High‐resolution simulation of a severe case of low‐level windshear at the Hong Kong International Airport: Turbulence intensity and sensitivity to turbulence parameterization scheme

Abstract Large eddy simulations are performed for a severe windshear case of terrain‐induced airflow disturbances at the Hong Kong International Airport. The objectives of the study include: (i) to investigate the performance of large eddy simulation in capturing the turbulence intensity to be encou...

Full description

Bibliographic Details
Main Authors: Pak Wai Chan, Kai Kwong Lai, Qiu Sheng Li
Format: Article
Language:English
Published: Wiley 2022-07-01
Series:Atmospheric Science Letters
Subjects:
Online Access:https://doi.org/10.1002/asl.1090
_version_ 1828309411441934336
author Pak Wai Chan
Kai Kwong Lai
Qiu Sheng Li
author_facet Pak Wai Chan
Kai Kwong Lai
Qiu Sheng Li
author_sort Pak Wai Chan
collection DOAJ
description Abstract Large eddy simulations are performed for a severe windshear case of terrain‐induced airflow disturbances at the Hong Kong International Airport. The objectives of the study include: (i) to investigate the performance of large eddy simulation in capturing the turbulence intensity to be encountered by the aircraft; and (ii) to find out the impact of the choice of turbulence parameterization scheme on the simulation results. The structure functions of the headwind profiles are calculated, and the simulated velocity and the LIDAR data are found to have similar behavior. The cube root of eddy dissipation rate is also calculated, which is taken to be the metric of turbulence intensity in aviation application. All EDR calculated has similar behavior. They have good correlation, but the best‐fit‐straight‐line of the scatter plot is found to have a slope far away from unity. The reason for this needs to be studied further. Finally, a simulation with the use of Smagorinsky scheme is performed. It is found to have better performance in capturing pilot windshear reports in terms of the relative operating characteristic curve. The use of Smagorinsky scheme alone may be an alternative in the choice of turbulence parameterization scheme in the alerting of windshear using large eddy dissipation, but the computational cost is too expensive. It is important to note that the present results are based on one case only and more cases would need to be studied in order to establish the robustness of the conclusions. More experiments would also need to be conducted, for example, in which nest(s) to use the Smagorinsky scheme.
first_indexed 2024-04-13T15:29:05Z
format Article
id doaj.art-bf44d45491674031b511693716a193ae
institution Directory Open Access Journal
issn 1530-261X
language English
last_indexed 2024-04-13T15:29:05Z
publishDate 2022-07-01
publisher Wiley
record_format Article
series Atmospheric Science Letters
spelling doaj.art-bf44d45491674031b511693716a193ae2022-12-22T02:41:26ZengWileyAtmospheric Science Letters1530-261X2022-07-01237n/an/a10.1002/asl.1090High‐resolution simulation of a severe case of low‐level windshear at the Hong Kong International Airport: Turbulence intensity and sensitivity to turbulence parameterization schemePak Wai Chan0Kai Kwong Lai1Qiu Sheng Li2Hong Kong Observatory Kowloon Hong Kong ChinaHong Kong Observatory Kowloon Hong Kong ChinaCity University of Hong Kong, Tat Chee Avenue Kowloon Hong Kong ChinaAbstract Large eddy simulations are performed for a severe windshear case of terrain‐induced airflow disturbances at the Hong Kong International Airport. The objectives of the study include: (i) to investigate the performance of large eddy simulation in capturing the turbulence intensity to be encountered by the aircraft; and (ii) to find out the impact of the choice of turbulence parameterization scheme on the simulation results. The structure functions of the headwind profiles are calculated, and the simulated velocity and the LIDAR data are found to have similar behavior. The cube root of eddy dissipation rate is also calculated, which is taken to be the metric of turbulence intensity in aviation application. All EDR calculated has similar behavior. They have good correlation, but the best‐fit‐straight‐line of the scatter plot is found to have a slope far away from unity. The reason for this needs to be studied further. Finally, a simulation with the use of Smagorinsky scheme is performed. It is found to have better performance in capturing pilot windshear reports in terms of the relative operating characteristic curve. The use of Smagorinsky scheme alone may be an alternative in the choice of turbulence parameterization scheme in the alerting of windshear using large eddy dissipation, but the computational cost is too expensive. It is important to note that the present results are based on one case only and more cases would need to be studied in order to establish the robustness of the conclusions. More experiments would also need to be conducted, for example, in which nest(s) to use the Smagorinsky scheme.https://doi.org/10.1002/asl.1090analysisfield campaignsforecasting
spellingShingle Pak Wai Chan
Kai Kwong Lai
Qiu Sheng Li
High‐resolution simulation of a severe case of low‐level windshear at the Hong Kong International Airport: Turbulence intensity and sensitivity to turbulence parameterization scheme
Atmospheric Science Letters
analysis
field campaigns
forecasting
title High‐resolution simulation of a severe case of low‐level windshear at the Hong Kong International Airport: Turbulence intensity and sensitivity to turbulence parameterization scheme
title_full High‐resolution simulation of a severe case of low‐level windshear at the Hong Kong International Airport: Turbulence intensity and sensitivity to turbulence parameterization scheme
title_fullStr High‐resolution simulation of a severe case of low‐level windshear at the Hong Kong International Airport: Turbulence intensity and sensitivity to turbulence parameterization scheme
title_full_unstemmed High‐resolution simulation of a severe case of low‐level windshear at the Hong Kong International Airport: Turbulence intensity and sensitivity to turbulence parameterization scheme
title_short High‐resolution simulation of a severe case of low‐level windshear at the Hong Kong International Airport: Turbulence intensity and sensitivity to turbulence parameterization scheme
title_sort high resolution simulation of a severe case of low level windshear at the hong kong international airport turbulence intensity and sensitivity to turbulence parameterization scheme
topic analysis
field campaigns
forecasting
url https://doi.org/10.1002/asl.1090
work_keys_str_mv AT pakwaichan highresolutionsimulationofaseverecaseoflowlevelwindshearatthehongkonginternationalairportturbulenceintensityandsensitivitytoturbulenceparameterizationscheme
AT kaikwonglai highresolutionsimulationofaseverecaseoflowlevelwindshearatthehongkonginternationalairportturbulenceintensityandsensitivitytoturbulenceparameterizationscheme
AT qiushengli highresolutionsimulationofaseverecaseoflowlevelwindshearatthehongkonginternationalairportturbulenceintensityandsensitivitytoturbulenceparameterizationscheme