#WEUNITUS

Mauro Scungio

MAURO SCUNGIO

MAURO SCUNGIO

Professore Associato

  • Erasmus+ coordinator for DEIM department
  • Coordinator of the Master Degree Program in Mechanical Engineering
  • DEIM representative for the University Language Centre
  • Department

    DEIM - DIPARTIMENTO DI ECONOMIA, INGEGNERIA, SOCIETA' E IMPRESA

  • Email

    mauro.scungio@unitus.it

  • Social Profiles

  • Curriculum

  • Profile

    • Bio
    • Mauro Scungio is an Associate Professor at the University of Tuscia in Viterbo, in the scientific-disciplinary sector IIND-07/A, Thermal Engineering and Industrial Energy Systems. He earned his Ph.D. in Civil Engineering and his Master's degree in Mechanical Engineering from the University of Cassino. With an H-index of 18 and over 40 scientific publications, his main research topics include numerical thermo-fluid dynamics (CFD), energy conversion and savings, monitoring atmospheric agents, and simulation of pollutant dispersion. He is responsible for several courses, including Applied Physics and Numerical Thermo-Fluid Dynamics, and collaborates with academic and industrial partners on advanced research projects in the energy and environmental sectors.

    • Keywords
      • Numerical Thermo-Fluid Dynamics (CFD)
      • Energy Conversion
      • Fluid Dynamics
      • Aerosol Monitoring
      • Air Pollution Control
      • Industrial Thermal Engineering
    • Discliplinary scientific field
    • ING-IND/10 FISICA TECNICA INDUSTRIALE

    • Research fields
      • Computational thermo fluid dynamics
      • Atmospheric agents monitoring
      • Numerical simulation of atmospheric pollutant dispersion
      • Development of energy conversion systems
  • Scientific research

    • Research Projects
      • Prizes and Awards
        • PhD Students
          • Research Fellows
            • Scholars
              • Editorial Boards
              • Principal Publications

                • Publications
                  • Determining the filtration effectiveness of non-standard respiratory protective devices by an ad-hoc laboratory methodology

                    Scungio, M.; Parlani, G. | Atmospheric Environment - 2023/302

                  • Characterization of the bioaerosol in a natural thermal cave and assessment of the risk of transmission of SARS-CoV-2 virus

                    Scungio, M.; Crognale, S., Lelli, D., Carota, E., Calabrò, G. | Environmental Geochemistry and health - 2022/44-7

                  • Influence of methodology on the estimation of the particle surface area dose received by a population in all-day activities

                    Scungio, M.; Rizza, V.; Stabile, L.; Morawska, L.; Buonanno, G. | Environmental Pollution - 2020/266

                  • Characterization of airborne particles emitted by an electrically heated tobacco smoking system

                    Pacitto, A.; Stabile, L.; Scungio, M.; Rizza, V.; Buonanno, G. | Environmental Pollution - 2018/240

                  • Numerical performance assessment of an innovative Darrieus-style vertical axis wind turbine with auxiliary straight blades

                    Arpino, F.; Scungio, M.; Cortellessa, G. | Energy Conversion and Management - 2018/171

                  • Simulations of aerosol filtration by vegetation: Validation of existing models with available lab data and application to near-roadway scenario

                    Neft, I.; Scungio, M.; Culver, N.; Singh, S. | Aerosol Science and Technology - 2016/50-9

                  • Wind tunnel testing of scaled models of a newly developed Darrieus-style vertical axis wind turbine with auxiliary straight blades

                    Scungio, M.; Arpino, F.; Focanti, V.; Profili, M.; Rotondi, M. | Energy Conversion and Management - 2016/130

                  • Ultrafine particle emission from incinerators: The role of the fabric filter

                    Buonanno, G.; Scungio, M.; Stabile, L.; Tirler, W. | Journal of the Air & Waste Management Association - 2012/62-1

                  • Numerical simulation of ultrafine particle dispersion in urban street canyons with the Spalart-Allmaras turbulence model

                    Scungio, M.; Arpino, F.; Stabile, L.; Buonanno, G. | Aerosol Air Quality Research - 2013/13

              • Third Mission

                • Third Mission
                • Didattica

                  • Ricevimento
                  • <p>The days and times for office hours are arranged via email</p>
                  • Insegnamenti
                  • SUBJECTS
                    TECHINICAL PHISICS -
                    NUMERICAL THERMO-FLUID DYNAMICS -
                    APPLIED PHYSICS AND THERMOTECHNICAL SYSTEMS -
                    APPLIED PHYSICS AND THERMOTECHNICAL SYSTEMS -
                    LABORATORY OF INDOOR ENVIRONMENTAL COMFORT AND SALUBRITY -