Application of a microscale meteorological model for studying the airflow pattern above the airport runway
Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mehanika, no. 5 (2013), pp. 91-101 Cet article a éte moissonné depuis la source Math-Net.Ru

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A micro-scale meteorological model has been developed for calculating wind conditions in the vicinity of an airport with buildings of different floor numbers, vegetation, and heterogeneity of the underlying surface. The modeling results will help to determine the airflow structure around weather station sites with the aim to preliminarily estimate the effect of airport buildings on measurements quality, as well as to identify near-surface wind shear affecting aircrafts during takeoff or landing.
Keywords: atmospheric boundary layer, wind shear, turbulence modeling.
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A. V. Starchenko; E. A. Danilkin; R. B. Nuterman; M. V. Terenteva. Application of a microscale meteorological model for studying the airflow pattern above the airport runway. Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mehanika, no. 5 (2013), pp. 91-101. http://geodesic.mathdoc.fr/item/VTGU_2013_5_a10/

[1] Rukovodstvo po sdvigu vetra na malykh vysotakh, Tsirkulyar IKAO No 449-AN /9817, IKAO, Monreal, 2005, 258 pp.

[2] Isaev S. A., Belousova L. Yu., Baranov P. A., “Chislennyi analiz vetrovogo rezhima v okrestnosti aeroporta Pulkovo”, IFZh, 72:4 (1999), 672–678

[3] Babaskin V. V., Isaev S. A., Metov Kh. T., Chepiga V. E., “Sistema preduprezhdeniya opasnogo vliyaniya sdviga vetra”, Obscherossiiskii nauchno-tekhnicheskii zhurnal “Polet”, 2000, no. 8, 10–16

[4] Vyshinskii V. V., Sudakov G. G., “Vikhrevoi sled samoleta i voprosy bezopasnosti poletov”, Trudy MFTI, 1:3 (2009), 78–93

[5] Cheung J. O. P., Chan P. W., Leung D. Y. C., “Large-eddy simulation of the wind flow across a terminal building on the airfield”, Int. J. Earth Sciences and Engineering, 04 (2011), 486–489

[6] Nieuwpoort A. M. H., Gooden J. H. M., de Prins J. L., Wind criteria due to obstacles at and around airports, National Aerospace Laboratory NLR, 2010, NLR-TP-2010-312

[7] Katul G. G., Albertson J. D., “An investigation of high-order closure models for a forested canopy”, Boundary-Layer Meteorology, 89 (1998), 47–74 | DOI

[8] Nuterman R. B., Starchenko A. V., Baklanov A. A., “Modelirovanie aerodinamiki i rasprostraneniya vybrosov ot avtotransporta v gorodskom podsloe”, Matematicheskoe modelirovanie, 22:4 (2010), 3–22 | Zbl

[9] Launder B. E., Spalding D. B., “The numerical computation of turbulent flows”, Computational Methods in Applied Mechanics and Engineering, 3:2 (1974), 269–289 | DOI | Zbl

[10] Starchenko A. V., “Chislennoe issledovanie lokalnykh atmosfernykh protsessov”, Vychislitelnye tekhnologii, 10 (2005), 81–89

[11] Starchenko A. V., Degi D. V., “Chislennoe modelirovanie lokalnykh atmosfernykh protsessov c ispolzovaniem mnogoprotsessornykh vychislitelnykh sistem”, Nauchnyi servis v seti Internet: poisk novykh reshenii, Trudy Mezhdunarodnoi superkompyuternoi konferentsii (17–22 sentyabrya 2012 g., g. Novorossiisk), Izd-vo MGU, M., 2012, 536–541

[12] Van Leer B., “Towards the ultimate conervative difference scheme. II. Monotonicity and conservation combined in a second order scheme”, J. Computational Physics, 14 (1974), 361–370 | DOI | Zbl

[13] Ilin V. P., Metody nepolnoi faktorizatsii dlya resheniya algebraicheskikh sistem, Fizmatlit, M., 1995, 288 pp. | MR

[14] Nuterman R. B., Starchenko A. V., Baklanov A. A., “Razrabotka i analiz mikromasshtabnoi meteorologicheskoi modeli dlya issledovaniya techenii vozdushnykh mass v gorodskoi zastroike”, Vychislitelnye tekhnologii, 13:3 (2008), 37–43