Dusan Licina
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Dusan Licinacomputer-science Degrees
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Computer Science
Dusan Licina's Degrees
- PhD Computer Science University of Belgrade
- Masters Computer Science University of Belgrade
- Bachelors Computer Science University of Belgrade
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Why Is Dusan Licina Influential?
(Suggest an Edit or Addition)According to Wikipedia, Dusan Licina is an engineer and researcher specializing in indoor air quality, building ventilation, and human exposure. He is a professor at EPFL and head of the Human-Oriented Built Environment Laboratory.
Dusan Licina's Published Works
Published Works
- Experimental investigation of the human convective boundary layer in a quiescent indoor environment (2014) (116)
- Human convective boundary layer and its interaction with room ventilation flow. (2015) (84)
- Human convection flow in spaces with and without ventilation: personal exposure to floor-released particles and cough-released droplets. (2015) (66)
- Emission rates and the personal cloud effect associated with particle release from the perihuman environment (2017) (59)
- Clothing-Mediated Exposures to Chemicals and Particles. (2019) (55)
- Inhalation intake fraction of particulate matter from localized indoor emissions (2017) (45)
- Effectiveness of a personalized ventilation system in reducing personal exposure against directly released simulated cough droplets. (2015) (43)
- Performance assessment of low-cost environmental monitors and single sensors under variable indoor air quality and thermal conditions (2021) (38)
- Energy, indoor air quality, occupant behavior, self-reported symptoms and satisfaction in energy-efficient dwellings in Switzerland (2020) (37)
- Clothing as a transport vector for airborne particles: Chamber study (2018) (32)
- Transport of gaseous pollutants by convective boundary layer around a human body (2015) (32)
- Energy and water conservation from air handling unit condensate in hot and humid climates (2012) (29)
- Personal CO2 cloud: laboratory measurements of metabolic CO2 inhalation zone concentration and dispersion in a typical office desk setting (2019) (28)
- The Indoor Chemical Human Emissions and Reactivity project (ICHEAR): Overview of experimental methodology and preliminary results. (2020) (27)
- Air temperature investigation in microenvironment around a human body (2015) (26)
- Concentrations and Sources of Airborne Particles in a Neonatal Intensive Care Unit (2016) (24)
- Radon Investigation in 650 Energy Efficient Dwellings in Western Switzerland: Impact of Energy Renovation and Building Characteristics (2019) (20)
- Volatile organic compounds in 169 energy‐efficient dwellings in Switzerland (2020) (19)
- Test rooms to study human comfort in buildings: A review of controlled experiments and facilities (2021) (16)
- Emissions of volatile organic compounds from interior materials of vehicles (2020) (14)
- Occupant satisfaction with indoor environmental quality, sick building syndrome (SBS) symptoms and self-reported productivity before and after relocation into WELL-certified office buildings (2021) (13)
- Development of indoor environmental quality index using a low-cost monitoring platform (2021) (13)
- Human Emissions of Size-Resolved Fluorescent Aerosol Particles: Influence of Personal and Environmental Factors. (2020) (12)
- Use of IoT sensing and occupant surveys for determining the resilience of buildings to forest fire generated PM2.5 (2019) (10)
- Renewable energy sources and energy efficiency for building's greening: From traditional village houses via high-rise residential building's BPS and RES powered co- and tri-generation towards net ZEBuildings and Cities (2011) (10)
- Indoor air quality investigation before and after relocation to WELL-certified office buildings (2021) (10)
- Occupant health & well-being in green buildings: Trends and Future Directions (2019) (8)
- Parametric Analysis and Thermodynamic Limits of Solar Assisted Geothermal Co- And Tri-Generation Systems (2011) (8)
- Pilot study of sources and concentrations of size-resolved airborne particles in a neonatal intensive care unit (2016) (8)
- Particle release and transport from human skin and clothing: A CFD modeling methodology. (2021) (6)
- Fungal Contaminants in Energy Efficient Dwellings: Impact of Ventilation Type and Level of Urbanization (2020) (6)
- Ozone Initiates Human-Derived Emission of Nanocluster Aerosols. (2021) (5)
- Airflow characteristics and pollution distribution around a thermal manikin - Impact of specific personal and indoor environmental factors (2016) (4)
- The future of IEQ in green building certifications (2021) (3)
- Size-resolved total particle and fluorescent biological aerosol particle emissions from clothing (2016) (3)
- Human convective boundary layer and its impact on personal exposure (2015) (3)
- Longitudinal assessment of personal air pollution clouds in ten home and office environments. (2022) (3)
- Transformational IoT sensing for air pollution and thermal exposures (2022) (3)
- Interaction of convective flow generated by human body with room ventilation flow: impact on transport of pollution to the breathing zone (2014) (2)
- A multi-domain data collection strategy for capturing relationships between occupant behaviour, comfort, indoor environment, and energy use in offices (2020) (2)
- Transport of gaseous pollutants around a human body in quiescent indoor environment (2014) (2)
- Integration of Indoor Air Quality Prediction into Healthy Building Design (2022) (2)
- Pilot Study of Sources and Concentrations of Size-Resolved 3 Airborne Particles in a Neonatal Intensive Care Unit [pre-published as manuscript in progress] (2016) (1)
- Outdoor PM2.5 air filtration: optimising indoor air quality and energy (2022) (1)
- Experimental investigation of inhalation intake fraction from localized indoor particle sources (2017) (1)
- Role of Clothing in Exposure to Indoor Pollutants (2021) (1)
- Proxy methods for detection of inhalation exposure in simulated office environments. (2022) (1)
- Environmental preferences of occupants: A multi-domain approach in the Swiss open office case study (2021) (0)
- Adequacy of Stationary Measurements as Proxies for Residential Personal Exposure to Gaseous and Particle Air Pollutants (2023) (0)
- Correction: Use of IoT sensing and occupant surveys for determining the resilience of buildings to forest fire generated PM2.5 (2019) (0)
- The Indoor Chemical Human Emissions and Reactivity Project (ICHEAR): Methods (2019) (0)
- The Impact of Real-Time Air Quality Awareness on Occupant Behavior in Student Dwellings (2023) (0)
- Lawrence Berkeley National Laboratory Recent Work Title Performance assessment of low-cost environmental monitors and single sensors under variable indoor air quality and thermal conditions Permalink (2020) (0)
- Personal exposure to cough released droplets in quiescent environment and ventilated spaces (2014) (0)
- Why has the COVID‐19 pandemic generated such global interest from the engineering community? (2022) (0)
- Air handling unit condensate in tropical and subtropical climates - Why waste down the drain? (2012) (0)
- Special Issue Editorial: Green Buildings and Indoor Air Quality (2020) (0)
- TRIGGERS BEHIND HUMAN-BUILDING INTERACTIONS FROM A USER PERSPECTIVE: RESULTS AND EFFECTIVENESS OF CAPTURING MOTIVATIONS IN REAL-TIME (2021) (0)
- Influence of outdoor air pollution on European residential ventilative cooling potential (2023) (0)
- Comparing thermal performance of standard humanitarian tents (2022) (0)
- Human personal air pollution clouds in a naturally ventilated office during the COVID-19 pandemic (2023) (0)
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