Seasonal Changes in Atmospheric Optical Turbulence in a Near Maritime Environment Using Turbulence Flux Measurements

被引:0
|
作者
Peralta, Alexander
Nelson, Charles [1 ]
Brownell, Cody [1 ]
机构
[1] US Naval Acad, Annapolis, MD 21402 USA
关键词
atmospheric surface layer; optical turbulence; eddy covariance method; near-maritime environment; seasonal variation; INDEX-STRUCTURE PARAMETER; BOUNDARY-LAYER; TEMPERATURE; MODEL;
D O I
10.3390/atmos14010073
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Light propagation through the atmosphere is affected by fluctuations in the refractive index along the path of propagation, called optical turbulence. In the atmospheric surface layer, these fluctuations are due mostly to turbulent mixing of variations in temperature. To this end, a characterization of the atmospheric surface layer above the water in Maryland, USA, is presented. Meteorological data were collected from a sensor array comprising two sonic anemometers and an infrared gas analyzer (IRGASON) over the 12-month period from January to December, 2021. The instruments were positioned vertically at heights of approximately 4 m, 6 m, and 8 m above the water. The temperature structure parameter C-T(2) was calculated and scaled using Monin-Obukhov assumptions. We find that the distribution of atmospheric stability presents as an approximately normal distribution during the winter and early spring, but is skewed negatively during the summer and late fall. We hypothesize that this could be due to a more stable stratification of the underlying water during summer months. Under unstable (-z/L) conditions, turbulent quantities including the temperature structure parameter scale in a manner consistent with the literature, but with generally better agreement during the summer months. Additionally, the C-T(2) estimations appear more consistent during the summer months across all values of (z/L). Under stable (+z/L) conditions, there are wide variations in C-T(2), which is also consistent with the literature.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Atmospheric turbulence induced errors on measurements of surface temperature from space
    Lagouarde, Jean-Pierre
    Irvine, Mark
    Dupont, Sylvain
    REMOTE SENSING OF ENVIRONMENT, 2015, 168 : 40 - 53
  • [42] Doppler Radar Measurements of Spatial Turbulence Intensity in the Atmospheric Boundary Layer
    Duncan Jr, James B.
    Hirth, Brian D.
    Schroeder, John L.
    JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY, 2019, 58 (07) : 1535 - 1555
  • [43] Improved equivalent optical turbulence method for anisotropic compressible and atmospheric turbulence under different beam transmission distances
    Wu, Wenjie
    Xie, Jinyu
    Bai, Lu
    SCIENTIFIC REPORTS, 2025, 15 (01):
  • [44] Statistics and spectra of turbulence under different roughness in the near-neutral atmospheric surface layer
    Li, Xuebo
    Bo, Tianli
    EARTH SURFACE PROCESSES AND LANDFORMS, 2019, 44 (07) : 1460 - 1470
  • [45] Measurements of turbulent dissipation during the Bahamas Optical Turbulence Experiment
    Matt, Silvia
    Hou, Weilin
    Woods, Sarah
    Jarosz, Ewa
    Goode, Wesley
    Weidemann, Alan
    OCEAN SENSING AND MONITORING V, 2013, 8724
  • [46] Estimation of behavior of outer scale of turbulence from optical measurements
    Lukin, VP
    OPTICS IN ATMOSPHERIC PROPAGATION AND ADAPTIVE SYSTEMS IV, 2002, 4538 : 74 - 84
  • [47] A review of turbulence measurements using ground-based wind lidars
    Sathe, A.
    Mann, J.
    ATMOSPHERIC MEASUREMENT TECHNIQUES, 2013, 6 (11) : 3147 - 3167
  • [48] Effect of buoyant turbulence and water quality factors on the CO2 net atmospheric flux changes in a stratified reservoir
    Park, Hyungseok
    Chung, Sewoong
    Kim, Sungjin
    SCIENCE OF THE TOTAL ENVIRONMENT, 2021, 776
  • [49] Simulation of atmospheric turbulence phase screen for large telescope and optical interferometer
    Jia, Peng
    Cai, Dongmei
    Wang, Dong
    Basden, Alastair
    MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2015, 447 (04) : 3467 - 3474
  • [50] Global atmospheric turbulence forecasting for free-space optical communications
    Osborn, James
    Communal, Jean-Edouard
    Jabet, Frederic
    FREE-SPACE LASER COMMUNICATIONS XXXV, 2023, 12413