Title of article :
VOC level control by ventilation improvement of Flexography printing room using CFD modeling
Author/Authors :
Hadad ، Kamal - Shiraz University , Eidi ، Hamid Reza International Imam Reza University , Mokhtari ، Javad
Abstract :
Using Computational Fluid Dynamics (CFD) technique, the dispersion contours and the exposure rate of Flexographic printing workers to VOCs in a printing department is evaluated. Firstly, VOCs distribution is determined in the printing room due to the existing ventilation system. Through next steps, 4 scenarios for lowering VOCs concentration and its exposure rate to workers are analyzed. Concentration distributions of ethylene glycol (MEG) as a representative of VOCs are determined for 4 scenarios. The results show that, regarding the existing ventilation, the concentration of MEG at the breathing height is 1×105 mg/m^3 and it is higher than the standard permissible level. Finally, the findings of this study lead to lowered VOCs concentrations to 13.87×109 mg/m^3 via changing the ventilation system for the Flexography Printing Room.
Keywords :
CDF , VOCs pollution , Numerical modelling , Turbulence , Flexography printing
Journal title :
Journal of Applied and Computational Mechanics
Journal title :
Journal of Applied and Computational Mechanics