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References
- Crank, J., The Mathematics of Diffusion, Oxford University Press, Oxford, 1975.
- Dodla, V.B.R., Gubbala, C.S., and Desamsetti, S., ”Atmospheric Dispersion of PM2.5 Precursor Gases from Two Major Thermal Power Plants in Andhra Pradesh, India”, Aerosol and Air Quality Research, 17 (2017), 381-393.
- Ermak, D.L., ”An Analytical Model for Air Pollutant Transport and Deposition From A Point Source”, Atmospheric Environment, 11 (1977), 231-237.
- Itahashi, S., ”Air Pollution Modeling: Local, Regional, and Global-Scale Applications”, Atmosphere, 12 (2021), 1-3.
- Mackay, C., McKee S., and Mulholland, J., ”Diffusion and Convection of Gaseous and Fine Particulate From A Chimney”, IMA Journal of Applied Mathematics, 71 (2006), 670-691.
- Seinfeld, J.H., and Pandis, S.N., Atmospheric Chemistry and Physics: From Air Pollution to Climate Change, John Willey and Sons, New York, 1998.
- Sharan, M., Yadav A.K., Singh, M.P., Agarwal, P., and Nigam, S., ”A Mathematical Model for the Dispersion of Air Pollutants in Low Wind Conditions”, Atmospheric Environment, 30 (1996), 1209-1220.
- Smith, R.J., ”Dispersion of Odours from Ground Level Agricultural Sources”, Journal Agricultural Engineering Research, 54 (1993), 187-200.
- Stackgold, I., Boundary Value Problems of Mathematical Physics, Vol II, Macmillan, New York, 1968.
- Stockie, J.M., ”The Mathematics of Atmospheric Dispersion Modeling”, SIAM Review, 53 (2011), 349-372.
- Strauss, W.A., Partial Differential Equations An Introduction, John Wiley and Sons, Inc, 2008.
- Tawinan, E., and Wongkaew, S., ”Modeling and Numerical Experiments of Air Pollution on A Complex Terrain”, Journal of Physics: Conference Series, 1850(2021), 1-11.
- Tayler, A.B., Mathematical Models in Applied Mechanics, Clarendon Press, Oxford, 1986.
- Turner, R., and Hurst, T., ”Factors Influencing Volcanic ash Dispersal from the 1995 and 1996 Eruptions of Mount Ruapehu, New Zeeland”, Journal of Applied Meteorology, 40 (2001), 56-69.
- Zair, F., Mouqallid, M., and Chatri, E., ”The Effect of Straight Chimney Temperature on Pollutant Dispersion”, E3S Web of Conferences, 234 (2021), 1-6
References
Crank, J., The Mathematics of Diffusion, Oxford University Press, Oxford, 1975.
Dodla, V.B.R., Gubbala, C.S., and Desamsetti, S., ”Atmospheric Dispersion of PM2.5 Precursor Gases from Two Major Thermal Power Plants in Andhra Pradesh, India”, Aerosol and Air Quality Research, 17 (2017), 381-393.
Ermak, D.L., ”An Analytical Model for Air Pollutant Transport and Deposition From A Point Source”, Atmospheric Environment, 11 (1977), 231-237.
Itahashi, S., ”Air Pollution Modeling: Local, Regional, and Global-Scale Applications”, Atmosphere, 12 (2021), 1-3.
Mackay, C., McKee S., and Mulholland, J., ”Diffusion and Convection of Gaseous and Fine Particulate From A Chimney”, IMA Journal of Applied Mathematics, 71 (2006), 670-691.
Seinfeld, J.H., and Pandis, S.N., Atmospheric Chemistry and Physics: From Air Pollution to Climate Change, John Willey and Sons, New York, 1998.
Sharan, M., Yadav A.K., Singh, M.P., Agarwal, P., and Nigam, S., ”A Mathematical Model for the Dispersion of Air Pollutants in Low Wind Conditions”, Atmospheric Environment, 30 (1996), 1209-1220.
Smith, R.J., ”Dispersion of Odours from Ground Level Agricultural Sources”, Journal Agricultural Engineering Research, 54 (1993), 187-200.
Stackgold, I., Boundary Value Problems of Mathematical Physics, Vol II, Macmillan, New York, 1968.
Stockie, J.M., ”The Mathematics of Atmospheric Dispersion Modeling”, SIAM Review, 53 (2011), 349-372.
Strauss, W.A., Partial Differential Equations An Introduction, John Wiley and Sons, Inc, 2008.
Tawinan, E., and Wongkaew, S., ”Modeling and Numerical Experiments of Air Pollution on A Complex Terrain”, Journal of Physics: Conference Series, 1850(2021), 1-11.
Tayler, A.B., Mathematical Models in Applied Mechanics, Clarendon Press, Oxford, 1986.
Turner, R., and Hurst, T., ”Factors Influencing Volcanic ash Dispersal from the 1995 and 1996 Eruptions of Mount Ruapehu, New Zeeland”, Journal of Applied Meteorology, 40 (2001), 56-69.
Zair, F., Mouqallid, M., and Chatri, E., ”The Effect of Straight Chimney Temperature on Pollutant Dispersion”, E3S Web of Conferences, 234 (2021), 1-6