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Statistical assessment of rainfall variability and trends in northeastern Algeria

Treść / Zawartość
Identyfikatory
Warianty tytułu
PL
Statystyczna ocena zmienności i trendów opadu w północnowschodniej Algierii
Języki publikacji
EN
Abstrakty
EN
In the present study, time series for annual, monthly rainfall and number of rainy days per year were analysed to quantify spatial variability and temporal trends for 22 rainfall stations distributed in northeastern Algeria for the period 1978– 2010. The Mann–Kendall test and the Sen’s slope estimator were applied to assess the significance and magnitude of the trend. The results showed that precipitation decreases spatially from North to South and from East to West. The application of the Mann–Kendall test (for 0.05% threshold) to the time series data showed that for annual precipitation, no station showed statistically significant trends, unlike the number of rainy days, where there was a significant negative trend in four stations (Jijel, Constantine, Oum El Bouaghi and Tébessa). For the monthly time series, significant positive trends were observed during the months of September in the coastal stations and July for the plateaus and southern Saharan Atlas stations, while significant negative trends were recorded during the months of February and March for the stations of the extreme East in the study area. These results revealed that for the period analysed, there was no significant climate change in northeastern Algeria but there is a seasonal delay having important agroecological implications.
PL
W przedstawionych badaniach analizowano serie rocznych i miesięcznych opadów oraz liczbę dni z deszczem w ciągu roku celem ustalenia przestrzennej zmienności i czasowych trendów w latach 1978–2010 dla 22 stacji pomiarowych rozmieszczonych w północnowschodniej Algierii. Wykorzystano test Manna–Kendalla i estymator Sena do oceny istotności i rozmiaru trendu. Wyniki dowodzą, że opady malały z północy na południe i ze wschodu na zachód. Zastosowanie testu Manna–Kendalla (p < 0,05) do serii danych pomiarowych nie wykazały w żadnej stacji statystycznie istotnych trendów dla rocznych opadów w przeciwieństwie do liczby dni z opadem, które cechował istotny negatywny trend w czterech stacjach pomiarowych (Jijel, Constantine, Oum El Bouaghi i Tébessa). Analiza serii miesięcznych opadów dowiodła występowania dodatniego trendu w odniesieniu do sierpnia w stacjach na wybrzeżu i w odniesieniu do lipca w stacjach na płaskowyżach i w południowym Atlasie Saharyjskim. Istotny trend ujemny uzyskano w przypadku lutego i marca w stacjach na wschodzie badanego obszaru. Wyniki dowodzą, że w analizowanym okresie nie stwierdzono istotnych zmian klimatu w północnowschodniej Algierii, z wyjątkiem sezonowych opóźnień, które wywołują ważne skutki agro-ekologiczne.
Wydawca
Rocznik
Tom
Strony
87--96
Opis fizyczny
Bibliogr. 57 poz., rys., tab.
Twórcy
  • University Frères Mentouri, Faculty of Nature and Life Sciences, Department of Biology and Plant Ecology, Constantine I, 25017 Constantine, Algeria
autor
  • University of Badji Moukhtar, Department of Biology, Plant Biology and Environment Research Laboratory, Annaba, Algeria
  • University of Biskra, Department of Agricultural Sciences, Algeria
Bibliografia
  • ANRH 1993. Carte pluviométrique de l’Algérie du Nord [Pluviometric chart of northern Algeria]. Agence Nationale des Ressources Hydrauliques. Alger, Algérie.
  • 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]. Synthèse: Revue des Sciences et de la Technologie. No. 32 p. 86–97.
  • BATISANI N., YARNAL B. 2010. Rainfall variability and trends in semi-arid Botswana: Implications for climate change adaptation policy. Applied Geography. Vol. 30. Iss. 4 p. 483–489.
  • BENHAMROUCHE A., BOUCHERF D., HAMADACHE R., BENDAHMANE L., MARTÍN VIDE J., TEIXEIRA NERY J. 2015. Spatial distribution of the daily precipitation concentration index in Algeria. Natural Hazards and Earth System Sciences. Vol. 15. Iss. 3 p. 617–625.
  • BESSAKLIA H., GHENIM A.N., MEGNOUNIF A., MARTIN-VIDE J. 2018. Spatial variability of concentration and aggressiveness of precipitation in North-East of Algeria. Journal of Water and Land Development. No. 36 p. 3–15. DOI 10.2478/jwld-2018-0001.
