Projected sea surface temperature changes in the equatorial Pacific relative to the Warm Pool edge

被引:30
作者
Brown, Jaclyn N. [1 ]
Langlais, Clothilde [1 ]
Sen Gupta, Alex [2 ,3 ]
机构
[1] CSIRO, Ctr Australian Weather & Climate Res, Hobart, Tas 7000, Australia
[2] Univ New S Wales, Climate Change Res Ctr, Sydney, NSW, Australia
[3] Univ New S Wales, ARC Ctr Excellence Climate Syst Sci, Sydney, NSW, Australia
关键词
Climatic changes; Models; Surface temperature; Equator; El Nino phenomena; Tropical oceanography; Cold tongue bias; NINO-SOUTHERN-OSCILLATION; EASTERN EDGE; CLIMATE PROJECTIONS; OCEAN; ZONE; UNCERTAINTIES; CONVERGENCE; THERMOCLINE; BIASES; MODEL;
D O I
10.1016/j.dsr2.2014.10.022
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Projections of equatorial sea surface temperature from CMIP5 climate models are important for understanding possible future changes in marine habitats, local rainfall and climate processes such as El Nino Southern Oscillation. Interpreting the projected changes in the tropical Pacific is complicated by the systematic cold tongue bias and overly westward location of the Warm Pool edge at the equator in coupled models. Here an index based on the maximum zonal salinity gradient is used to differentiate the Warm Pool from the cold tongue in each of 19 CMIP5 models. Warming is then calculated relative to the dynamic edge of the Warm Pool between the second halves of the 20th and 21st Centuries from the RCP8.5 scenario to provide a bias adjusted SST projection. Based on this definition of the edge, while the Warm Pool edge is projected to warm, it is likely to remain within 100 of its present longitude. This is in stark contrast to the large projected eastward displacements of the isotherms that are usually used to define the edge. Adjusting for the edge, warming within the Warm Pool is projected to be fairly uniform with surface water freshening. Projected warming is enhanced over the cold tongue with the net effect of reducing the zonal SST gradient. In contrast, if the warming is calculated without correcting for the edge of the Warm Pool, the warming signature is dominated by the poorer performing models with an overly westward Warm Pool, resulting in enhanced warming across the equatorial Pacific. Bias adjusting realigns the warming signature and reduces the model spread of projected warming. The biased warming signature also introduces spurious meridional and zonal SST gradients. This will potentially alter the behaviour of the atmospheric convergence zones and the dynamics of ENSO which is influenced by the extent of the Warm Pool and zonal SST gradients. Crown Copyright (C) 2014 Published by Elsevier Ltd.
引用
收藏
页码:47 / 58
页数:12
相关论文
共 39 条
[31]   Global 60 km simulations with CCAM: evaluation over the tropics [J].
Nguyen, Kim C. ;
Katzfey, Jack J. ;
McGregor, John L. .
CLIMATE DYNAMICS, 2012, 39 (3-4) :637-654
[32]   Mechanism of the zonal displacements of the Pacific warm pool: Implications for ENSO [J].
Picaut, J ;
Ioualalen, M ;
Menkes, C ;
Delcroix, T ;
McPhaden, MJ .
SCIENCE, 1996, 274 (5292) :1486-1489
[33]   The oceanic zone of convergence on the eastern edge of the Pacific warm pool: A synthesis of results and implications for El Nino-Southern Oscillation and biogeochemical phenomena [J].
Picaut, J ;
Ioualalen, M ;
Delcroix, T ;
Masia, F ;
Murtugudde, R ;
Vialard, J .
JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 2001, 106 (C2) :2363-2386
[34]   A very oligotrophic zone observed from space in the equatorial Pacific warm pool [J].
Radenac, Marie-Helene ;
Messie, Monique ;
Leger, Fabien ;
Bosc, Christelle .
REMOTE SENSING OF ENVIRONMENT, 2013, 134 :224-233
[35]   Global analyses of sea surface temperature, sea ice, and night marine air temperature since the late nineteenth century [J].
Rayner, NA ;
Parker, DE ;
Horton, EB ;
Folland, CK ;
Alexander, LV ;
Rowell, DP ;
Kent, EC ;
Kaplan, A .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2003, 108 (D14)
[36]   Episodic and non-uniform shifts of thermal habitats in a warming ocean [J].
Sen Gupta, A. ;
Brown, J. N. ;
Jourdain, N. C. ;
van Sebille, E. ;
Ganachaud, A. ;
Verges, A. .
DEEP-SEA RESEARCH PART II-TOPICAL STUDIES IN OCEANOGRAPHY, 2015, 113 :59-72
[37]   AN OVERVIEW OF CMIP5 AND THE EXPERIMENT DESIGN [J].
Taylor, Karl E. ;
Stouffer, Ronald J. ;
Meehl, Gerald A. .
BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY, 2012, 93 (04) :485-498
[38]  
Vecchi G.A., 2008, EOS T AM GEOPHYS UN, V89, P81, DOI [10.1029/2008EO090002, DOI 10.1029/2008EO090002]
[39]   Global Warming Pattern Formation: Sea Surface Temperature and Rainfall [J].
Xie, Shang-Ping ;
Deser, Clara ;
Vecchi, Gabriel A. ;
Ma, Jian ;
Teng, Haiyan ;
Wittenberg, Andrew T. .
JOURNAL OF CLIMATE, 2010, 23 (04) :966-986