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Functionality of openair package in air pollution assessment and modeling — a case study of Krakow Cover

Functionality of openair package in air pollution assessment and modeling — a case study of Krakow

Open Access
|Jun 2017

References

  1. BARNES M.J., BRADE T.K., MACKENZIE A.R., WHYATT J.D., CARRUTHERS D. J., STOCKER J., CAI X., HEWITT C.N. 2014. Spatially-varying surface roughness and ground-level air quality in an operational dispersion model. Environmental Pollution 185: 44-51.10.1016/j.envpol.2013.09.03924212233
  2. BIGI A., BIANCHI F., DE GENNARO, G., DI GILIO A., FERMO P., GHERMANDI G., PRÉVÔTB A.S.H., URBANIE M., VALLIF G., VECCHIF R., PIAZZALUNGA A. 2017. Hourly composition of gas and particle phase pollutants at a central urban background site in Milan, Italy. Atmospheric Research 186: 83-94.10.1016/j.atmosres.2016.10.025
  3. CARSLAW D. 2015. The openair manual open-source tools for analysing air pollution data. Manual for version 1.1-4, King’s College London.10.17159/caj/2014/24/2.7071
  4. CARSLAW D.C., BEEVERS S.D. 2013. Characterising and understanding emission sources using bivariate polar plots and k-means clustering. Environmental Modelling and Software 40: 325-329.10.1016/j.envsoft.2012.09.005
  5. CARSLAW D.C., ROPKINS K. 2012. Openair - an r package for air quality data analysis. Environmental Modelling and Software 27-28: 52-61.10.1016/j.envsoft.2011.09.008
  6. CRILLEY L.R., BLOSS W.J., YIN J., BEDDOWS D.C., HARRISON R.M., ALLAN J.D., YOUNG D.E., FLYNN M., WILLIAMS P., ZOTTER P., PREVOT A.S.H., HEAL M.R., BARLOW J.F., HALIOS C.H., LEE J.D., SZIDAT S., MOHR C., PREVOT A.S. 2015. Sources and contributions of wood smoke during winter in London: Assessing local and regional influences. Atmospheric Chemistry and Physics 15, 6: 3149-3171.
  7. CRILLEY L.R., LUCARELLI F., BLOSS W.J., HARRISON R.M., BEDDOWS D.C., CALZOLAI G., NAVAB S., VALLID G., BERNARDONID V., VECCHI R. 2017. Source apportionment of fine and coarse particles at a roadside and urban background site in London during the 2012 summer ClearfLo campaign. Environmental Pollution 220: 766-778.10.1016/j.envpol.2016.06.00227866854
  8. CZERNECKI B., PÓŁROLNICZAK M., KOLENDOWICZ L., MAROSZ M., KENDZIERSKI S., PILGUJ N. 2016. Influence of the atmospheric conditions on PM10 concentrations in Poznań, Poland. Journal of Atmospheric Chemistry. DOI: 10.1007/s10874-016-9345-5.10.1007/s10874-016-9345-5
  9. GHOSH S., BISWAS J., GUTTIKUNDA S., ROYCHOWDHURY S., NAYAK M. 2015. An investigation of potential regional and local source regions affecting fine particulate matter concentrations in Delhi, India. Journal of the Air and Waste Management Association 65: 218-231.10.1080/10962247.2014.98277225947057
  10. DI GILIO A., DE GENNARO G., DAMBRUOSO P., VENTRELLA G. 2015. An integrated approach using high time-resolved tools to study the origin of aerosols. Science of The Total Environment 530-531: 28-37.10.1016/j.scitotenv.2015.04.07326026406
  11. EEA (European Environment Agency) 2013. EMEP/EEA air pollutant emission inventory guidebook 2013: Technical guidance to prepare national emission inventories.
  12. JANG E., DO W., PARK G., KIM M., YOO E. 2016. Spatial and temporal variation of urban air pollutants and their concentrations in relation to meteorological conditions at four sites in Busan, South Korea. Atmospheric Pollution Research 8(1): 89-100.10.1016/j.apr.2016.07.009
  13. KAKOSIMOS K.E., HERTEL O., KETZEL M., BERKOWICZ R. 2010. Operational Street Pollution Model (OSPM) - a review of performed application and validation studies, and future prospects. Environmental Chemistry 7(6): 485-503.10.1071/EN10070
  14. LEUCHNER M., GHASEMIFARD H., LÜPKE M., RIES L., SCHUNK C., MENZEL A. 2016. Seasonal and diurnal variation of formaldehyde and its meteorological drivers at the GAW site Zugspitze. Aerosol and Air Quality Research 16(3): 801-815.10.4209/aaqr.2015.05.0334
