385 - 392 |
Solar energy systems installed on Chinese-style buildings Johnston D |
393 - 403 |
Energy performance assessment of existing dwellings Poel B, van Cruchten G, Balaras CA |
404 - 415 |
Energy conservation in small enterprises Markis T, Paravantis JA |
416 - 426 |
A simulation of the energy consumption monitoring in Mediterranean hotels Application in Greece Karagiorgas M, Tsoutsos T, Moia-Pol A |
427 - 436 |
Computer modeling of displacement ventilation systems based on plume rise in stratified environment Lee CK, Lam HN |
437 - 444 |
Optimal, chiller loading by evolution strategy for saving energy Chang YC |
445 - 453 |
A simplified thermal model to support analysis of urban resource flows Kampf JH, Robinson D |
454 - 470 |
HVAC and indoor thermal conditions in hospital operating rooms Balaras CA, Dascalaki E, Gaglia A |
471 - 477 |
Optimization of energy consumption in buildings with hydronic heating systems considering thermal comfort by use of computer-based tools Djuric N, Novakovic V, Holst J, Mitrovic Z |
478 - 487 |
Improvement of a measurement system for solar heat gain through fenestrations Marinoski DL, Guths S, Pereira FOR, Lamberts R |
488 - 494 |
Effects of energy and carbon taxes on building material competitiveness Sathre R, Gustavsson L |
495 - 503 |
Energy-use information transfer for intelligent homes: Enabling energy conservation with central and local displays Wood G, Newborough M |
504 - 505 |
A comment on "A multicriteria lifespan energy efficiency approach to intelligent building assessment" Wong KC, So A, Leung A |
506 - 507 |
The closure of "A multicriteria lifespan energy efficiency approach to intelligent building assessment" Chen Z, Clements-Croome DJ, Hong J, Li H, Xu Q |