Relationship between the Aerodynamic Roughness Length and the Roughness Density in Cases of Low Roughness Density*

被引:1
|
作者
F. Minvielle
B. Marticorena
D.A. Gillette
R.E. Lawson
R. Thompson
G. Bergametti
机构
[1] Laboratoire Interuniversitaire des Systèmes Atmosphériques,Air
[2] National Oceanic and Atmospheric Administration,Surface Processes Modeling Branch, Atmospheric Sciences Modeling Division, Air Resources Laboratory
[3] U.S. Environmental Protection Agency,undefined
来源
关键词
Wind Tunnel; Environmental Physic; Significant Error; Roughness Length; Solid Element;
D O I
暂无
中图分类号
学科分类号
摘要
This paper presents measurements of roughness length performed in a wind tunnel for low roughness density. The experiments were performed with both compact and porous obstacles (clusters), in order to simulate the behavior of sparsely vegetated surfaces. The experimental results have been used to investigate the relationship between the ratio z0/h and the roughness density, and the influence of an obstacle's porosity on this relationship. The experiments performed for four configurations of compact obstacles provide measurements of roughness length z0 for roughness densities λ between 10−3 and 10−2 which are in good agreement with the only data set available until now for this range of low roughness densities. The results obtained with artificial porous obstacles suggests that the aerodynamic behavior of such roughness elements can be represented by the relationship established for compact obstacles, provided a porosity index has been used to determine the efficient roughness density (the fraction of the silhouette area actually sheltered by solid elements) rather than counting the porous object as solid. However, the experiments have been performed with relatively low porosity indices (maximum = 25%) for which the porosity has a negligible influence. In this range of porosity index, representing the aerodynamic behavior of porous obstacles using the relationship established for compact obstacles, should not lead to a significant error. However, the influence of the porosity may be important for porosity indices larger than 30%.
引用
收藏
页码:249 / 267
页数:18
相关论文
共 50 条
  • [41] Effect of brush roughness on volume charge density
    Zhou, Teng
    Zhao, Juncheng
    He, Xiaohan
    Shi, Liuyong
    Wen, Liping
    JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2023, 936
  • [42] EFFECT OF ROUGHNESS IN LOCK EXCHANGE DENSITY CURRENTS
    Chowdhury, Raghib
    Bhaganagar, Kiran
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION - 2012, VOL 7, PTS A-D, 2013, : 2865 - 2868
  • [43] Roughness effects on hydraulic jumps in density currents
    Barahmand, Nader
    Shamsai, Abolfazl
    Ghomshi, Mehdi
    JOURNAL OF FOOD AGRICULTURE & ENVIRONMENT, 2011, 9 (02): : 531 - 534
  • [44] THE EFFECT OF SURFACE-ROUGHNESS ON THE WEAR OF LOW-DENSITY POLYETHYLENE
    EISS, NS
    BAYRAKTAROGLU, MM
    ASLE TRANSACTIONS, 1980, 23 (03): : 269 - 278
  • [45] Relationship between roughness height in use with Colebrook roughness function and the internal wall surface roughness parameters for stainless steel pipes
    Botros, K. K.
    Shouman, A.
    JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING, 2016, 35 : 197 - 202
  • [46] Aerodynamic roughness length related to non-aggregated tillage ridges
    Kardous, M
    Bergametti, G
    Marticorena, B
    ANNALES GEOPHYSICAE, 2005, 23 (10) : 3187 - 3193
  • [47] The influences of thermodynamic characteristics on aerodynamic roughness length over land surface
    Zhang Qiang
    Yao Tong
    Yue Ping
    Zhangf Liyang
    Zeng Jian
    ACTA METEOROLOGICA SINICA, 2013, 27 (02): : 249 - 262
  • [48] Statistical features of aerodynamic effective roughness length over heterogeneous terrain
    Huang Jin
    Zhong Zhong
    Guo Wei-Dong
    Lu Wei
    ACTA PHYSICA SINICA, 2013, 62 (05)
  • [49] ESTIMATION OF AERODYNAMIC ROUGHNESS AND ZERO PLANE DISPLACEMENT USING MEDIUM DENSITY OF AIRBORNE LIDAR DATA
    Salleh, M. R. Mohd
    Rahman, M. Z. Abdul
    Abu Bakar, M. A.
    Rasib, A. W.
    Omar, H.
    INTERNATIONAL CONFERENCE ON GEOMATIC AND GEOSPATIAL TECHNOLOGY (GGT) 2016, 2016, 42-4 (W1): : 217 - 224
  • [50] Aerodynamic roughness length of crevassed tidewater glaciers from UAV mapping
    Dachauer, Armin
    Hann, Richard
    Hodson, Andrew J.
    CRYOSPHERE, 2021, 15 (12): : 5513 - 5528