  15. monitoring.krakow.pios.gov.pl - System monitoringu jakości powietrza woj. małopolskiego.
  16. MUNIR S. 2016. Modelling the non-linear association of particulate matter (PM10) with meteorological parameters and other air pollutants - a case study in Makkah. Arabian Journal of Geosciences 9(1): 64.10.1007/s12517-015-2207-7
  17. MUNIR S., HABEEBULLAH T.M., MOHAMMED A.M.F., MORSY E.A., REHAN M., ALI K. 2016. Analysing PM2.5 and its Association with PM10 and Meteorology in the Arid Climate of Makkah, Saudi Arabia. Aerosol and Air Quality Research. DOI: 10.4209/aaqr.2016.03.0117.10.4209/aaqr.2016.03.0117
  18. OLENIACZ R., BOGACKI M., SZULECKA A., RZESZUTEK M., MAZUR M. 2016a. Wpływ prędkości i kierunku wiatru na jakość powietrza w Krakowie. In: INFRAEKO 2016 „Nowoczesne miasta. Infrastruktura i środowisko”. Oficyna Wydawnicza Politechniki Rzeszowskiej, Rzeszów-Kraków, 263-276.
  19. OLENIACZ R., BOGACKI M., SZULECKA A., RZESZUTEK M., MAZUR M. 2016b. Assessing the impact of wind speed and mixing-layer height on air quality in Krakow (Poland) in the years 2014-2015. Journal of Civil Engineering, Environment and Architecture, 33(63, 2/II/16): 315-342.
  20. PATTINSON W., KINGHAM S., LONGLEY I., SALMOND J. 2016. Potential pollution exposure reductions from small-distance bicycle lane separations. Journal of Transport & Health. DOI: 10.1016/j.jth.2016.10.002.10.1016/j.jth.2016.10.002
  21. RZESZUTEK M., BOGACKI M. 2016. Ocena modelu dyspersji zanieczyszczeń powietrza OSPM: studium przypadku, Polska, Kraków. Annual Set The Environment Protection 18: 351-362.
  22. SALVADOR P., ALONSO-PÉREZ S., PEY J., ARTÍÑANO B., DE BUSTOS J.J., ALASTUEY A., QUEROL X. 2014. African dust outbreaks over the western Mediterranean Basin: 11-year characterization of atmospheric circulation patterns and dust source areas. Atmospheric Chemistry and Physics 14(13): 6759-6775.10.5194/acp-14-6759-2014
  23. SCHWEIZER D., CISNEROS R. 2014. Wildland fire management and air quality in the southern Sierra Nevada: Using the Lion Fire as a case study with a multi-year perspective on PM2.5 impacts and fire policy. Journal of Environmental Management 144: 265-278.10.1016/j.jenvman.2014.06.00724973615
  24. SCIRE J.S., ROBE F.R., FERNAU M.E., YAMARTINO R.J. 2000. A User’s Guide for the CALMET Meteorological Model (Version 5), Concord.
  25. SHERIDAN P.J., OGREN J.A., ANDREWS E., HAGEMAN D., SCHMEISSER L., JEFFERSON A., SHARMA S. 2015. A multi-year study of lower tropospheric aerosol variability and systematic relationships from four North American regions. Atmospheric Chemistry and Physics, 15(21): 12487-12517.10.5194/acp-15-12487-2015
  26. STEIN A.F., DRAXLER R.R., ROLPH G.D., STUNDER B.J.B., COHEN M.D., NGAN F. 2015. NOAA’s HYSPLIT atmospheric transport and dispersion modeling system. Bulletin of the American Meteorological Society 96(12): 2059-2077.10.1175/BAMS-D-14-00110.1
  27. STOJIĆ A., STOJIĆ S.S., RELJIN I., ČABARKAPA M., ŠOŠTARIĆ A., PERIŠIĆ M., MIJIĆ Z. 2016. Comprehensive analysis of PM10 in Belgrade urban area on the basis of longterm measurements. Environmental Science and Pollution Research 23(11): 10722-10732.10.1007/s11356-016-6266-426888527
  28. www.openair-project.org - The Openair Project, King’s College London.
DOI: https://doi.org/10.1515/oszn-2017-0009 | Journal eISSN: 2353-8589 | Journal ISSN: 1230-7831
Language: English
Page range: 22 - 27
Published on: Jun 27, 2017
Published by: National Research Institute, Institute of Environmental Protection
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year
Related subjects:

© 2017 Adriana Szulecka, Robert Oleniacz, Mateusz Rzeszutek, published by National Research Institute, Institute of Environmental Protection
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.