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Based on the regional acid deposition model(RADM),a high resolution model for species exchange in thetroposphere(EM3)is designed.EM3 differs considerably in the following 5 aspects from RADM.First,the vertical gridlevels in the planetary boundary layer(PBL)are increased.Second,layered vertical eddy diffusivity patterns in thetroposphere(TL)are considered.Third,layered horizontal eddy diffusivity patterns within TL is used.Fourth,new drydeposition velocity pattern including the effect of plant canopy layer(CL)vertical structure is adopted.Fifth,advectivescheme of second-order moment conservation with less numerical diffusion is used.OSCAR 4 case is comparativelysimulated with both EM3 and RADM.The results show that 3-D distribution laws of chemical species in whole TL areforecasted by EM3 better than by RADM.Under the same conditions,all ratios of the central concentrations simulatedwith both models in lower PBL are more than 1.8,the maximum can be more than 3.  相似文献   
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It is helpful to go deep into understanding the acid rainfall through studying the relation of two centers between aciddeposition and rainfall and the relation of intensity between them.We adopt a three-dimensional Eulerian regional aciddeposition model,or NCAR-RADM,to calculate regional chemical concentrations and dry and wet depositions ofacids.The temporally and spatially varied meteorological field is provided by a mesoscale meteorological model,vertion4.We calculate dry and wet depositions of acids in eight kinds of different rainfall distributions.The results show thatthe wet depositions of acids near pollutant source is very sensitive to rainfall intensity in initial stage.The distribution ofacid wet deposition will tend to that of rainfall intensity when rainfall intensity is small in source.And it will tend to thatof initial pollutant concentration when rainfall intensity is large in source.  相似文献   
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