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Doppler Lidar Vertical Velocity Statistics Value-Added Product

Doppler Lidar Vertical Velocity Statistics Value-Added Product PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 26

Book Description
Accurate height-resolved measurements of higher-order statistical moments of vertical velocity fluctuations are crucial for improved understanding of turbulent mixing and diffusion, convective initiation, and cloud life cycles. The Atmospheric Radiation Measurement (ARM) Climate Research Facility operates coherent Doppler lidar systems at several sites around the globe. These instruments provide measurements of clear-air vertical velocity profiles in the lower troposphere with a nominal temporal resolution of 1 sec and height resolution of 30 m. The purpose of the Doppler lidar vertical velocity statistics (DLWSTATS) value-added product (VAP) is to produce height- and time-resolved estimates of vertical velocity variance, skewness, and kurtosis from these raw measurements. The VAP also produces estimates of cloud properties, including cloud-base height (CBH), cloud frequency, cloud-base vertical velocity, and cloud-base updraft fraction.

Doppler Lidar Vertical Velocity Statistics Value-Added Product

Doppler Lidar Vertical Velocity Statistics Value-Added Product PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 26

Book Description
Accurate height-resolved measurements of higher-order statistical moments of vertical velocity fluctuations are crucial for improved understanding of turbulent mixing and diffusion, convective initiation, and cloud life cycles. The Atmospheric Radiation Measurement (ARM) Climate Research Facility operates coherent Doppler lidar systems at several sites around the globe. These instruments provide measurements of clear-air vertical velocity profiles in the lower troposphere with a nominal temporal resolution of 1 sec and height resolution of 30 m. The purpose of the Doppler lidar vertical velocity statistics (DLWSTATS) value-added product (VAP) is to produce height- and time-resolved estimates of vertical velocity variance, skewness, and kurtosis from these raw measurements. The VAP also produces estimates of cloud properties, including cloud-base height (CBH), cloud frequency, cloud-base vertical velocity, and cloud-base updraft fraction.

Doppler Lidar Wind Value-Added Product

Doppler Lidar Wind Value-Added Product PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 24

Book Description
Wind speed and direction, together with pressure, temperature, and relative humidity, are the most fundamental atmospheric state parameters. Accurate measurement of these parameters is crucial for numerical weather prediction. Vertically resolved wind measurements in the atmospheric boundary layer are particularly important for modeling pollutant and aerosol transport. Raw data from a scanning coherent Doppler lidar system can be processed to generate accurate height-resolved measurements of wind speed and direction in the atmospheric boundary layer.

Dlprofwstats4news.c1

Dlprofwstats4news.c1 PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Doppler lidar vertical velocity and cloud statistics VAP.

Estimations of Abl Fluxes and Other Turbulence Parameters from Doppler Lidar Data

Estimations of Abl Fluxes and Other Turbulence Parameters from Doppler Lidar Data PDF Author: National Aeronautics and Space Adm Nasa
Publisher: Independently Published
ISBN: 9781729339398
Category :
Languages : en
Pages : 58

Book Description
Techniques for extraction boundary layer parameters from measurements of a short-pulse CO2 Doppler lidar are described. The measurements are those collected during the First International Satellites Land Surface Climatology Project (ISLSCP) Field Experiment (FIFE). By continuously operating the lidar for about an hour, stable statistics of the radial velocities can be extracted. Assuming that the turbulence is horizontally homogeneous, the mean wind, its standard deviations, and the momentum fluxes were estimated. Spectral analysis of the radial velocities is also performed from which, by examining the amplitude of the power spectrum at the inertial range, the kinetic energy dissipation was deduced. Finally, using the statistical form of the Navier-Stokes equations, the surface heat flux is derived as the residual balance between the vertical gradient of the third moment of the vertical velocity and the kinetic energy dissipation. Combining many measurements would normally reduce the error provided that, it is unbiased and uncorrelated. The nature of some of the algorithms however, is such that, biased and correlated errors may be generated even though the raw measurements are not. Data processing procedures were developed that eliminate bias and minimize error correlation. Once bias and error correlations are accounted for, the large sample size is shown to reduce the errors substantially. The principal features of the derived turbulence statistics for two case studied are presented. Gal-Chen, Tzvi and Xu, Mei and Eberhard, Wynn Unspecified Center...

Optimizing Dual-Doppler Lidar Measurements of Surface Layer Coherent Structures with Large-Eddy Simulations

Optimizing Dual-Doppler Lidar Measurements of Surface Layer Coherent Structures with Large-Eddy Simulations PDF Author: Stawiarski, Christina
Publisher: KIT Scientific Publishing
ISBN: 373150197X
Category : Science
Languages : en
Pages : 262

Book Description
Coherent structures are patterns in the wind field of the atmospheric boundary layer. The deployment of two scanning Doppler lidars facilitates the measurement of the horizontal wind field, but the inherent averaging processes complicate an interpretation of the results. To assess the suitability of this technique for coherent structure detection large-eddy simulations are used as a basis for virtual measurements, and the effects of the lidar technique on the wind field structure are analyzed.

