Estimation of key surface parameters in semi-arid region and their impacts on improvement of surface fluxes simulation
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  • 作者:Ye Liu ; WeiDong Guo ; YaoMing Song
  • 关键词:semi ; arid region ; turbulent transfer ; surface roughness length ; excess resistance ; field experiments
  • 刊名:Science China Earth Sciences
  • 出版年:2016
  • 出版时间:February 2016
  • 年:2016
  • 卷:59
  • 期:2
  • 页码:307-319
  • 全文大小:2,407 KB
  • 参考文献:Beljaars A C M, Holtslag A A M. 1991. Flux parameterization over land surface for atmospheric models. J Appl Meteorol, 30: 327–341CrossRef
    Bonan G B. 1996. A land surface model (LSM Version 1.0) for ecological, ydrological, and atmospheric studies: Technical description and user’s uide. NCAR Tech. Note NCAR/TN-417+STR
    Brutsaert W. 1982. Evaporation into the Atmosphere: Theory, History, and Applications. Boston: Kluwer Academic Publishers. 299CrossRef
    Chen J Y, Wang J M, Guang T N. 1997. An independent method to determine the surface roughness length (in Chinese). Chin J Atmos Sci, 17: 21–26
    Chen Y Y, Yang K, Zhou D G, Qin J, Guo X F. 2010. Improving the Noah land surface model in arid regions with an appropriate parameterization of the thermal roughness length. J Hydrometeorol, 11: 995–1006CrossRef
    Dai Y J, Zeng Q C. 1997. A land surface model (IAP94) for climate studies part I: Formulation and validation in off-line experiments. Adv Atmos Sci, 14: 433–433CrossRef
    Dai Y J, Zeng X B, Dickinson R E, Baker I, Bonan G B, Denning A S, Dirmeyer P A, Houser P R, Niu G Y, Oleson K W, Schlooser C A, Yang Z L. 2003. The common land model. Bull Amer Meteorol Soc, 84: 1013–1023CrossRef
    Dan L, Fu C B, Wu J. 2011. Spatial and temporal characteristics of global sensible and latent heat fluxes simulated by a two-way land-air coupled model (in Chinese). Climatic Environ Res, 16: 113–125
    Dickinson R E, Kennedy P J, Henderson-Sellers A. 1993. Biosphere- atmosphere transfer scheme (BATS) version 1e as coupled to the NCAR community climate model. NCAR Techn. Note-378+STR.
    Dyer A J. 1974. A review of flux-profile relationships. Bound-Layer Meteor, 7: 363–372CrossRef
    Feng J M, Fu C B. 2007. Inter-comparison of long-term simulations of temperature and precipitation over China by different regional climate models (in Chinese). Chin J Atmos Sci, 5: 805–814
    Feng J W, Liu H Z, Wang L. 2012. Seasonal and inter-annual variation of surface roughness length and bulk transfer coefficients in semiarid area. Sci China Earth Sci, 55: 254–261CrossRef
    Foken T, Göockede M, Mauder M, Mahrt L, Amiro B, Munger W. 2005. Post-field data quality control. In: Lee X, Massman W, Law B, eds. Handbook of Micrometeorology. Heidelberg: Springer. 181–208CrossRef
    Fu C B, An Z S, Guo W D. 2005. Evolution of life-supporting environment in our nation and the predictive study of aridification in Northern China (II): Scientific innovations and its conteribution to national demands (in Chinese). Adv Earth Sci, 20: 1168–1175
    Fu C B, Guo W D. 2008. Regional Climate of China. Heidelberg: Springer. 155–217CrossRef
    Fu C B, Wang S Y, Xiong Z, Gutowski W J, Lee D K, McGregor J L, Sato Y, Kato H, Kim J W, Suh M S. 2005. Regional climate model intercomparison project for Asia. Bull Amer Meteorol Soc, 86: 257–266CrossRef
    Fu C B, Weng G. 2002. Several issues on aridification in the Northern China (in Chinese). Climatic Environ Res, 7: 22–29
    Gao Z Q, Bian L G, Lu C G. 2002. Estimation of aerodynamic parameters in urban areas (in Chinese). Quart J Appl Meteor, 13: 26–33
    Garratt J, Francey R. 1978. Bulk characteristics of heat transfer in the unstable, baroclinic atmospheric boundary layer. Bound-Layer Meteor, 15: 399–421CrossRef
