Her scientific interests lie mostly in Simulation, Thermal comfort, Aerogel, Waste management and Glazing. The concepts of her Simulation study are interwoven with issues in Artificial neural network, Control and Reliability engineering. Her work carried out in the field of Thermal comfort brings together such families of science as Experimental data and Relative humidity.
Cinzia Buratti combines subjects such as Thermal conductivity, Daylighting and Optics with her study of Aerogel. Her Waste management research incorporates themes from Combustibility, Manure and Analytical chemistry. Her Composite material study combines topics from a wide range of disciplines, such as Thermal transmittance, Transmittance and Thermal.
Cinzia Buratti mainly investigates Thermal, Composite material, Waste management, Aerogel and Glazing. Her Thermal research includes themes of Mechanical engineering, Hot box, Computational fluid dynamics and Experimental data. Her Composite material study focuses mostly on Thermal conductivity and Thermal insulation.
Her work on Biogas as part of general Waste management research is often related to Life-cycle assessment and Renewable heat, thus linking different fields of science. Her studies in Aerogel integrate themes in fields like Rendering and Attenuation coefficient, Optics. Cinzia Buratti focuses mostly in the field of Glazing, narrowing it down to matters related to Thermal transmittance and, in some cases, Structural engineering.
Her primary areas of investigation include Composite material, Thermal, Aerogel, Glazing and Characterization. Cinzia Buratti has researched Thermal in several fields, including Brightness, Thermal energy, Daylight and Agricultural waste. Her research in Aerogel intersects with topics in Field, Zero-energy building, Attenuation coefficient, Transmission loss and Rendering.
She has included themes like Transmittance, Fully developed, Illuminance, Process engineering and Reliability in her Glazing study. Her Transmittance research is multidisciplinary, incorporating elements of Integrating sphere, Granule and Pilot scale. Her Illuminance research is multidisciplinary, relying on both Energy performance, Roof, Opacity, Thermal insulation and Acoustic insulation.
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Glazing systems with silica aerogel for energy savings in buildings
C. Buratti;E. Moretti.
Applied Energy (2012)
Biogas production from different substrates in an experimental Continuously Stirred Tank Reactor anaerobic digester.
Francesco Fantozzi;Cinzia Buratti.
Bioresource Technology (2009)
Experimental performance evaluation of aerogel glazing systems
C. Buratti;E. Moretti.
Applied Energy (2012)
Adaptive analysis of thermal comfort in university classrooms: Correlation between experimental data and mathematical models
Cinzia Buratti;Paola Ricciardi.
Building and Environment (2009)
Life cycle assessment of biomass chains: Wood pellet from short rotation coppice using data measured on a real plant
Francesco Fantozzi;Cinzia Buratti.
Biomass & Bioenergy (2010)
Diagnosis of internal combustion engine through vibration and acoustic pressure non-intrusive measurements
Linda Barelli;Gianni Bidini;Cinzia Buratti;Rita Mariani.
Applied Thermal Engineering (2009)
Environmental quality of university classrooms: Subjective and objective evaluation of the thermal, acoustic, and lighting comfort conditions
Paola Ricciardi;Cinzia Buratti.
Building and Environment (2018)
Unsteady simulation of energy performance and thermal comfort in non-residential buildings
Cinzia Buratti;Elisa Moretti;Elisa Belloni;Franco Cotana.
Building and Environment (2013)
HVAC systems testing and check: A simplified model to predict thermal comfort conditions in moderate environments
C. Buratti;Paola Ricciardi;M. Vergoni.
Applied Energy (2013)
Development of Innovative Aerogel Based Plasters: Preliminary Thermal and Acoustic Performance Evaluation
Cinzia Buratti;Elisa Moretti;Elisa Belloni;Fabrizio Agosti.
Sustainability (2014)
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