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Dispersion Analysis of Ambient Coarse Particulate Matter

  • Sachin Dhawan,
  • Anand Kumar,
  • Dalip Singh Mehta,
  • Mukesh Khare

摘要

This study uses numerical methods and HYSPLIT trajectory cluster analysis to evaluate the influence of wind speed and mixing height on the dispersive potential of PM10. The analysis reveals a correlation of 0.58 and 0.44 between PM10 concentrations and wind speed and mixing height, respectively. Wind speed and mixing height are decisive parameters in modulating PM10 levels in ambient air. The study highlights that PM10 concentrations decreased by 41.28% in February with wind speeds over 2 m/s and mixing heights below 400 m. Conversely, in April, PM10 concentrations increase by 52.65% due to wind-induced resuspension with wind speeds over 2 m/s and mixing heights above 450 m. The findings of this study underscore wind speed as a crucial factor in reducing PM10 levels during winter, provided the mixing height is sufficiently high, and in increasing PM10 levels during summer due to resuspension effects.