  • BRUNETTI M., BUFFONI L., MAUGER M., NANI T. 2000. Precipitation intensity trends in northern Italy. International Journal of Climatology. Vol. 20 p. 1017–1031.
  • CALOIERO T., COSCARELLI R., FERRARI E., MANCINI M. 2011. Trend detection of annual and seasonal rainfall in Calabria southern Italy. International Journal of Climatology. Vol. 31. Iss. 1 p. 44–56.
  • CANTAT O. 2004. Analyse critique sur les tendances pluviométriques au 20ème siècle en Basse-Normandie: Réflexions sur la fiabilité des donnéeset le changement climatique [Critical analysis of rainfalls trends during the 20th century in Low-Normandy. Considerations about reliability of data and climate change]. Climatologie. Vol. 1 p. 11–32.
  • CHAOUCHE K., NEPPEL L., DIEULIN C., PUJOL N., LADOUCHE B., MARTIN E., SALAS D., CABALLEROY. 2010. Analyses of precipitation, temperature and evapotranspiration in a French Mediterranean region in the context of climate change. Comptes Rendus Geoscience. Vol. 342. Iss. 3 p. 234–243.
  • DA SILVA R.M., SANTOS C.A., MOREIRA M., CORTE-REAL J., SILVA V.C., MEDEIROS I.C. 2015. Rainfall and river flow trends using Mann–Kendall and Sen’s slope estimator statistical tests in the Cobres River basin. Natural Hazards. Vol. 77. Iss. 2 p. 1205–1221.
  • DJELLOULI Y. 1990. Flores et climat sen Algérie septentrionale. Déterminismes climatiques de la répartition des plantes [Flores and climates in northern Algeria. Climatic determinants of plant distribution]. PhD Thesis. Alger, Algerie. USTHB pp. 210.
  • DJOUFACK V. 2011. Étude multi-échelles des précipitations et du couvert végétal au Cameroun : Analysesspatiales, tendanc estemporelles, facteurs climatiques et anthropiques de variabilité du NDVI [Multi-scale rainfall and vegetation cover study in Cameroon: spatial analyzes, temporal trends, climatic and anthropogenic factors of NDVI variability]. PhD Thesis. Université de Bourgogne, France pp. 303.
  • DUHAN D., PANDEY A. 2013. Statistical analysis of long term spatial and temporal trends of precipitation during 1901–2002 at Madhya Pradesh, India. Atmospheric Research. Vol. 122 p. 136–149.
  • FRATIANNI S., ACQUAOTTA F. 2010. Les tendances et les indices de changement climatique des sérieshistoriques dans le nordouest de l’Italie [Trends and indices of climate change in historical series in northwestern Italy]. 23ième Colloque de l’Association Internationale de Climatologie. Rennes, France p. 233–238.
  • GHENIM A.N., MEGNOUNIF A. 2016. Variability and trend of annual maximum daily rainfall in northern Algeria. International Journal of Geophysics. ID 6820397 pp. 11.
  • GIORGI F., LIONELLO P. 2008. Climate change projections for the Mediterranean Region. Global and Planetary Change. Vol. 632. Iss. 3 p. 90–104.
  • GONZALEZ-HIDALGO J.C., LOPEZ-BUSTINS J.A., STEPÀNEK P., MARTIN-VIDE J., DE LUISA M. 2009. Monthly precipitation trends on the Mediterranean fringe of the Iberian Peninsula during the Second-half of the Twentieth Century 1951–2000. International Journal of Climatology. Vol. 29 p. 1415–1429.
  • HENIA L., BENZARTI Z. 2006. Changements climatiques et ressources en eau de la Tunisie [Climate change and water resources of Tunisia]. Actes du XIXe colloque de l’Association Internationale de Climatologie: Les risques liés au temps et au climat p. 15–20.
  • IPCC 2001. Summary for policymakers: A Report of Working Group I of the Intergovernmental Panel on Climate Change. Eds. S. Solomon, D. Qin, M. Manning, Z. Chen, M. Marquis, K.B. Averyt, M. Tignor, H.L. Miller. Cambridge University Press pp. 18.
  • JAVARI M. 2016. Trend and homogeneity analysis of precipitation in Iran. Climate. Vol. 4, 44 p. 1–23.
  • KENDALL M.G. 1975. Rank correlation measures. London. Charles Griffin. 4th ed. London, U.K. Charles Griffin. ISBN 0852641990 pp. 202.