    Guan X D, Guo N, Huang J P. 2008. Applicability analysis of VCI to monitoring Northwest China drought (in Chinese). Plateau Meteor, 27: 1046–1053
    Guan X D, Huang J P, Guo N, Bi J R, Wang G Y. 2009. Variability of soil moisture and its relationship with surface albedo and soil thermal parameters over the Loess Plateau. Adv Atmos Sci, 26: 692–700CrossRef
    Huang J P, Zhang W, Zuo J Q, Bi J R, Shi J S, Wang X, Chang Z L, Huang Z W, Yang S, Zhang B D, Wang G Y, Feng G H, Yuan J Y, Zhang L, Zuo H C, Wang S G, Fu C B, Chou J F. 2008. An overview of the semi-arid climate and environment research observatory over the Loess Plateau. Adv Atmos Sci, 25: 906–921CrossRef
    Kanda M, Kanega M, Kawai T, Morwaki R, Sugawara H. 2007. Roughness lengths for momentum and heat derived from outdoor urban scale models. J Appl Meteorol Climatol, 46: 1067–1079CrossRef
    Li H Q, Guo W D, Sun G D. 2011. A new approch for parameter optimization in land surface model. Adv Atmos Sci, 28: 1056–1066CrossRef
    Ling X L, Guo W D, Zhao Q F, Sun Y L, Zou Y H, Hu Z H, Fu C B. 2012. Evaluating CEOP model performance in semi-arid region of China. Environ Res Lett, 7: 025202, doi: 10.1088/1748-9326/7/2/025202CrossRef
    Liu H Z, Dong W J, Fu C B, Shi L Q. 2004. The long-term field experiment on aridification and the ordered human activity in semi-arid area at Tongyu, Northeast China (in Chinese). Climatic Environ Res, 9: 378–389
    Liu J, Arndt C, Hertel T W. 2004. Parameter estimation and measures of fit in a global, general equilibrium model. J Econ Integr, 19: 626–649CrossRef
    Liu S H, Chen H S. 1993. Comparison of the turbulent flux indirect calculation method in the atmosphere surface layer (in Chinese). Acta Scienti Natura Uni Pekinensis, 29: 615–621
    Liu Y Q, He Q, Zhang H S, Mamtimin A. 2012. Improving the CoLM in Taklimakan Desert hinterland with accurate key parameters and an appropriate parameterization scheme. Adv Atmos Sci, 29: 381–390CrossRef
    Ma Y M, Menenti M, Feddes R, Wang J M. 2008. Analysis of the land surface heterogeneity and its impact on atmospheric variables and the aerodynamic and thermodynamic roughness lengths. J Geophys Res, 113: D08113, doi: 10.1029/2007JD009124
    Ma Z G, Fu C B. 2003. Interannual characteristics of the surface hydrological variables over the arid and semi-arid areas of northern China. Glob Planet Change, 37: 189–200
    Ma Z G, Fu C B. 2005. Decadal variations of arid and semi-arid boundary in China (in Chinese). Chin J Geophy, 48: 519–525
    Mahrt L. 1996. The bulk aerodynamic fomulation over heterogeneous surfaces. Bound-Layer Meteor, 78: 87–119CrossRef
    Moore C. 1986. Frequency response corrections for eddy correlation systems. Bound-Layer Meteor, 37: 17–35CrossRef
    Owen P R, Thomson W R. 1963. Heat transfer across rough surface. J Fluid Mech, 15: 321–334CrossRef
    Pitman A J. 2003. The evolution of, and revolution in, land surface schemes designed for climate models. Int J Climatol, 23: 479–510CrossRef
    Prueger J H, Kustas W P, Hipps L E, Hatfield J L. 2004. Aerodynamic parameters and sensible heat flux estimates for a semi-arid ecosystem. J Arid Environ, 57: 87–100CrossRef
    Qiu Y J, Wu F J, Liu Z. 2010. Problem of the Gradient Method to Study Aerodynamic Roughness (in Chinese). Transac Atmos Sci, 33: 697–702
    Sheppard P A. 1958. Transfer across the earth's surface and through the air above. Q J R Meteorol Soc, 84: 205–224CrossRef
    Song Y M, Guo W D, Zhang Y C. 2008. Simulation of latent heat flux exchange between land surface and atmosphere in temperate mixed forest and subtropical artificial coniferous forest sites in China by CoLM (in Chinese). Plateau Meteor, 27: 967–977
