Page 54 - EER-2-1
P. 54

Explora: Environment
            and Resource                                                         Statistical analysis of climate time series



            32.  Li G, Cheng L, Zhu J, Trenberth KE, Mann ME, Abraham JP.   40.  Abarca Del Rio A, Gambis D, Salstein D, Dewitte B. El Niño
               Increasing ocean stratification over the past half-century.   et la rotation de la terre. Pour Sci. 2001;281:78-82.
               Nat Clim Chang. 2020;10:1116-1123.
                                                               41.  Clarke AJ. An Introduction to the Dynamics of El Niño and
               doi: 10.1038/s41558-020-00918-2                    the Southern Oscillation. United States: Academic Press;
            33.  Sallée JB, Pellichero V, Akhoudas C,  et al. Summertime   2008. p. 308.
               increases in upper-ocean stratification and mixed-layer   42.  Sarachik ES, Cane MA.  The El  Niño-Southern  Oscillation
               depth. Nature. 2021;591:592-598.                   Phenomenon. Cambridge: Cambridge University Press;
               doi: 10.1038/s41586-021-03303-x                    2010. p. 369.
            34.  Intergovernmental Panel on Climate Change. Sea level   43.  Cromwell T, Montgomery RB, Stroup ED. Equatorial
               rise  and  implications  for  low-lying  Islands,  coasts  and   undercurrent in Pacific Ocean revealed by new methods.
               communities.  In:  Special Report on the Ocean and   Science. 1954;119(3097):648-649.
               Cryosphere in a Changing Climate. Ch. 4., Table. 4.1. Geneva,      doi: 10.1126/science.119.3097.648
               Switzerland: Intergovernmental Panel on Climate Change;
               2019. p. 336.                                   44.  Strang EJ, Fernando HJS. Vertical mixing and transports
                                                                  through a stratified shear layer.  J  Phys  Oceanogr.
            35.  Lacombe H. Généralités sur les Thermoclines, Leur Genèse   2001;31:2026-2048.
               et Leur Prévision. Exposé Introductif. La Houille Blanche/N
               7/8-1974; 1974.                                    doi: 10.1175/1520-0485(2001)031<2026:VMATTA>2.0.CO;2
            36.  Haine TWN, Curry B, Gerdes R,  et al. Arctic freshwater   45.  Gordon AL, Huber B, McKee D, Visbeck M. A  seasonal
               export: Status, mechanisms, and prospects.  Glob Planet   cycle in the export of bottom water from the Weddell Sea.
               Change. 2015;125:13-35.                            Nat Geosci. 2010;3:551-556.
               doi: 10.1016/j.gloplacha.2014.11.013               doi: 10.1038/ngeo916
            37.  Schneider T, Bischoff T, Haug GH. Migrations and   46.  Box G, Jenkins G.  Time Series Analysis: Forecasting and
               dynamics of the intertropical convergence zone.  Nature.   Control. Deerfield, IL: Holden-Day; 1970.
               2014;513(7516):45-53.                           47.  Bresson G, Pirotte A.  Économétrie des Séries Temporelles:
               doi: 10.1038/nature13636                           Théorie et Applications. Paris: Presses Universitaires de
                                                                  France; 1995.
            38.  Trenberth K, National Center for Atmospheric Research Staff,
               editors. The Climate Data Guide: Nino SST Indices (Nino 1+2,   48.  Vandenhouten R.  Non-stationary Time Series Analysis of
               3, 3.4, 4; ONI and TNI). Climate Data Guide; 2023.  Complex Systems and Applications in Physiology. Aachen:
                                                                  Shaker Verlag GmbH; 1998.
            39.  Météo Contact “Partageons le Temps de Demain. Available from:
               https://www.meteocontact.fr/pour-aller-plus-loin/el-nino-la-  49.  Pirotte A. L’économétrie: Des Origines aux Développements
               nina#google_vignette [Last accessed on 2024 Dec 20].  Récents. Paris: CNRS; 2004. p. 242.































            Volume 2 Issue 1 (2025)                         13                               doi: 10.36922/eer.6109
   49   50   51   52   53   54   55   56   57   58   59