Seasonal Sea Surface Temperature Variability over Tropical Indo-Pacific Region Simulated by FIO-ESM Model Under Global Warming

被引:0
作者
Xinyou Zhang
Lin Liu
Yajuan Song
机构
[1] Ministry of Natural Resources,Center for Ocean and Climate Research, First Institute of Oceanography
[2] Qingdao National Laboratory for Marine Science and Technology,Laboratory for Regional Oceanography and Numerical Modeling
[3] Ministry of Natural Resources,First Institute of Oceanography
[4] Ministry of Natural Resources,Key Laboratory of Marine Science and Numerical Modeling
来源
Pure and Applied Geophysics | 2020年 / 177卷
关键词
SST; climatology; FIO-ESM; tropical Indo-Pacific region; global warming;
D O I
暂无
中图分类号
学科分类号
摘要
The long-term trend and seasonal variability of sea surface temperature (SST) over tropical Indo-Pacific region under the global warming projection simulated by FIO-ESM model are analyzed. At seasonal time scale, significant warming trend over Indo-Pacific area is well captured by FIO-ESM model over the warm pool region under RCP8.5 scenario. The La Niña-like warming pattern is dominant in the tropical Pacific and the negative Indian Ocean Dipole warming pattern takes place in the Indian Ocean in global warming projection separately. The strength of SST warming trend is found to be seasonal dependent over Indo-Pacific region. The spatial distribution of calendar month where fastest/slowest SST warming trend take place in tropical Indo-Pacific has been assessed in FIO-ESM simulation, which is corresponded with the distribution of SST climatology closely in Pacific but not in Indian Ocean.
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页码:4045 / 4056
页数:11
相关论文
共 95 条
  • [1] Allen SK(2007)Climate change 2013: the physical science basis. An overview of the working group 1 contribution to the fifth assessment report of the intergovernmental panel on climate change (IPCC) Computational Geometry 18 95-123
  • [2] Plattner GK(2014)ENSO representation in climate models: from CMIP3 to CMIP5 Climate Dynamics 42 1999-2018
  • [3] Nauels A(2014)Increasing frequency of extreme El Niño events due to greenhouse warming Nature Climate Change 4 111-116
  • [4] Xia Y(1997)Twentieth-Century sea surface temperature trends Science 275 957-960
  • [5] Stocker TF(2012)Extratropical cooling, interhemispheric thermal gradients, and tropical climate change Annual Review of Earth and Planetary Sciences 40 383-412
  • [6] Bellenger H(2006)The formulation and atmospheric simulation of the Community Atmosphere Model version 3 (CAM3) Journal of Climate 19 2144-2161
  • [7] Guilyardi E(2016)The Indo-Pacific Warm Pool: Critical to world oceanography and world climate Geoscience Letters 3 20-2324
  • [8] Leloup J(2006)The community land model and its climate statistics as a component of the community climate system model Journal of Climate 19 2302-3399
  • [9] Cai W(2014)Assessment of the CMIP5 global climate model simulations of the western tropical Pacific climate system and comparison to CMIP3 International Journal of Climatology 34 3382-4723
  • [10] Borlace S(2015)A multimodel ensemble pattern regression method to correct the tropical Pacific SST change patterns under global warming Journal of Climate 28 4706-228