Have a personal or library account? Click to login
Impact of Built-up Areas Surrounding the International Baghdad Airport on Aviation Meteorology Cover

Impact of Built-up Areas Surrounding the International Baghdad Airport on Aviation Meteorology

Open Access
|Sep 2023

References

  1. AL-ANI M.A.I. 2021. The efficiency of vertical housing complexes in the city of Baghdad and ways to develop them for the period 2003–2020. Baghdad: College of Art, Iraqi University.
  2. ALI A.K. Al RAMAHI F.K. 2020. A study of the effect of urbanization on annual evaporation rates in Baghdad city using remote sensing. Iraqi Journal of Science, 2142–2149.
  3. ALI Z.R., MUHAMEED A.S. 2016. The study of temporal change on land cover/land use prevailing in Baghdad governorate using RS & GIS. The Iraqi Journal of Agricultural Sciences, 47, 3: 846–855.
  4. AL-GHRYBAWI S.R., AL-JIBOORI M.H. 2019. Study of surface heat inversions characteristics around Baghdad station, Scientific Review–Engineering and Environmental Sciences, 28, 4: 610–618. doi: HYPERLINK “https://doi.org/10.22630/PNIKS.2019.28.4.55” https://doi.org/10.22630/PNIKS.2019.28.4.55.
  5. AL-JIBOORI M.H., ABU AL-SHEAR M.J., AHMED M.M. 2020. Impact of land surface changes on air temperatures in Baghdad. Kuwait Journal of Science, 47, 4: 118–126.
  6. AL-SAADI L M., JABER S.H., AL-JIBOORI. M.H. 2020. Variation of urban vegetation cover and its impact on minimum and maximum heat island. Urban Climate 34.
  7. ASGARIAN A., AMIRI, B.J., SAKIEH Y. 2015. Assessing the effect of green cover spatial patterns on urban land surface temperature using landscape metrics approach. Cab Direct 209–222.
  8. CAPA Center for Aviation. 2019. Climate change: its impact on aviation. The time to plan is now. Informa PLC. Retrieved Feb. 4, 2022, from https://centreforaviation.com/analysis/reports/climate-change-its-impact-on-aviation-the-time-to-plan-is-now-454475.
  9. CHAN P.W., LAI K.K., LI Q.S. 2023. Performance of large-eddy simulations for capturing low-level wind shear at the Hong Kong International Airport for a whole wind-shear (spring) season. Atmospheric Dynamics 32, 5: 383–394. doi: 10.1127/metz/2023/1122.
  10. CHAPMAN S. 2017. The impact of urbanization and climate change on urban temperatures: a systematic review. Landscape Ecology 32, 6. doi: HYPERLINK “ https://link.springer.com/article/10.1007/s10980-017-0561-4” \t “_blank” 10.1007/s10980-017-0561-4
  11. CHAPMAN S., WATSON J.E., SALAZAR A., THATCHER M., MCALPINE C.A. 2017. The impact of urbanization and climate change on urban temperatures: a systematic review. Landscape Ecology, 32, 10: 1921–1935. doi: 10.1007/s10980-017-0561-4
  12. CHEVRON. 2006. Aviation Fuels Technical Review. Chevron Corporation.
  13. DOAN P., ODURO C.Y. 2012. OduroPatterns of population growth in peri-urban Accra, Ghana. International Journal of Urban and Regional Research 36, 6: 1306–1325. doi: 10.1111/J.1468-2427.2011.01075.X
  14. DONG W.H., LIU Z., ZHANG L.J., et al. 2014. Assessing heat health risk for sustainability in Beijing's urban heat island. Sustainability 6, 7334–7357.
  15. FEDERAL AVIATION ADMINISTRATION. 2008. Wind Shear. Retrieved from http://FAASafety.gov.
  16. GISGeography 2021. Retrieved from https://gisgeography.com/ndvi-normalized-difference-vegetation-index/
  17. HAHN K.U. 1989. Effect of wind shear on flight safety. Progress in Aerospace Sciences 26, 23: 225–259. doi: 10.1016/0376-0421(89)90004-3
  18. HON K.K., CHAN P.W. 2022. Historical analysis (2001–2019) of low-level wind shear in Xining Airport. Meteorological Applications 29, 2: e2063. doi: 10.1002/met.2063.
  19. INTERNATIONAL CIVIL AVIATION ORGANIZATION. 2005. Manual on Low-Level Wind Shear (1st Ed.).
