Aerosol and Solar Irradiance Effects on Decadal Climate Variability and Predictability

被引:20
|
作者
Zanchettin, Davide [1 ]
机构
[1] Univ CaFoscari Venice, Dept Environm Sci Informat & Stat, Via Torino 155, I-30172 Venice, VE, Italy
来源
CURRENT CLIMATE CHANGE REPORTS | 2017年 / 3卷 / 02期
关键词
Decadal climate variability; Volcanic forcing; Solar cycle; Tropospheric aerosol; Volcanic aerosol; Climate modes; Forced decadal variability; Climate reconstructions; Coupled climate models; MODEL INTERCOMPARISON PROJECT; VOLCANIC-ERUPTIONS; STRATOSPHERIC OZONE; SST VARIABILITY; EL-NINO; ANTHROPOGENIC AEROSOL; SOUTHERN-OSCILLATION; NORTHERN-HEMISPHERE; EXPERIMENTAL-DESIGN; WINTER TEMPERATURE;
D O I
10.1007/s40641-017-0065-y
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
The expanding interest in decadal climate variability, predictability, and prediction highlights the importance of understanding the sources and mechanisms of decadal and interdecadal climate fluctuations. The purpose of this paper is to provide a critical review of our current understanding of externally forced decadal climate variability. In particular, proposed mechanisms determining decadal climate responses to variations in solar activity, stratospheric volcanic aerosols, and natural as well as anthropogenic tropospheric aerosols are discussed, both separately and in a unified framework. The review suggests that the excitation of internal modes of interdecadal climate variability, particularly centered in the Pacific and North Atlantic sectors, remains a paradigm to characterize externally forced decadal climate variability and to interpret the associated dynamics. Significant recent advancements are the improved understanding of the critical dependency of volcanically forced decadal climate variability on the relative phase of ongoing internal variability and on additional external perturbations, and the recognition that associated uncertainty may represent a serious obstacle to identifying the climatic consequences even of very strong eruptions. Particularly relevant is also the recent development of hypotheses about potential mechanisms (reemergence and synchronization) underlying solar forced decadal climate variability. Finally, outstanding issues and, hence, major opportunities for progress regarding externally forced decadal climate variability are discussed. Uncertain characterization of forcing and climate histories, imperfect implementation of complex forcings in climate models, limited understanding of the internal component of interdecadal climate variability, and poor quality of its simulation are some of the enduring critical obstacles on which to progress. It is suggested that much further understanding can be gained through identification and investigation of relevant periods of forced decadal climate variability during the preindustrial past millennium. Another upcoming opportunity for progress is the analysis of focused experiments with coupled ocean-atmosphere general circulation models within the umbrella of the next phase of the coupled model intercomparison project.
引用
收藏
页码:150 / 162
页数:13
相关论文
共 50 条
  • [1] Aerosol and Solar Irradiance Effects on Decadal Climate Variability and Predictability
    Davide Zanchettin
    [J]. Current Climate Change Reports, 2017, 3 : 150 - 162
  • [2] Decadal climate variability and predictability
    Azharuddin, Syed
    Dogar, Muhammad Mubashar
    [J]. CURRENT SCIENCE, 2016, 110 (08): : 1397 - 1398
  • [3] A perspective on decadal climate variability and predictability
    Latif, Mojib
    Keenlyside, Noel S.
    [J]. DEEP-SEA RESEARCH PART II-TOPICAL STUDIES IN OCEANOGRAPHY, 2011, 58 (17-18) : 1880 - 1894
  • [4] Decadal Climate Variability and Predictability: Challenges and Opportunities
    Cassou, Christophe
    Kushnir, Yochanan
    Hawkins, Ed
    Pirani, Anna
    Kucharski, Fred
    Kang, In-Sik
    Caltabiano, Nico
    [J]. BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY, 2018, 99 (03) : 479 - 490
  • [5] Solar Irradiance Variability and Climate
    Solanki, Sami K.
    Krivova, Natalie A.
    Haigh, Joanna D.
    [J]. ANNUAL REVIEW OF ASTRONOMY AND ASTROPHYSICS, VOL 51, 2013, 51 : 311 - 351
  • [6] Solar irradiance variability and climate
    Fröhlich, C
    Lean, J
    [J]. ASTRONOMISCHE NACHRICHTEN, 2002, 323 (3-4) : 203 - 212
  • [7] South Pacific Decadal Climate Variability and Potential Predictability
    Lou, Jiale
    Holbrook, Neil J.
    O'Kane, Terence J.
    [J]. JOURNAL OF CLIMATE, 2019, 32 (18) : 6051 - 6069
  • [8] Decadal climate variability and potential predictability in the Nordic region: a review
    Seitola, Teija
    Jarvinen, Heikki
    [J]. BOREAL ENVIRONMENT RESEARCH, 2014, 19 (5-6): : 387 - 407
  • [9] On predictability of solar irradiance
    Yang, Xiaoyi
    Yang, Dazhi
    Bright, Jamie M.
    Yagli, Gokhan Mert
    Wang, Peng
    [J]. JOURNAL OF RENEWABLE AND SUSTAINABLE ENERGY, 2021, 13 (05)
  • [10] Decadal climate variability in the tropical Pacific: Characteristics, causes, predictability, and prospects
    Power, Scott
    Lengaigne, Matthieu
    Capotondi, Antonietta
    Khodri, Myriam
    Vialard, Jerome
    Jebri, Beyrem
    Guilyardi, Eric
    McGregor, Shayne
    Kug, Jong-Seong
    Newman, Matthew
    McPhaden, Michael J.
    Meehl, Gerald
    Smith, Doug
    Cole, Julia
    Emile-Geay, Julien
    Vimont, Daniel
    Wittenberg, Andrew T.
    Collins, Mat
    Kim, Geon-Il
    Cai, Wenju
    Okumura, Yuko
    Chung, Christine
    Cobb, Kim M.
    Delage, Francois
    Planton, Yann Y.
    Levine, Aaron
    Zhu, Feng
    Sprintall, Janet
    Di Lorenzo, Emanuele
    Zhang, Xuebin
    Luo, Jing-Jia
    Lin, Xiaopei
    Balmaseda, Magdalena
    Wang, Guojian
    Henley, Benjamin J.
    [J]. SCIENCE, 2021, 374 (6563) : 48 - +