期刊文献+

Effect of Mesoscale Land Use Change on Characteristics of Convective Boundary Layer:Semi-Idealized Large Eddy Simulations over Northwest China 被引量:4

Effect of Mesoscale Land Use Change on Characteristics of Convective Boundary Layer:Semi-Idealized Large Eddy Simulations over Northwest China
原文传递
导出
摘要 Although large-scale topography and land use have been properly considered in weather and climate models, the effect of mesoscale and microscale heterogeneous land use on convective boundary layer(CBL) has not been fully understood yet. In this study, the influence of semi-idealized strip-like patches of oases and deserts, which resemble irrigated land use in Northwest China, on the CBL characteristics, is investigated based on the Weather Research and Forecasting(WRF)-large eddy simulation(LES) driven by observed land surface data. The influences of soil water content in oases on aloft CBL flow structure, stability, turbulent kinetic energy(TKE), and vertical fluxes are carefully examined through a group of sensitivity experiments. The results show that secondary circulation(SC)/turbulent organized structures(TOS) is the strongest/weakest when soil water content in oases is close to saturation(e.g.,when the oases are irrigated). With the decrease of soil water content in oases(i.e., after irrigation), SC(TOS) becomes weak(strong) in the lower and middle CBL, the flux induced by SC and TOS becomes small(large), which has a dramatic impact on point measurement of eddy covariance(EC) fluxes. The flux induced by SC and TOS has little influence on EC sensible heat flux, but great influence on EC latent heat flux. Under this circumstance, the area averaged heat flux cannot be represented by point measurement of flux by the EC method, especially just after irrigation in oases. Comparison of imbalance ratio(i.e., contribution of SC and TOS to the total flux) reveals that increased soil moisture in oases leads to a larger imbalance ratio as well as enhanced surface heterogeneity. Moreover,we found that the soil layer configuration at different depths has a negligible impact on the CBL flux properties. Although large-scale topography and land use have been properly considered in weather and climate models, the effect of mesoscale and microscale heterogeneous land use on convective boundary layer(CBL) has not been fully understood yet. In this study, the influence of semi-idealized strip-like patches of oases and deserts, which resemble irrigated land use in Northwest China, on the CBL characteristics, is investigated based on the Weather Research and Forecasting(WRF)-large eddy simulation(LES) driven by observed land surface data. The influences of soil water content in oases on aloft CBL flow structure, stability, turbulent kinetic energy(TKE), and vertical fluxes are carefully examined through a group of sensitivity experiments. The results show that secondary circulation(SC)/turbulent organized structures(TOS) is the strongest/weakest when soil water content in oases is close to saturation(e.g.,when the oases are irrigated). With the decrease of soil water content in oases(i.e., after irrigation), SC(TOS) becomes weak(strong) in the lower and middle CBL, the flux induced by SC and TOS becomes small(large), which has a dramatic impact on point measurement of eddy covariance(EC) fluxes. The flux induced by SC and TOS has little influence on EC sensible heat flux, but great influence on EC latent heat flux. Under this circumstance, the area averaged heat flux cannot be represented by point measurement of flux by the EC method, especially just after irrigation in oases. Comparison of imbalance ratio(i.e., contribution of SC and TOS to the total flux) reveals that increased soil moisture in oases leads to a larger imbalance ratio as well as enhanced surface heterogeneity. Moreover,we found that the soil layer configuration at different depths has a negligible impact on the CBL flux properties.
出处 《Journal of Meteorological Research》 SCIE CSCD 2018年第3期421-432,共12页 气象学报(英文版)
基金 Supported by the National Key Research and Development Program of China(2017YFC1502101) National Natural Science Foundation of China(41575098) Specialized Research Fund for the Doctoral Program of Higher Education(20120211110019)
关键词 oasis and desert land surface heterogeneity large eddy simulation soil water content secondary circulation turbulent organized structure oasis and desert land surface heterogeneity large eddy simulation soil water content secondary circulation turbulent organized structure
  • 相关文献

参考文献3

二级参考文献39

  • 1王介民,刘绍民,孙敏章,郭铌,W.Bastiaanssen.ET的遥感监测与流域尺度水资源管理[J].干旱气象,2005,23(2):1-7. 被引量:18
  • 2罗斯琼,陈世强,吕世华.不同土壤湿度条件下绿洲边界层特征的敏感性试验[J].高原气象,2005,24(4):471-477. 被引量:11
  • 3陈家宜,范邵华,赵传峰,肖雪,蔡旭辉,刘辉志.涡旋相关法测定湍流通量偏低的研究[J].大气科学,2006,30(3):423-432. 被引量:39
  • 4郭维栋,马柱国,王会军.土壤湿度——一个跨季度降水预测中的重要因子及其应用探讨[J].气候与环境研究,2007,12(1):20-28. 被引量:62
  • 5Kanemasu E T,Verma S B,Smith E A,et al.Surface flux measurements in FIFE:An overview[J].Journal Geophysical Research,1992,97:18 547-18 555.
  • 6Wang J,Kim J,Liou Y,et al.Energy balance analysis and one-dimensional simulation of land surface processes in a short-grass site of central Tibetan Plateau[C]//Proceeding of the 1st international Workshop on GAME-Tibet,Xi'an,China.1999:73-76.
  • 7Lee X.On Micrometeorological observations of surface-air exchange over tall vegetation[J].Agricultural and Forest Meteorology,1998,91:39-49.
  • 8Twine T E,Kustas W P,Norman J M,et al.Correcting eddy-covariance flux underestimates over a grassland[J].Agricultural and Forest Meteorology,2000,103:279-300.
  • 9Sakai R,Fitzjarrald D,Moore K E.Importance of low-frequency contributions to eddy fluxes observed over rough surfaces[J].Journal Applied Meteorology,2001,40:2 178-2 192.
  • 10Wilson K B,Goldstein A,Falge E,et al.Energy balance closure at FLUXNET sites[J].Agricultural and Forest Meteorology,2002,113:223-234.

共引文献93

同被引文献46

引证文献4

二级引证文献9

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