  • KENDALL S.M., STUART A. 1943. The advanced theory of statistics. London. Charles Griffin pp. 457.
  • LIONNELLO P., MALANOTTE-RIZZOLI P., BOSCOLO R. 2006. Mediterranean climate variability. Earth and Environmental Sciences. Vol. 4. Amsterdam. Elsevier. ISBN 978-0444521705 pp. 438.
  • LONGOBARDI A., VILLANI P. 2010. Trend analysis of annual and seasonal rainfall time series in the Mediterranean Area. International Journal of Climatology. Vol. 30 p. 1538–1546. DOI 10.1002/joc.2001.
  • LÓPEZ-MORENO J.I., VICENTE-SERRANO S.M., ANGULO-MARTÍNEZ M., BEGUERÍA S., KENAWY A. 2010. Trends in daily precipitation on the northeastern Iberian Peninsula, 1955–2006. International Journal of Climatology. Vol. 30(7) p. 1026–1041.
  • MANN H.B. 1945. Nonparametric tests against trend. Econometrica. Vol. 13. No. 3 p. 245–259.
  • MEBARKI A. 2003. Cartographie automatique des précipitations: Application à l’Est algérien [Automatic precipitation mapping: Application to eastern Algeria]. Sciences and Technologie. No. 20 p. 100–107.
  • MEDDI H., MEDDI M. 2007. Variabilité spatiale et temporelle des précipitations du Nord-Ouest de l'Algérie [Spatial and temporal variability of precipitation in northwestern Algeria]. Géographia Technica. No. 2 p. 49–55.
  • MEDDI H., MEDDI M. 2009. Variabilité des précipitations annuelles du Nord-Ouest de l’Algérie. Sécheresse. Vol. 20. No. 1 p. 57–65.
  • MERZOUGUI A., SLIMANI M. 2012. Régionalisation des lois de distribution des pluiesmensuellesen Tunisie [Regionalization of statistical distributions fitted to monthly rainfall in Tunisia]. Hydrological Sciences Journal. Vol. 57(4) p. 668–685.
  • MODARRES R., DA SILVA V.D.P.R. 2007. Rainfall trends in arid and semi-arid regions of Iran. Journal of Arid Environments. Vol. 70. Iss. 2 p. 344–355.
  • MODARRES R., SARHADI A. 2009. Rainfall trends analysis of Iran in the last half of the twentieth century. Journal of Geophysical Research: Atmospheres. Vol. 114. D3101 p. 1–9. DOI 10.1029/2008JD010707.
  • MOSMANN V., CASTRO A., FRAILE R., DESSENS J., SANCHEZ J. L. 2004. Detection of statistically significant trends in the summer precipitation of mainland Spain. Atmospheric Research. Vol. 70(1) p. 43–53.
  • MOURATO S., MOREIRA M., CORTE-REAL J. 2010. Interannual variability of precipitation distribution patterns in southern Portugal. International Journal of Climatology. Vol. 30 p. 1784–1794. DOI 10.1002/joc.2021.
  • MRAD D., DJEBBAR Y., HAMMAR Y. 2018. Analysis of trend rainfall: Case of north-eastern Algeria. Journal of Water and Land Development. No. 36 p. 105–115. DOI 10.2478/jwld-2018-0011.
  • NACEF L., BACHARI N.E.I. 2012. Influence des flux de chaleur latente et sensible à l'interface air-meren Méditerranée sur la pluviométrie et la température dans le nord de l'Algérie [Influence of latent heat flux and sensitive to air-interface meren Mediterranean on rainfall and temperature in northern Algeria]. Atmosphere-Ocean. Vol. 50. Iss. 3 p. 334–351. DOI 10.1080/07055900.2012.668851.
  • NASRI M., MODARRES R. 2009. Dry spell trend analysis of Isfahan Province, Iran. International Journal of Climatology. Vol. 29 p. 1430–1438.
  • NEL W. 2009. Rainfall trends in the KwaZulu-Natal Drakensberg Region of South Africa during the Twentieth Century. International Journal of Climatology. Vol. 29 p. 1634–1641.
  • NORRANT C., DOUGUEDROIT A. 2004. Tendances des précipitations mensuelles et quotidiennes dans le sud-est méditerranéen français (1950-51/1999-2000) [Monthly and daily rainfall trends in the French Mediterranean South-East (1950-51/1999-2000)]. Climatologie. Vol. 1 p. 45–64.
