Please wait a minute...
img

Wechat

Adv search
JOURNAL OF DESERT RESEARCH  2011, Vol. 31 Issue (3): 639-648    DOI:
国家重点基础研究发展规划     
A Review on Modeling and Monitoring of Dust Dry Deposition
LI Zhuo-qun1, ZHANG Jie1,2, HUANG Ning2, SHAO Ya-ping1, ZHENG Xiao-jing2
1.Institute of Geophysics and Meteorology, University of Cologne, Cologne 50937, Germany; 2.Key Laboratory of the Ministry of Education for Mechanics on Disaster and Environment in Western China, Lanzhou University, Lanzhou 730000, China
Download:  PDF (2644KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  Dust dry deposition is a key component of the dust cycle in the earth system. In this review paper, we first outline the basic characteristics of dust motion in the atmospheric boundary layer and the dust collection processes at the surface. The effect of the physical features of the surface on the efficiency of dust collection is discussed. The dust dry deposition schemes are reviewed, considering dust property, surface character and wind field conditions. A summary of dry deposition schemes, measurements and model-measurement comparisons is then presented. The remaining challenges in dry deposition modeling and monitoring are discussed.
Key words:  dust      dry deposition      scheme     
Received:  01 December 2010      Published:  20 May 2011
ZTFLH:  X513  

Cite this article: 

LI Zhuo-qun;ZHANG Jie;HUANG Ning;SHAO Ya-ping;ZHENG Xiao-jing. A Review on Modeling and Monitoring of Dust Dry Deposition. JOURNAL OF DESERT RESEARCH, 2011, 31(3): 639-648.

URL: 

http://www.desert.ac.cn/EN/     OR     http://www.desert.ac.cn/EN/Y2011/V31/I3/639

