A computer model of human thermoregulation for a wide range of environmental conditions: the passive system D Fiala, KJ Lomas, M Stohrer Journal of Applied Physiology 87 (5), 1957-1972, 1999 | 1081 | 1999 |
Computer prediction of human thermoregulatory and temperature responses to a wide range of environmental conditions D Fiala, KJ Lomas, M Stohrer International journal of biometeorology 45, 143-159, 2001 | 948 | 2001 |
Sensitivity analysis techniques for building thermal simulation programs KJ Lomas, H Eppel Energy and buildings 19 (1), 21-44, 1992 | 521 | 1992 |
The socio-economic, dwelling and appliance related factors affecting electricity consumption in domestic buildings RV Jones, A Fuertes, KJ Lomas Renewable and Sustainable Energy Reviews 43, 901-917, 2015 | 480 | 2015 |
Identifying trends in the use of domestic appliances from household electricity consumption measurements S Firth, K Lomas, A Wright, R Wall Energy and Buildings 40 (5), 926-936, 2008 | 445 | 2008 |
Dynamic simulation of human heat transfer and thermal comfort D Fiala, KJ Lomas, M Stohrer Proc. 12th Int. Conf. on Environmental Ergonomics, ICEE, Piran, Slovenia …, 2007 | 350* | 2007 |
Dynamic simulation of human heat transfer and thermal comfort D Fiala De Montfort University, 1998 | 350 | 1998 |
A simple model of PV system performance and its use in fault detection SK Firth, KJ Lomas, SJ Rees Solar Energy 84 (4), 624-635, 2010 | 330 | 2010 |
Central heating thermostat settings and timing: building demographics M Shipworth, SK Firth, MI Gentry, AJ Wright, DT Shipworth, KJ Lomas Building Research & Information 38 (1), 50-69, 2010 | 317 | 2010 |
Targeting household energy-efficiency measures using sensitivity analysis SK Firth, KJ Lomas, AJ Wright Building Research & Information 38 (1), 25-41, 2010 | 313 | 2010 |
First principles modeling of thermal sensation responses in steady-state and transient conditions D Fiala, KJ Lomas, M Stohrer ASHRAE transactions 109, 179, 2003 | 281 | 2003 |
Overheating in buildings: lessons from research KJ Lomas, SM Porritt Building Research & Information 45 (1-2), 1-18, 2017 | 259 | 2017 |
National survey of summertime temperatures and overheating risk in English homes A Beizaee, KJ Lomas, SK Firth Building and Environment 65, 1-17, 2013 | 239 | 2013 |
Empirical validation of building energy simulation programs KJ Lomas, H Eppel, CJ Martin, DP Bloomfield Energy and Buildings 26 (3), 253-275, 1997 | 238 | 1997 |
A simple model of domestic lighting demand M Stokes, M Rylatt, K Lomas Energy and Buildings 36 (2), 103-116, 2004 | 218 | 2004 |
Thermal comfort standards, measured internal temperatures and thermal resilience to climate change of free-running buildings: a case-study of hospital wards KJ Lomas, R Giridharan Building and Environment 55, 57-72, 2012 | 216 | 2012 |
Architectural design of an advanced naturally ventilated building form KJ Lomas Energy and Buildings 39 (2), 166-181, 2007 | 215 | 2007 |
Summertime temperatures and thermal comfort in UK homes KJ Lomas, T Kane Building Research & Information 41 (3), 259-280, 2013 | 165 | 2013 |
Determinants of high electrical energy demand in UK homes: Socio-economic and dwelling characteristics RV Jones, KJ Lomas Energy and Buildings 101, 24-34, 2015 | 156 | 2015 |
Resilience of naturally ventilated buildings to climate change: Advanced natural ventilation and hospital wards KJ Lomas, Y Ji Energy and Buildings 41 (6), 629-653, 2009 | 152 | 2009 |