Ilaria Pigliautile
Biographic Data
| ID | 1895358 |
|---|---|
| NAME | Ilaria Pigliautile |
| GIVEN NAMES | Ilaria |
| FAMILY NAME | Pigliautile |
| SIGNATURE | PIGLIAUTILE I |
| AFFILIATIONS | University of Perugia |
| ORCID | 0000-0003-3128-4627 |
| VERIFIED | Yes |
| TOTAL WORKS | 10 |
| TOTAL CITATIONS | 2 |
| AUTHOR COUNT | 9 |
| EDITOR COUNT | 1 |
| FIRST PUBLICATION YEAR | 2017 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 1 |
Sustainable Strategies in Architecture, Urbanism and Beyond
A novel pedestrian-level approach for estimating urban storage heat flux using wearable sensing and modeling
The rapid escalation of urban heat stress necessitates more comprehensive approaches to monitoring urban thermal dynamics. This study presents a novel methodology to estimate the urban storage heat flux (ΔQs) at the pedestrian level using the Thermal Variability Scheme (TVS), a key scale for improving human wellbeing in cities. The method integrates wearable environmental monitoring with weather station data to generate high-resolution forcing in…
Multisensory Urban Climate Zones (Mucz): A Framework for Mapping Dynamic Multidomain Human Comfort in Complex Urban Fabrics beyond Urban Morphology
Investigating the relationship between spatial morphology, meteorological factors, and elderly people well-being in a traditional algerian village
A perspective on managing cities and citizens' well-being through smart sensing data
Bridging the gap from test rooms to field-tests for human indoor comfort studies: A critical review of the sustainability potential of living laboratories
Microclimate mitigation for enhancing energy and environmental performance of Near Zero Energy Settlements in Italy
On an innovative approach for microclimate enhancement and retrofit of historic buildings and artworks preservation by means of innovative thin envelope materials
Outdoor comfort conditions in urban areas: On citizens’ perspective about microclimate mitigation of urban transit areas
Microclimate and air quality investigation in historic hilly urban areas: Experimental and numerical investigation in central Italy
Microclimate and air quality investigation in historic hilly urban areas: Experimental and numerical investigation in central Italy
Outdoor comfort conditions in urban areas: On citizens’ perspective about microclimate mitigation of urban transit areas
On an innovative approach for microclimate enhancement and retrofit of historic buildings and artworks preservation by means of innovative thin envelope materials
Microclimate mitigation for enhancing energy and environmental performance of Near Zero Energy Settlements in Italy
Bridging the gap from test rooms to field-tests for human indoor comfort studies: A critical review of the sustainability potential of living laboratories
A perspective on managing cities and citizens' well-being through smart sensing data
Multisensory Urban Climate Zones (Mucz): A Framework for Mapping Dynamic Multidomain Human Comfort in Complex Urban Fabrics beyond Urban Morphology
Investigating the relationship between spatial morphology, meteorological factors, and elderly people well-being in a traditional algerian village
Sustainable Strategies in Architecture, Urbanism and Beyond
A novel pedestrian-level approach for estimating urban storage heat flux using wearable sensing and modeling
The rapid escalation of urban heat stress necessitates more comprehensive approaches to monitoring urban thermal dynamics. This study presents a novel methodology to estimate the urban storage heat flux (ΔQs) at the pedestrian level using the Thermal Variability Scheme (TVS), a key scale for improving human wellbeing in cities. The method integrates wearable environmental monitoring with weather station data to generate high-resolution forcing in…
Geography (8 works) · Engineering (7 works) · Urban Heat Island Mitigation (6 works) · Building Energy and Comfort Optimization (5 works) · Environmental Science (5 works) · Architectural engineering (4 works) · Civil engineering (4 works) · Meteorology (4 works) · Microclimate (4 works) · Thermal comfort (4 works)