  • NOUACEUR Z., MURĂRESCU O. 2016. Rainfall variability and trend analysis of annual rainfall in North Africa. International Journal of Atmospheric Sciences. ID 7230450 pp. 12. DOI 10.1155/2016/7230450.
  • PARTAL T., KAHYA E. 2006. Trend analysis in Turkish precipitation data. 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 Earth System Sciences. Vol. 11 p. 3235–3250.
  • PIERVITALI E., COLACINO M., CONTE M. 1997. Signals of climatic change in the central-western Mediterranean basin. Theoretical and Applied Climatology. Vol. 58. Iss. 3–4 p. 211–219.
  • RUIZ SINOGA J.D., GARCIA MARIN R., MARTINEZ MURILLO J.F., GABARRON GALEOTE M.A. 2011. Precipitation dynamics in southern Spain: Trends and cycles. International Journal of Climatology. Vol. 31 p. 2281–2289.
  • SAYEMUZZAMAN M., JHA M.K. 2014. Seasonal and annual precipitation time series trend analysis in North Carolina, United States. Atmospheric Research. Vol. 137 p. 183–194.
  • SLIMANI M., CUDENNEC C., FEKI H. 2007. Structure du gradient pluviométrique de la transition Méditerranée–Sahara en Tunisie: déterminants géographique setsaisonnalité [Structure of the rainfall gradient in the Mediterranean–Sahara transition in Tunisia: geographical determinants and seasonality]. Hydrological Sciences Journal. Vol. 52. Iss. 6 p. 1088–1102.
  • TABARI H., TALAEE P.H. 2011. Temporal variability of precipitation over Iran: 1966–2005. Journal of Hydrology. Vol. 396. Iss. 3–4 p. 313–320.
  • TABARI H., SOMEE B.S., ZADEH M.R. 2011. Testing for long-term trends in climatic variables in Iran. Atmospheric Research. Vol. 100. Iss. 1 p. 132–140.
  • TAIBI S., MEDDI M., MAHÉ G., ASSANI A. 2015. Relationships between atmospheric circulation indices and rainfall in Northern Algeria and comparison of observed and RCMgenerated rainfall. Theoretical and Applied Climatology. Vol. 127. Iss. 1–2 p. 241–257.
  • TALIA A., MEDDI M., BEKKOUSSA B.S., 2011. Etude de la variabilité de la pluviométrie dans les hauts plateaux et le Sahara algériens [Annual rainfall evolution in some arid Algerian stations]. Sécheresse. Vol. 22 p. 149–158.
  • TOUAZI M., LABORDE J.P., BHIRY N. 2004. Modelling rainfalldischarge at a mean inter-yearly scale in northern Algeria. Journal of Hydrology. Vol. 296. Iss. 1–4 p. 179–191.
  • TRABOULSI M. 2010. Les précipitations dans les Margesarides de la Syrie du Nord [Precipitation in the Margesarides of Northern Syria]. Travaux de la Maison de l'Orientet de la Méditerranée. Vol. 55. Iss. 1 p. 73–95.
  • TRAMBLAY Y., EL ADLOUN, S., SERVAT E. 2013. Trends and variability in extreme precipitation indices over Maghreb countries. Natural Hazards and Earth System Sciences. Vol. 13 p. 3235–3248. DOI 10.5194/nhess-13-3235-2013.
  • TÜRKEŞ M., KOÇ T., SARIŞ F. 2008. Spatiotemporal variability of precipitation total series over Turkey. International Journal of Climatology. Vol. 29 p. 1056–1074. DOI 10.1002/joc.1768.
  • WMO 1966. Climatic Change. Working group of the Commission for Climatology. Geneva. World Meteorological Organization. Technical Note. No. 79. WMO No. 195. TP. 100 pp. 79.
  • YENIGÜN K., GÜMÜŞ V., BULUT H. 2008. August. Trends in streamflow of the Euphrates basin, Turkey. In: Proceedings of the Institution of Civil Engineers-Water Management. Vol. 161. No. 4 p. 189–198.
  • ZHAO W., YU X., MA H., ZHU Q., ZHANG Y., QIN W., WANG Y. 2015. Analysis of precipitation characteristics during 1957–2012 in the semi-arid loess plateau, China. PloSOne. Vol. 10(11) p. 1–13 DOI 10.1371/journal.pone.0141662.
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e98dba00-7651-4c1e-9149-a51fe483ff7b
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