[1]Seinfeld J,Pandis S.Atmospheric Chemistry and Physics:From Air Pollution to Climate Change[M]. New York,USA:Wiley-Interscience,2006.
[2]Shao Y.Physics and Modeling of Wind Erosion[M].Norwell,Massachusetts,USA:Kluwer Acdemic Publisher,2001:113-316.
[3]王式功,董光荣.沙尘暴研究的进展[J].中国沙漠,2000,20(4):349-356.
[4]王涛,陈广庭,赵哈林,等.中国北方沙漠化过程及其防治研究的新进展[J].中国沙漠,2006,26(4):507-516.
[5]王炜,宋振鑫,邵亚平,等.沙尘暴天气数值预报系统及其预报效果检验[J].气象科技,2005,25(1):25-31.
[6]李富刚,李仑格,林春英,等.西北地区气溶胶的源和汇与沙尘暴研究综述[J].中国沙漠,2008,28(3):596-591.
[7]Huebert B J,Bates T,Russell P B,et al.An overview of ACE-Asia:Strategies for quantifying the relationships between Asian aerosols and their climatic impacts[J].Journal Geophysical Research,108(23):8633-8642.
[8]Mikami M,Abe O,Du M,et al.The impact of aeolian dust on climate:Sino-Japanese cooperative project ADEC[J].Journal of Arid Land Studies,2002,11:211-222.
[9]Shao Y,Dong C H.A review on East Asian dust storm climate,modelling and monitoring,Global and Planetary Change[J].Monitoring and Modelling of Asian Dust Storms,2006,52(1-4):1-22.
[10]黄宁,辜艳丹.粉尘释放和沉积机制的研究进展[J].地球科学进展,2009,11:1175-1184.
[11]Zhou Y,Guo X,Zheng X J.Experimental measurement of wind-sand flux and sand transport for naturally mixed sands[J].Physical Review E,2002,66,021305.
[12]Zheng X J,Huang N,Zhou Y.The effect of electrostatic force on the evolution of sand saltation cloud[J].The European Physical Journal E,2006,19:129-138.
[13]Nicholson K.The deposition of small particles:A review of experimental methods[J].Atmospheric Environment,1998,22:2653-2666.
[14]刘立超,王涛,周茅先,等.沙坡头地区沙尘气溶胶质量浓度的试验观测研究[J].中国沙漠,2005,25(3):336-341.
[15]延昊,矫梅燕,毕宝贵,等.塔克拉玛干沙漠中心的沙尘气溶胶观测研究[J].中国沙漠,2006,26(3):389-393.
[16]钱广强,董治宝.大气降尘收集方法及相关问题研究[J].中国沙漠,2004,24(6):779-782.
[17]Uno I,Wang Z,Chiba M,et al.Dust model intercomparison (DMIP) study over Asia:Overview[J].Journal Geophysical Research,2006,111,D12213.
[18]Davidson C L,Wu Y L.Dry deposition of particle and vapors[M]//Linberg S E,Page A L,Norton S A.Acidic Precipitation.Volume 3:Sources,Deposition and Canopy Interaction.New York:Springer-Verlag,1990:103-209.
[19]Sievering H.Discussion:the dry deposition of small particles:A review of experimental measurement[J].Atmospheric Environment,1989,23:2863-2864.
[20]Wesley M L,Hicks B.A review of the current status of knowledge on dry deposition[J].Atmospheric Environment,2000,34:2261-2282.
[21]Pryor S C,Gallagher M,Sievering H,et al.A review of measurement and modeling results of partical atmosphere-surface exchange[J].Tellus,2007,60b:42-75.
[22]Petroff A,Mailliat A,Amielh M,et al.Aerosol dry deposition on vegetative canopies.Part Ⅰ:Review of present knowledge[J].Atmospheric Environment,2008,42(16):3625-3653.
[23]Chamberlain A C,Chadwick R C.Deposition of airborne radio-iodine vapor[J].Nucleonics,1953,8:22-25.
[24]Sehmel G A.Particle eddy diffusivities and deposition velocities for isothermal flow and smooth surfaces[J].Journal of Aerosol Science,1973,4:125-138.
[25]Slinn W G N.Some approximations for the wet and dry removal of particles and gases from the atmosphere[J].Water,Air,& Soil Pollution,1977,7:513-543.
[26]Chamberlain A C.Transport of gases to and from grass and glasslike surfaces[J].Proceedings of The Royal Society,1966,A 290:236-265.
[27]Sehmel G A.Particle and gas dry deposition:A review[J].Atmospheric Environment,1980,14:983-1011.
[28]Slinn W G N,Hasse L,Hicks B B,et al.Some aspects of the transfer of atmospheric trace constituents past the air-sea interface[J].Atmospheric Environment,1978,12(11):2055-2087.
[29]Chamberlain A C.Roughness length of sea,sand,and snow[J].Boundary-Layer Meteorology,1983,25:405-409.
[30]Zender C S,Bian H,Newman D.Mineral Dust Entrainment and Deposition (DEAD) model:Aescription and 1990s dust climatology[J].Journal Geophysical Research,2003,108:4416.
[31]Ginoux P,Chin M,Tegen I,et al.Sources and distribution of dust aerosols simulated with the GOCART model[J].Journal Geophysical Research,106:20255-20273.
[32]Wesely M L.Parameterization of surface resistances to gaseous dry deposition in regional-scale numerical models[J].Atmospheric Environment,1989,23(6):1293-1304.