Coherent Doppler Wind Lidars in a Turbulent Atmosphere

Coherent Doppler Wind Lidars in a Turbulent Atmosphere PDF Author: Viktor Banakh
Publisher: Artech House
ISBN: 1608076679
Category : Technology & Engineering
Languages : en
Pages : 277

Book Description
Radiophysical tools for measuring atmospheric dynamics include sodars, Doppler radars, and Doppler lidars. Among these, coherent Doppler lidars (CDLs) have been considered the best for remote measurement of wind turbulence. This is important not only for understanding the exchange processes in the boundary layer, but also in the applied aspect, such as aviation safety. CDLs significantly extend possibilities of experimental investigation of not only wind turbulence, but also coherent structures such as aircraft wake vortices. The authors of this book conducted field tests of the developed methods of lidar measurements of the wind velocity, atmospheric turbulence parameters, and aircraft wake vortices. This valuable resource, containing over 500 equations based on original results from the authors’ work, gives professionals a comprehensive description of the operating principles of continuous wave and pulsed coherent Doppler lidars. This book studies the possibilities of obtaining information about wind turbulence from data measured by continuous wave and pulsed CDLs. The procedures for estimation are described, as well as algorithms for numerical simulation. Results on the vortex behavior and evolution are then presented.

Analysis of Airborne Doppler Lidar, Doppler Radar and Tall Tower Measurements of Atmospheric Flows in Quiescent and Stormy Weather

Analysis of Airborne Doppler Lidar, Doppler Radar and Tall Tower Measurements of Atmospheric Flows in Quiescent and Stormy Weather PDF Author: H. B. Bluestein
Publisher:
ISBN:
Category :
Languages : en
Pages : 184

Book Description


A Comparison of Doppler Lidar, Rawinsonde, and 915-MHz UHF Wind Profiler Measurements of Tropospheric Winds

A Comparison of Doppler Lidar, Rawinsonde, and 915-MHz UHF Wind Profiler Measurements of Tropospheric Winds PDF Author: T. R. Lawrence
Publisher:
ISBN:
Category : Doppler lidar velocimeter
Languages : en
Pages : 98

Book Description


Exploratory Meeting on Airborne Doppler Lidar Wind Velocity Measurements

Exploratory Meeting on Airborne Doppler Lidar Wind Velocity Measurements PDF Author: George H. Fichtl
Publisher:
ISBN:
Category : Aeronautics in meteorology
Languages : en
Pages : 62

Book Description


Analysis of Doppler Lidar Data Acquired During the Pentagon Shield Field Campaign

Analysis of Doppler Lidar Data Acquired During the Pentagon Shield Field Campaign PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Observations from two coherent Doppler lidars deployed during the Pentagon Shield field campaign are analyzed in conjunction with other sensors to characterize the overall boundary-layer structure, and identify the dominant flow characteristics during the entire two-week field campaign. Convective boundary layer (CBL) heights and cloud base heights (CBH) are estimated from an analysis of the lidar signal-to-noise-ratio (SNR), and mean wind profiles are computed using a modified velocity-azimuth-display (VAD) algorithm. Three-dimensional wind field retrievals are computed from coordinated overlapping volume scans, and the results are analyzed by visualizing the flow in horizontal and vertical cross sections. The VAD winds show that southerly flows dominate during the two-week field campaign. Low-level jets (LLJ) were evident on all but two of the nights during the field campaign. The LLJs tended to form a couple hours after sunset and reach maximum strength between 03 and 07 UTC. The surface friction velocities show distinct local maxima during four nights when strong LLJs formed. Estimates of the convective boundary layer height and residual layer height are obtained through an analysis of the vertical gradient of the lidar signal-to-noise-ratio (SNR). Strong minimum in the SNR gradient often develops just above the surface after sunrise. This minimum is associated with the developing CBL, and increases rapidly during the early portion of the daytime period. On several days, this minimum continues to increase until about sunset. Secondary minima in the SNR gradient were also observed at higher altitudes, and are believed to be remnants of the CBL height from previous days, i.e. the residual layer height. The dual-Doppler analysis technique used in this study makes use of hourly averaged radial velocity data to produce three-dimensional grids of the horizontal velocity components, and the horizontal velocity variance. Visualization of horizontal and vertical cross sections of the dual-Doppler wind retrievals often indicated a jet-like flow feature over the Potomac River under southerly flow conditions. This linear flow feature is roughly aligned with the Potomac River corridor to the south of the confluence with the Anatostia River, and is most apparent at low levels (i.e. below 1̃50 m MSL). It is believed that this flow arises due to reduced drag over the water surface and when the large scale flow aligns with the Potomac River corridor. A so-called area-constrained VAD analysis generally confirmed the observations from the dual-Doppler analysis. When the large scale flow is southerly, wind speeds over the Potomac River are consistently larger than the at a site just to the west of the river for altitudes less than 100 m MSL. Above this level, the trend is somewhat less obvious. The data suggest that the depth of the wind speed maximum may be reduced by strong directional shear aloft.