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- W2352997816 abstract "Based on the theory of Perturbation Potential Energy(PPE),at the issue of energy transform at any isobaric surface in local circulation,the concept of Layer perturbation potential energy(denoted as the LPPE) is presented.The first-order moment term of LPPE(denoted as LPPE1) is positive over the tropics and negative over high-latitude regions in the low and middle troposphere.It is positive over high-latitude of North American at 200hPa,but is positive over the high-latitude and negative over the tropics at 100 hPa and higher isobaric surface.The distributions of the LPPE1 in the winter hemisphere is quite similar to that of the annual mean,and the LPPE1 is featured by maxima over the Continent in the summer hemisphere.Locally,as the LPPE1 is superior to the second-order(denoted as LPPE2) and high-order ones in order of magnitude,the distributions of the LPPE are quite similar to the LPPE1.The analyses show that there is a significant negative correlation between the LPPE and kinetic energy at 850hPa over the South China Sea Summer Monsoon(denoted as SCSSM) region.There is a significant positive correlation between the SCSSM index(denoted as SCSSMI) and the out-of-phase pattern of LPPE1 in the prior spring which is a substantial relation,the later could be taken as an indicator of the SCSSM variation.The spring sea surface temperature anomalies(denoted as SSTA) over Indian Ocean are closely related to the out-of-phase relationship between anomalies in the tropical oceans and those in the extra-tropical Asian Continent of LPPE1 in spring and JJAS.The out-of-phase relationship of LPPE1 and coherent distribution of Kinetic Energy over SCSSM region are the dominant pattern of their coupled modes,westerly wind increases over the SCSSM region while Kinetic Energy increases,further influences the SCSSM." @default.
- W2352997816 created "2016-06-24" @default.
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- W2352997816 date "2013-01-01" @default.
- W2352997816 modified "2023-09-23" @default.
- W2352997816 title "Theory on layer perturbation potential energy and its application:a case study on annual variation of the South China Sea summer monsoon" @default.
- W2352997816 hasPublicationYear "2013" @default.
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