[33]Venkatram A,Pleim J.The electrical analogy does not apply to modeling dry deposition of particles[J].Atmospheric Environment,1999,33:3075-3076.
[34]Friedlander S K,Johnstone H F.Deposition of suspended particles from turbulent gas streams[J].Industrial and Engineering Chemistry,1957,49:1151-1156.
[35]Slinn W G N.Prediction for particle deposition to vegetative canopies[J].Atmospheric Environment,1982,16:1785-1794.
[36]Owen P R.Pneumatic transport[J].The Journal of Fluid Mechanics,1969,39:407-432.
[37]Peters K,Eiden R.Modelling the dry deposition velocity of aerosol particles to a spruce forest[J].Atmospheric Environment,1992,26:2555-2564.
[38]Wiman B,Agren G,Lannefors H.Aerosol concentration profiles within a mature coniferous forest Model versus field results[J].Atmospheric Environment,1985,19:363-367.
[39]Zhang L M,Gong S M,Padro J et al.A size-segregated particle dry deposition scheme for an atmospheric aerosol module[J].Atmospheric Environment,2001,35:549-560.
[40]Petroff A,Mailliat A,Amielh M,et al.Aerosol dry deposition on vegetative canopies.Part Ⅱ:A new modelling approach and applications[J].Atmospheric Environment,2008,42,16:3654-3683.
[41]Giorgi F.A particle dry-deposition parameterization scheme for use in tracer transport models[J].Journal Geophysical Research,1986,91:9794-9806.
[42]Guha A.Transport and Deposition of Particles in Turbulent and Laminar Flow Annual[J].Review of Fluid Mechanics,2008,40:311-341.
[43]Davidson C I,Miller J M,Pleskow M A.The influence of surface structure on predicted particle dry deposition to natural grass canopies[J].Water,Air Soil Pollut,1982,18:25-43.
[44]Fuchs N A.The Mechanics of Aerosols[M].Pergamon Press,Oxford,1964.
[45]Legg B J,Powell F A.Spore dispersal in barley crop:A mathematical model[J].Agricultural Meteorology,1979,20:47-67.
[46]Aylor D E.Modeling spore liberated in a Barley crop[J].Agricultural Meteorology,1982,26:215-219.
[47]Aylor D E,Ferrandino F J.Dispersion of spores released from a elevated line source in a wheat canopy[J].Boundary-Layer Meteorology,1989,46:251-273.
[48]Chamberlain A C.The movement of particles in plant canopies[M]//Monteith J L.Vegetation and the Atmosphere.London:Academic Press,1975:155-228.
[49]Chamberlain A C.Transport of Lycopodium spores and other small particles to rough surfaces[J].Proceedings of The Royal Society,1967,A296:45-70.
[50]Belot Y,Gauthier D.Transport of micronic particles from atmosphere to foliar surfaces[M]//De Vries D A,Afgan N H.Heat and Mass Transfer in the Biosphere.Washington,DC:Scripta Book,1975:583-591.
[51]Chamberlain A C.Transport of Lycopodium spores and other small particles to rough surfaces[J].Proceedings of The Royal Society,1967,A296:45-70.
[52]Giorgi F.Dry deposition velocities of atmospheric aerosols as inferred by applying a particle dry deposition parameterization to a general circulation model[J].Tellus,1988,40B:23-41.
[53]Haynie F H.Theoretical model of soiling of surfaces by airborne particles[M]//Lee S D,Scheider T,Grant L D,et al.Chelsea (MI):Aerosols Lewis Publisher,1986:951-959.
[54]Ibrahim M,Barrie L,Fanaki F.An experimental and theoretical investigation of the dry deposition of particles to snow,pinetrees and artificial collectors[J].Atmospheric Environment,1988,17:781-788.
[55]Schack C J,Sotiris E P,Friedlander S K.A general correlation for deposition of suspended particles from turbulent gases to completely rough surfaces[J].Atmospheric Environment,1985,19:953-960.
[56]Legg B J,Price R I.The contribution of sedimentation to aerosol deposition to vegetation with a large leaf area[J].Atmospheric Environment,1980,14(3):305-309.
[57]Schmel G A,Hodgson W H.A model for predicting dry deposition of particles and gases to environmental surfaces[C].A.I.Ch.E.Symposium Series,1980,76:218-230.
[58]Tang I N,Munkelwitz H R.Water activities,densities,and refractive indices of aqueous sulfates and sodium nitrates droplets of atmospheric importance[J].Journal of Geophysical Research,1994,99:18801-18808.
[59]Gerber H E.Relative humidity parameterization of the Navy Aerosol Model (NAM)[R].National Research Laboratory,Report 8956,Washington,DC,1985.
