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Regional Climate Effects of Internally and Externally Mixed Aerosols over China 被引量:3

Regional Climate Effects of Internally and Externally Mixed Aerosols over China
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摘要 A regional climate model is employed to simulate the aerosols (dust, sulfate, black carbon, and organic carbon) and their direct effect on the climate over China. The emphasis is on the direct radiative forcing due to the change in mixing state of aerosols. The results show that direct radiative forcing is significantly different between externally and internally mixed aerosols. At the top of the atmosphere (TOA), the radiative forcing of externally mixed aerosols is larger than that of internally mixed ones, especially in the Tarim desert region where the difference is about 0.7 W m-2. At the surface, however, the situation becomes opposite, especially in the Sichuan basin where the difference is about 1.4 W m-2. Nonetheless, either externally or internally mixed aerosols in China can result in a significant cooling effect, except for the warming in South China in winter and the slight warming in North China in February. The cooling effect induced by externally mixed aerosols is weaker than that induced by internally mixed aerosols, and this is more obvious in spring and winter than in summer and autumn. In spring and summer, the inhibiting effect of externally mixed aerosols on precipitation is less than that of internally mixed aerosols, whereas in autumn and winter the difference is not obvious. A regional climate model is employed to simulate the aerosols (dust, sulfate, black carbon, and organic carbon) and their direct effect on the climate over China. The emphasis is on the direct radiative forcing due to the change in mixing state of aerosols. The results show that direct radiative forcing is significantly different between externally and internally mixed aerosols. At the top of the atmosphere (TOA), the radiative forcing of externally mixed aerosols is larger than that of internally mixed ones, especially in the Tarim desert region where the difference is about 0.7 W m-2. At the surface, however, the situation becomes opposite, especially in the Sichuan basin where the difference is about 1.4 W m-2. Nonetheless, either externally or internally mixed aerosols in China can result in a significant cooling effect, except for the warming in South China in winter and the slight warming in North China in February. The cooling effect induced by externally mixed aerosols is weaker than that induced by internally mixed aerosols, and this is more obvious in spring and winter than in summer and autumn. In spring and summer, the inhibiting effect of externally mixed aerosols on precipitation is less than that of internally mixed aerosols, whereas in autumn and winter the difference is not obvious.
出处 《Acta meteorologica Sinica》 SCIE 2013年第1期110-118,共9页
基金 Supported by the National Basic Research and Development(973)Program of China (2011CB403405) National Science and Technology Support Program of China(2008BAC40B02)
关键词 radiative forcing internally mixed aerosols externally mixed aerosols climate effect radiative forcing, internally mixed aerosols, externally mixed aerosols, climate effect
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  • 1[2]Buseck P B.Airborne minerals and related aerosol particles:effects on climate and the environment[J].PNAS,1999,97(6):3372-3379.
  • 2[6]Middlebrook A A.Observations of organic material in individual marine particles at Cape Grim during the first aerosol characterization experiment(ACE)[J].J.G.R.,1998,103(D13):16475-16483.
  • 3[7]Randles C A,Russell L M,Ramaswamy V.Hygroscopic and optical properties of organic sea salt aerosol and consequences for climate forcing[J].G.R.L.,2004,31:L16108.
  • 4[8]Glen Lesins.A study of internal and external mixing scenarios and its effect on aerosol optical properties and direct radiative forcing[J].J.G.R.,2002,107(D10).
  • 5[9]Ackerman T P,Toon O B.Absorption of visible radiation in atmosphere containing mixtures of absorbing and nonabsorbing particles[J].Appl.Opt.,1981,20(20):3663-3668.
  • 6[10]Mallet M,Roger J C.A study of the mixing state of black carbon in urban zone[J].J.G.R.,2004,109:D04202.
  • 7[11]Levoni Chiara,Cervino Marco.Atmospheric aerosol optical properties:a database of radiative characteristics for different components and classes[J].Appl.Opt.,1997,36(30):8031-8041.
  • 8[13]Toon O B,Ackerman T P.Algorithms for the calculation of scattering by stratified spheres[J].Appl.Opt.,1981,20(20):3657-3660.
  • 9[14]Li Kai,Massoli P.Scattering of electromagneticplane waves by radially inhomogeneous spheres:a finely stratified sphere model[J].Appl.Opt.,1994,33(3):501-511.
  • 10[15]Yang Wen.Improved recursive algorithm for light scattering by a multilayered sphere[J].Appl.Opt.,2003,42(9):1710-1720.

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