in the period 1951–2006. International Journal of Climatology. Vol. 30 p. 991–1007.
  • MANN H B. 1945. Nonparametric tests against trend. Econometrica. Vol. 13 p. 245–259.
  • MARTINEZ M.D., LANA X., BURGUENOC A., SERRA C. 2007. Spatial and temporal daily rainfall regime in Catalonia (NE Spain) derived from four precipitation indices, years 1950–2000. International Journal of Climatology. Vol. 27. Iss. 1 p. 123–138.
  • MEDDI H. 2013. Annual variability of precipitation of the North West of Algeria. 4th International Conference on Environmental Science and Development – ICESD 2013. APCBEE Procedia. Vol. 5 p. 373–377.
  • MEDDI M., ASSANI A., MEDDI H. 2010. Temporal variability of annual rainfall in the Macta and Tafna catchments, Northwestern Algeria. Water Resources Management. Vol. 24 p. 3817–3833.
  • MEDDI M., MEDDI H. 2009. Variabilité des précipitations annuelles du Nord-Ouest de l’Algérie [Annual variability of precipitation in the northwest of Algeria]. Sciences et changement planétaires Sécheresse. Vol. 20. Iss. 1 p. 57–65.
  • MEHTA AV., YANG S. 2008. Precipitation climatology over Mediterranean Basin from ten years of TRMM measurements. Advances in Geosciences. Vol. 17 p. 87–91.
  • NOUACEUR Z. 2010. Évaluation des changements climatiques au Maghreb, Étude du cas des régions du quart nord-est algérien [Assessment of climate change in the Maghreb, Case study of the regions of the northeastern quarter of Algeria]. Proceedings of the Actes du 23rd Colloque de l'Association Internationale de Climatologie, Risques et Changements Climatiques. Rennes, France p. 463–468.
  • NOUACEUR Z., MURÃRESCU O. 2016. Rainfall variability and trend analysis of annual rainfall in North Africa [online]. International Journal of Atmospheric Sciences. Vol. 2016. [Access 20.05.2017]. Available at: https://www.hindawi.com/journals/ijas/2016/7230450/
  • OBOT N.I., ONYEUKWU N.O. 2010.Trend of rainfall in Abeokuta, Ogun State, Nigeria: A 2-year experience (2006– 2007). Journal of Environmental Issues and Agriculture in Developing Countries. Vol. 2. Iss. 1 p. 70–81.
  • ONM 2006. Office National de la Météorologie en Algérie [online]. [Access 10.05.2017]. Available at: http://www.meteo.dz
  • PANOFSKY H.A., BRIER G.W. 1968. Some applications of statistics to meteorology. Pennsylvania. The Pennsylvania State University, University Park, PA, USA pp. 224.
  • PARTA T., KAHYA E. 2006. Trend analysis in Turkish precipitation data. Journal of Hydrological Processes. Vol. 20 p. 2011–2026.
  • PHILANDRAS C.M., NASTOS P.T., KAPSOMENAKIS J., DOUVIS K.C., TSELIOUDIS G., ZEREFOS C.S. 2011. Long term precipitation trends and variability within the Mediterranean region. Natural Hazards and Earth System Sciences. Vol. 11. Iss. 12 p. 3235–3250.
  • SALMI T., MAATTA A., ANTTILA P., RUOHO-AIROLA T., AMNELL T. 2002. Detecting trends of annual values of atmospheric pollutants by the Mann–Kendall test and Sen's slope estimates – The Excel template application MAKESENS. Publications on Air Quality. No. 31. ISSN 1456-789X. Finish Meteorological Institute, Helsinki pp. 35.
  • SOLTANI S., SABOOHI R., YAGHMAEI L. 2012. Rainfall and rainy days trend in Iran. Journal of Climate Change. Vol. 110 p. 187–213.
  • SU B.D., JIANG T., JIN W.B. 2006. Recent trends in observed temperature and precipitation extremes in the Yangtze River basin, China. Journal of Theoretical Applied Climatology. Vol. 83 p. 139–151.
  • TABET S. 2008. Le changement climatique en Algérie orientale et ses conséquences sur la végétation forestière [Climate change in eastern Algeria and its consequences on forest vegetation]. MSc Thesis. Université Constantine 1 ex Mentouri pp. 125.
  • TRAMBLAY Y., EL ADLOUNI S., SERVAT E. 2013. Trends and variability in extreme precipitation indices over Maghreb countries. Natural Hazards Earth Systems Sciences. Vol. 13 p. 3235–3248.
  • YENIGUN K., GÜMÜS V., BULUT H. 2008. Trends in streamflow of Euphrates Basin, Turkey. ICE Water Management. Vol. 161. Iss. 4 p. 189–198.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e6c7b91f-b80a-4022-9d7d-05af0183e1a8
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.