    Song Y M, Guo W D, Zhang Y C. 2009. Performances of CoLM and NCAR_CLM3.0 in simulating land-atmosphere interactions over typical forest ecosystems in China part II. Impact of different parameterization schemes on simulations (in Chinese). Climatic Environ Res, 14: 243–257
    Sun J. 1999. Diurnal variations of thermal roughness height over a grassland. Bound-Layer Meteor, 92: 407–427CrossRef
    Sun S F. 2005. Physical, Biochemical Mechanism and Parameter Schemes in Land Surface Process (in Chinese). Beijing: Meteorological Press. 307
    Takagi K, Miyata A, Harazono Y, Ota N, Komine M, Yoshimoto M. 2003. An alternative approach to determining zero-plane displacement, and its application to a lotus paddy field. Agric Meteorol, 115: 173–181CrossRef
    Tu G, Liu H Z, Dong W J. 2009. Characteristics of the surface turbulent fluxes over degraded grassland and cropland in the semi-arid area (in Chinese). Chin J Atmos Sci, 33: 719–725
    Verhoef A, Allen S J, Lloyd C R. 1999. Seasonal variation of surface energy balance over two Sahelian surfaces. Int J Climatol, 19: 1267–1277CrossRef
    Verhoef A, DeBruin H A R, VandenHurk B. 1997. Some practical notes on the parameter κB-1 for sparse vegetation. J Appl Meteorol, 36: 560–572CrossRef
    Wang G Y, Huang J P, Guo W D, Zuo J Q, Wang J M, Bi J R, Huang Z W, Shi J S. 2010. Observation analysis of land-atmosphere interactions over the Loess Plateau of northwest China. J Geophys Res, 115: D00K17, doi: 10.1029/2009JD013372
    Webb E K, Pearman G I, Leuning R. 1980. Correction of flux measurements for density effects due to heat and water vapour transfer. Q J R Meteorol Soc, 106: 85–100CrossRef
    Wieringa J. 1993. Representative roughness parameters for homogeneous. Bound-Layer Meteor, 63: 323–363CrossRef
    Wilczak J M, Oncley S P, Stage S A. 2001. Sonic anemometer tilt correction algorithms. Bound-Layer Meteor, 99: 127–150CrossRef
    Wu J K, Ding Y J, Shen Y P, Wang G X. 2006. Energy balance in the irrigational intercropping field in the middle reaches of Heihe River. J Glaciol Geocry, 28: 443–449
    Yang K, Koike T, Fujii H, Tamagawa K, Hirose N. 2002. Improvement of surface flux parametrizations with a turbulence-related length. Q J R Meteorol Soc, 128: 2073–2087CrossRef
    Yang K, Koike T, Ishikawa H, Kim J, Li X, Liu H Z, Liu S M, Ma Y M, Wang J M. 2008. Turbulent flux transfer over bare-soil surfaces: Characteristics and parameterization. J Appl Meteorol Climatol, 47: 276–290CrossRef
    Yang K, Watanabe T, Koike T, Li X, Fuji H, Tamagawa K, Ma Y M, Ishikawa H. 2007. Auto-calibration system developed to assimilate AMSR-E data into a land surface model for estimating soil moisture and the surface energy budget. J Meteorol Soc Jpn, 85: 229–242CrossRef
    Yao Y H, Guo W D, Song Y M. 2010. Evaluating CEOP model performance with the observational data from Tongyu reference site, semi-arid region of China. Asia-Pacific J Atmos Sci, 46: 475–481CrossRef
    Zeng X B, Dickinson R E. 1998. Effect of surface sublayer on surface skin temperature and fluxes. J Clim, 11: 537–550CrossRef
    Zeng X B, Wang Z, Wang A H. 2012. Surface skin temperature and the interplay between sensible and ground heat fluxes over arid regions. J Hydrometeorol, 13: 1359–1370CrossRef
    Zhang P Y, Jiang L M, Qiu Y B. 2010. Study of the Microwave Emissivity Characteristics over Different Land Cover Types (in Chinese). Spectro Spectral Anal, 6: 1446–1451
    Zhang Q, Lü S H. 2003. The determination of roughness length over city surface (in Chinese). Plateau Meteor, 22: 24–32
    Zhang W Y, Zhang Y, Lu X J, Guo Z H, Wang X Y. 2009. Analysis on heterogeneous underlying surface roughness length in semi-arid mountains area of Loess Plateau, China (in Chinese). Plateau Meteor, 28: 763–768
