691 - 697 |
Double skin facade's effects on heat losses of office buildings in Istanbul Yilmaz Z, Cetinta F |
698 - 706 |
Energy efficiency and energy savings in Japanese residential buildings - research methodology and surveyed results Lopes L, Hokoi S, Miura H, Shuhei K |
707 - 724 |
Validation of a FEM-program (frequency-domain) and a simplified RC-model (time-domain) for thermally activated building component systems (TABS) using measurement data Weber T, Johannesson G, Koschenz M, Lehmann B, Baumgartner T |
725 - 738 |
Performance rating of glass windows and glass windows with films in aspect of thermal comfort and heat transmission Chaiyapinunt S, Phueakphongsuriya B, Mongkomsaksit K, Khomporn N |
739 - 746 |
Energy signatures for assessing the energy performance of chillers Yu FW, Chan KT |
747 - 754 |
Energy savings in retrofitted dwellings: economically viable? Verbeeck G, Hens H |
755 - 761 |
Feed-forward in temperature control of buildings Thomas B, Soleimani-Mohseni MS, Fahlen P |
762 - 776 |
Energy consumption and urban texture Ratti C, Baker N, Steemers K |
777 - 786 |
Modelling and control of heat transfer phenomena inside a ventilated air space Desta TZ, Van Brecht A, Quanten S, Van Buggenhout S, Meyers J, Baelmans A, Berckmans D |
787 - 794 |
Numerical study of heat transfer by laminar and turbulent natural convection in tall cavities of facade elements Xaman J, Alvarez G, Lira L, Estrada C |