Area of research
Building and Construction · Health, Toxicology and Mutagenesis
Research interest
Research focused on Environmental science and Infiltration (HVAC), with related work in Overheating (electricity), Ventilation (architecture), Psychological intervention. Notable publications include 'The impact of occupancy patterns, occupant-controlled ventilation and shading on indoor overheating risk in domestic environments', 'Home energy efficiency and radon related risk of lung cancer: modelling study', and 'Health effects of home energy efficiency interventions in England: a modelling study'.
Health effects of home energy efficiency interventions in England: a modelling study
Assessing uncertainty in housing stock infiltration rates and associated heat loss: English and UK case studies
Risk analysis of housing energy efficiency interventions under model uncertainty
The impact of occupancy patterns, occupant-controlled ventilation and shading on indoor overheating risk in domestic environments
Home energy efficiency and radon related risk of lung cancer: modelling study
The relative importance of input weather data for indoor overheating risk assessment in dwellings
Using probabilistic sampling-based sensitivity analyses for indoor air quality modelling
Multi-objective methods for determining optimal ventilation rates in dwellings
The Effect of Party Wall Permeability on Estimations of Infiltration from Air Leakage
Modelling uniformly porous facades to predict dwelling infiltration rates