    Zhang Y, Lü S H, Chen S Q, Ao Y H, Hu Z Y, Wei Z G. 2005. Characteristics of energy budget and microclimate on the edge of oasis Summer (in Chinese). Plateau Meteor, 24: 527–533
    Zheng D H, Velde R V D, Su Z B, Booij M J, Hoekstra A Y, Wen J. 2014, Assessment of roughness length schemes implemented within the Noah Land Surface Model for high-altitude regions. J Hydrometerorol, 15: 921–937CrossRef
    Zheng W Z, Wei H L, Wang Z, Zeng X B, Meng J, Ek M, Mitchell K, Derber J. 2012. Improvement of daytime land surface skin temperature over arid regions in the NCEP GFS model and its impact on satellite data assimilation. J Geophys Res, 117: D06117, doi: 10.1029/ 2011JD015901
    Zhong Z, Su B K, Zhao M: 2002. A new method to determin effective roughness length in atmospheric model (in Chinese). Prog Nat Sci, 12: 519–523
    Zhou Y L, Sun X M. Zhu Z L, Wen X F, Tian J, Zhang R H. 2007. Comparative research on four typical surface roughness length calculation methods (in Chinese). Geogra Res, 26: 887–896
    Zilitinkevich S. 1995. Non-local turbulent transport pollution dispersion aspects of coherent structure of convective flows. In: Power H, Moussiopoulos N, Brebbia C A, eds. Air Pollution III, Air Pollution Theory and Simulation. Boston: Computational Mechanics Publication. 53–60
  • 作者单位:Ye Liu (1)
    WeiDong Guo (1)
    YaoMing Song (2)

    1. Institute for Climate and Global Change Research, School of Atmospheric Sciences, Nanjing University, Nanjing, 210093, China
    2. College of Atmospheric Science, Nanjing University of Information Science and Technology, Nanjing, 210044, China
  • 刊物主题:Earth Sciences, general;
  • 出版者:Springer Berlin Heidelberg
  • ISSN:1869-1897
文摘
Uncertainties in some key parameters in land surface models severely restrict the improvement of model capacity for successful simulation of surface-atmosphere interaction. These key parameters are related to soil moisture and heat transfer and physical processes in the vegetation canopy as well as other important aerodynamic processes. In the present study, measurements of surface-atmosphere interaction at two observation stations that are located in the typical semi-arid region of China, Tongyu Station in Jilin Province and Yuzhong Station in Gansu Province, are combined with the planetary boundary layer theory to estimate the value of two key aerodynamic parameters, i.e., surface roughness length z 0m and excess resistance κB -1. Multiple parameterization schemes have been used in the study to obtain values for surface roughness length and excess resistance κB -1 at the two stations. Results indicate that z 0m has distinct seasonal and inter-annual variability. For the type of surface with low-height vegetation, there is a large difference between the default value of z 0m in the land surface model and that obtained from this study. κB -1 demonstrates a significant diurnal variation and seasonal variability. Using the modified scheme for the estimation of z 0m and κB -1 in the land surface model, it is found that simulations of sensible heat flux over the semi-arid region have been greatly improved. These results suggest that it is necessary to further evaluate the default values of various parameters used in land surface models based on field measurements. The approach to combine field measurements with atmospheric boundary layer theory to retrieve realistic values for key parameters in land surface models presents a great potential in the improvement of modeling studies of surface-atmosphere interaction. Keywords semi-arid region turbulent transfer surface roughness length excess resistance field experiments

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