期刊文献+

Estimation of Turbulent Sensible Heat and Momentum Fluxes over a Heterogeneous Urban Area Using a Large Aperture Scintillometer 被引量:2

Estimation of Turbulent Sensible Heat and Momentum Fluxes over a Heterogeneous Urban Area Using a Large Aperture Scintillometer
下载PDF
导出
摘要 The accurate determination of surface-layer turbulent fluxes over urban areas is critical to understanding urban boundary layer (UBL) evolution. In this study, a remote-sensing technique using a large aperture scintillometer (LAS) was investigated to estimate surface-layer turbulent fluxes over a highly heterogeneous urban area. The LAS system, with an optical path length of 2.1 km, was deployed in an urban area characterized by a complicated land-use mix (residential houses, water body, bare ground, etc.). The turbulent sensible heat (QH) and momentum fluxes (z) were estimated from the scintillation measurements obtained from the LAS system during the cold season. Three-dimensional LAS footprint modeling was introduced to identify the source areas ("footprint") of the estimated turbulent fluxes. The analysis results showed that the LAS-derived turbulent fluxes for the highly heterogeneous urban area revealed reasonable temporal variation during daytime on clear days, in comparison to the land-surface process-resolving numerical modeling. A series of sensitivity tests indicated that the overall uncertainty in the LAS-derived daytime QH was within 20%-30% in terms of the influence of input parameters and the non- dimensional similarity function for the temperature structure function parameter, while the estimation errors in z were less sensitive to the factors of influence, except aerodynamic roughness length. The 3D LAS footprint modeling characterized the source areas of the LAS-derived turbulent fluxes in the heterogeneous urban area, revealing that the representative spatial scales of the LAS system deployed with the 2.1 km optical path distance ranged from 0.2 to 2 km2 (a "micro-a scale"), depending on local meteorological conditions. The accurate determination of surface-layer turbulent fluxes over urban areas is critical to understanding urban boundary layer (UBL) evolution. In this study, a remote-sensing technique using a large aperture scintillometer (LAS) was investigated to estimate surface-layer turbulent fluxes over a highly heterogeneous urban area. The LAS system, with an optical path length of 2.1 km, was deployed in an urban area characterized by a complicated land-use mix (residential houses, water body, bare ground, etc.). The turbulent sensible heat (QH) and momentum fluxes (z) were estimated from the scintillation measurements obtained from the LAS system during the cold season. Three-dimensional LAS footprint modeling was introduced to identify the source areas ("footprint") of the estimated turbulent fluxes. The analysis results showed that the LAS-derived turbulent fluxes for the highly heterogeneous urban area revealed reasonable temporal variation during daytime on clear days, in comparison to the land-surface process-resolving numerical modeling. A series of sensitivity tests indicated that the overall uncertainty in the LAS-derived daytime QH was within 20%-30% in terms of the influence of input parameters and the non- dimensional similarity function for the temperature structure function parameter, while the estimation errors in z were less sensitive to the factors of influence, except aerodynamic roughness length. The 3D LAS footprint modeling characterized the source areas of the LAS-derived turbulent fluxes in the heterogeneous urban area, revealing that the representative spatial scales of the LAS system deployed with the 2.1 km optical path distance ranged from 0.2 to 2 km2 (a "micro-a scale"), depending on local meteorological conditions.
出处 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2015年第8期1092-1105,共14页 大气科学进展(英文版)
基金 supported by the Korea Meteorological Administration Research and Development Program (Grant No. CATER 2012-3081)
关键词 heterogeneous surface large aperture scintillometer mesoscale modeling surface energy balance turbulentexchange heterogeneous surface, large aperture scintillometer, mesoscale modeling, surface energy balance, turbulentexchange
  • 相关文献

参考文献73

  • 1Andreas E.L.,1988: Atmospheric stability from scintillation measurements.Appl.Opt., 27, 2241- 2246.
  • 2Beyrich F.,H.A.R.De Bruin,W.M.L.Meijninger,J.W.Schipper, and H.Lohse, 2002: Results from one- year continuous operation of a large aperture scintillometer over a heterogeneous land surface.Bound.- Layer Meteor., 105, 85- 97.
  • 3Businger J.A.,J.C.Wyngaard,Y.Izumi, and E.F.Bradley, 1971: Flux- profile relationships in the atmospheric surface layer.J.Atmos.Sci., 28, 181- 189.
  • 4Chehbouni, A.,Coauthors, 2000: Estimation of heat and momentum fluxes over complex terrain using a large aperture scintillometer.Agricultural and Forest Meteorology, 105, 215- 226.
  • 5Chen F.,J.Dudhia, 2001: Coupling an advanced land surface- hydrology model with the Penn State- NCAR MM5 modeling system.Part I: Model implementation and sensitivity.Mon.Wea.Rev., 129, 569- 585.
  • 6Chou M.D.,M.J.Suarez, 1994: An Efficient Thermal Infrared Radiation Parameterization for Use in General Circulation Models.NASA Tech Memo, 104606, Vol.3, 85 pp.
  • 7De Bruin1993 De Bruin, H.A.R., W.Kohsiek,B.J.J.M.van den Hurk, 1993: A verification of some methods to determine the fluxes of momentum, sensible heat, and water vapour using standard deviation and structure parameter of scalar meteorological quantities.Bound.- Layer Meteor., 63, 231- 257.
  • 8De Bruin1995 De Bruin, H.A.R., B.J.J.M.van den Hurk,W.Kohsiek, 1995: The scintillation method tested over a dry vineyard area.Bound.- Layer Meteor., 76, 25- 40.
  • 9De Bruin2002 De Bruin, H.A.R., W.M.L.Meijninger, A.S.Smedman,M.Magnusson, 2002: Displaced- beam small aperture scintillometer test.Part I: The WINTEX data- set.Bound.- Layer Meteor., 105, 129- 148.
  • 10Evans J.G.,D.D.McNeil,J.W.Finch,T.Murray,R.J.Harding,H.C.Ward, and A.Verhoef, 2012: Determination of turbulent heat fluxes using a large aperture scintillometer over undulating mixed agricultural terrain.Agricultural and Forest Meteorology, 166- 167, 221- 233.

同被引文献20

引证文献2

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部