[60]Ruijgrok W,Davidson C I,Nicholson K W.Dry deposition of particles.Implications and recommendations for mapping of deposition over Europe[J].Tellus,1995,47:587-601.
[61]Gregory P H.Deposition of airborne particles on trap surfaces[J].Nature,1950:66.
[62]Droppo J G.Experimental techniques for dry-deposition measurements[C]//Shriner D S,Richmond C R,Lindberg S E.Second Life Sciences Symposium:Potential Environmental and Health Consequences of Atmospheric Sulfur Deposition.Ann Arbor Science,Gatlinburg,Tennessee,1979:209-221.
[63]Hicks B B,Weseley M L.Turbulent transfer processes to a surface and interaction with vegetation[C]//Shriner D S,Richmond C R,Lindberg S E.Second Life Sciences Symposium:Potential Environmental and Health Consequences of Atmospheric Sulfur Deposition.Ann Arbor Science,Gatlinburg,Tennessee,1979:199-207.
[64]Sievering H.Profile measurements of particle mass transfer at the air-water interface[J].Atmospheric Environment,1981,15:123-129.
[65]Sievering H.Gradient measurements of sulfur and soil mass dry deposition rates under clean air and high wind speed conditions[J].Atmospheric Environment,1986,20:341-345.
[66]Chamberlain A C,Chadwick R C.Deposition of spores and other particles on vegetation and soils[J].Annals of Applied Biology,1972,71:141-158.
[67]Sehmel G A.Particle eddy diffusivities and deposition velocities for isothermal flow and smooth surfaces[J].Journal of Aerosol Science,1973,4:125-138.
[68]Clough W S.The deposit of particles on moss and grass surfaces[J].Atmospheric Environment,1975,9:1113-1119.
[69]Little P,Wiffen R D.Emission and deposition of petrol engine exhaust Pb.I.Deposition of exhaust Pb to plant and soil surfaces[J].Atmospheric Environment,1977,11:437-447.
[70]Wedding J B,Michael E.Montgomery Deposition Velocities for Full-Scale Corn and Soybean Canopies:A wind tunnel simulation[J].Environment International,1980,3(1):91-96.
[71]Ould-Dada Z,Baghini N.Resuspension of small particles from tree surfaces[J].Atmospheric Environment,2001,35:3799-3809.
[72]Gallagher M W,Nemitz E,Dorsey J R,et al.Measurements and parameterizations of small aerosol deposition velocities to grassland,arable crops,and forest:influence of surface roughness length on deposition[J].Journal of Geophysical Research,2002,107:287-292.
[73]Walcek C J,Taylor G R.A theoretical method for computing vertical distributions of acidity and sulfate production within cumulus clouds[J].Journal of Aerosol Science,1986,43:339-355.
[74]Nemitz E,Sutton M.Gas-particle interactions above a Dutch heathland:Ⅲ.Modelling the influence of the NH3-HNO3-NH4NO3 equilibrium on size-segregated particle fluxes[J].Atmospheric Chemistry and Physics,2004,4:1025-1045.
[75]Wesely M L,Cook D R,Hart R L,et al.Measurements and parameterization of particle sulfur deposition over grass[J].Journal of Geophysical Research,1985,90:131-2143.
[76]Nemitz E,Sutton M A,Wyers G P,et al.Gas-particle interactions above a Dutch heathland:Ⅱ.Concentrations and surface exchange fluxes of atmospheric particles[J].Atmospheric Chemistry and Physics,2004,4:1007-1024.
[77]Nemitz E,Fowler D,McDonald A G,et al.Recent advances in the uantification and parameterization of the surface atmosphere exchange of atmospheric aerosols Transport and Chemical Transformation in the Troposphere[C]//Proceedings of EUROTRAC Symposium 2002,Margraf Verlag,Weikersheim,Germany,Garmisch-Partenkirchen,Germany:23-32.
[78]Gillette D A,Lawson R,Thompson R.A 'test of concept' comparison of aerodynamic and mechanical resuspension mechanisms for particles deposited on field rye grass (Secale cercele)—Part 1.Relative particle flux rates[J].Atmospheric Environment,2004,38:4789-4797.
[79]Nicholson K W,Branson J R.Atmosphere-surface exchange of particulates in built-up areas[M]//Schwartz S E,Slinn W G N.Precipitation Scavenging and Atmosphere-Surface Exchange.Washington,DC:Hemisphere Publishing Corporation,1992:673-682.
[80]Duan B,Fairall C W,Thomson D W.Eddy correlation measurements of the dry deposition of particles in wintertime[J].Journal of Applied Meteorology,1988,27:642-652.
No Suggested Reading articles found!