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Circulation system complex networks and teleconnections 被引量:4

Circulation system complex networks and teleconnections
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摘要 In terms of the characteristic topology parameters of climate complex networks, the spatial connection structural complexity of the circulation system and the influence of four teleconnection patterns are quantitatively described. Results of node degrees for the Northern Hemisphere (NH) mid-high latitude (30° N-90°N) circulation system (NHS) networks with and without the Arctic Oscillations (AO), the North Atlantic Oscillations (NAO) and the Pacific-North American pattern (PNA) demonstrate that the teleconnections greatly shorten the mean shortest path length of the networks, thus being advantageous to the rapid transfer of local fluctuation information over the network and to the stability of the NHS. The impact of the AO on the NHS connection structure is most important and the impact of the NAO is the next important. The PNA is a relatively independent teleconnection, and its role in the NHS is mainly manifested in the connection between the NHS and the tropical circulation system (TRS). As to the Southern Hemisphere mid-high latitude (30°S-90°S) circulation system (SHS), the impact of the Antarctic Arctic Oscillations (AAO) on the structural stability of the system is most important. In addition, there might be a stable correlation dipole (AACD) in the SHS, which also has important influence on the structure of the SHS networks. In terms of the characteristic topology parameters of climate complex networks, the spatial connection structural complexity of the circulation system and the influence of four teleconnection patterns are quantitatively described. Results of node degrees for the Northern Hemisphere (NH) mid-high latitude (30° N-90°N) circulation system (NHS) networks with and without the Arctic Oscillations (AO), the North Atlantic Oscillations (NAO) and the Pacific-North American pattern (PNA) demonstrate that the teleconnections greatly shorten the mean shortest path length of the networks, thus being advantageous to the rapid transfer of local fluctuation information over the network and to the stability of the NHS. The impact of the AO on the NHS connection structure is most important and the impact of the NAO is the next important. The PNA is a relatively independent teleconnection, and its role in the NHS is mainly manifested in the connection between the NHS and the tropical circulation system (TRS). As to the Southern Hemisphere mid-high latitude (30°S-90°S) circulation system (SHS), the impact of the Antarctic Arctic Oscillations (AAO) on the structural stability of the system is most important. In addition, there might be a stable correlation dipole (AACD) in the SHS, which also has important influence on the structure of the SHS networks.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第7期495-503,共9页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant Nos.40930952 and 40705031) the Special Scientific Research Project for Public Interest,China (Grant Nos.GYHY201006021 and GYHY201106016) the National Key Technology Research and Development Program of the Ministry of Science and Technology of China (Grant No.2007BAC29B01)
关键词 complex network structural feature circulation system node degree complex network, structural feature, circulation system, node degree
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  • 1Tsonis A A, Swanson K L and Roebber P J 2006 Bull. Amer. Meteor. Soc. 87 585.
  • 2Tsonis A A and Swanson K L 2008 Phys. Rev. Left. 100 228502.
  • 3Tsonis A A and Kyle L S 2008 J. Climate 21 2990.
  • 4Shi Y N 1984 Journal of Nanjing University 20 796 (in Chinese).
  • 5Yang P C and Zhou X J 2005 Acta Meteor. Sin. 63 556 (in Chinese).
  • 6Feng G L, Dong W J, Gong Z Q and Hou W 2006 Nonlin- ear Spatotemporal Distribution Theory and Methods for Observational Data (Beijing: China Meteorological Press) p. 227 (in Chinese).
  • 7Li J P and Chou J F 1996 Acta Meteor. Sin. 54 312 (in Chinese).
  • 8Li J P and Chou J F 1997 Sci. China Set. B 27 89 (in Chinese).
  • 9Watts D J and Strogatz S H 1998 Nature 393 440.
  • 10Barabasi A L and Albert R 1999 Science 286 509.

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