  20. KEEL. 2000. Aviation Weather Information requirents study. Virginia: National Aeronautics and Space Administration.
  21. KREUZ M., LUCHKOVA T., SCHULTZ. 2017. Effect of restricted airspace on the ATM system. World Conference on Transport Research. Shanghai.
  22. KULSEA G. 2003. Weather and aviation: How does weather affect the safety and operations of airports and aviation and how does FAA work to manage weather-related effects? Environmental Science. Retrieved from https://www.transportation.gov/sites/dot.gov/files/docs/kulesa_Weather_Aviation.pdf
  23. LEHMAN. 1978. Aviation; Safety and Human Factors. National Technical Information Service.
  24. MOBARAKI O., MOHAMMADI J. and ZARRABI A. 2012. Strategy for sustainable urban development: A case study of Urmia city. Greener Journal of Social Sciences 2, 1: 41–49. doi: 10.15580/GJSS.2012.1.GJSS1203
  25. NICOL J., HANG T.P., EDWARD N.G. 2014. Temperature projection in a tropical city using remote sensing and dynamic modeling. Climate Dynamics 42, 11–12: 2921–2929.
  26. RAHNAMA R. ABBASZADEH G.R. 2006. Comparative study and analyzing compactness/Sprawl ratio In the Metropolitan cities of Mashah And Sydney. Journal of Geography and Development, 101–128.
  27. SCHULTZ M., LORENZ S., SCHMITZ R., DELGADO L. 2018. Weather impact on airport performance. Aerospace 5, 4: 1–19. Doi: 10.3390/aerospace5040109
  28. SHIFLETT S.A., LIANG L.L., CRUM S.M., FEYISA G.L., WAND J., JENERETTE G.D. 2016. Variation in the urban vegetation, surface temperature, air temperature nexus. Science of the Total Environment 579: 495–505.
  29. TAWFEEK Y.Q., JASIM F.H., AL-JIBOORI M.H. 2020. A study of canopy urban heat island of Baghdad, Iraq. Asian Journal of Atmospheric Environment 14, 3: 280–288. doi: 10.5572/ajae.2020.14.3 280
  30. TIN S.N., MUTTITANON, W. 2021. Analysis of enhanced built-up and bare land index (EBBI) in the urban area of Yangon. International Journal of Geoinformatics 17, 4: 85–96. doi: 10.52939/ijg.v17i4.1957
  31. WAHAB B.I., NAIF S.S., AL-JIBOORI M.H. 2022. Development of anuual urban heat island in Baghdad under climate change. Journal of Environmental Engineering and Landscape Management 30, 1: 179–187. doi: 10.3846/jeelm.2022.16374
  32. WILSON E.H., HURD J.D., CIVCO D.L., PRISLOE M.P., AMOLD C. 2003. Development of a geospatial model to quantify, describe and map urban growth. Remote Sensing of Environment 86, 3: 275–285. doi: 10.1016/S0034-4257(03)00074-9.
  33. ZEINA T.M., AL-JIBOORI M.H. 2023. Assessing urbanization in the surroundings of International Baghdad Airport using Landsat data. IOP Conference Series: Earth and Environmental Science 1223: 012021. doi: 10.1088/1755-1315/1223/1/012021.
  34. ZHA Y., GAO I., NI S. 2003. Use of normalized difference built-up index in automatically mapping urban areas from TM imagery. International Journal of Remote Sensing 24, 3: 583–594. doi: HYPERLINK “ https://doi.org/10.1080/01431160304987” 10.1080/01431160304987
  35. XU T., NIU W. 2019. A case study of low-level wind shear in Xining Airport. E3S Web of Conference, 131. doi: 10.1051/e3sconf/201913101037.
  36. SUMANOVAC D. 2008. Critical Situations and the Flight Safety System, Promet-Traffic & Transportation 20, 4: 223–229. doi: 10.7307/ptt.v21i4.1005
DOI: https://doi.org/10.2478/oszn-2023-0007 | Journal eISSN: 2353-8589 | Journal ISSN: 1230-7831
Language: English
Page range: 1 - 8
Published on: Sep 30, 2023
Published by: National Research Institute, Institute of Environmental Protection
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year
Related subjects:

© 2023 Monim H. Al-Jiboori, Zeina T. Mohowes, published by National Research Institute, Institute of Environmental Protection
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.