000 03716nam a2200409 4500
005 20260817162926.0
008 290998s1993 th r 0000|0 eng d
035 _a.b10088386
099 9 _aAIT Thesis no. ET-93-27
100 1 _aBalaka, Ridway
245 1 0 _aApplication of new wall, window, and lighting technology to a case study building
260 _aBangkok :
_bAsian Institute of Technology,
_c1993
300 _a66 leaves :
_bill.
490 1 _aThesis ;
_vno. ET-93-27
502 _aThesis (M.Eng.) - Asian Institute of Technology, 1993
500 _aA thesis submitted in partial fulfillment of the requirement for the degree of Master of Engineering.
520 _aAn efficient building design involves not only functional aspects with respect to structural and space utilization but also environmental aspects and energy considerations. The use of energy in the building can be optimized through a proper choice of the building components and a proper design of the building construction. This thesis work is focused on the building envelope in connection with the energy saving on the cooling load of the air-conditioning system and energy saving on the lighting system. The energy efficiency in lighting system in Thai Airways Building can be improved through the changing of luminaire system, through the proper design on illuminance distribution by employing task lighting concept, and through the use of daylighting. The use of coated glazing in Thai Airways Building can be improved if all of them are changed to be single clear glazing with the range of window to wall ratio between 0.1 and 0.275. The rest of the area of the window which is beyond the range of wwr used can be attached false wall (back up wall). The clear single glazing is the best energy performance at the range of wwr between 0.1 to 0.275. At the WWR greater than 0.3, Low-E glazing is the best performer in terms of energy savmg. The Low-E glazing has been proved as the best performance glazing in terms of total electric for cooling and lighting, however,the economic aspect has to be carefully weighted between infestation cost for installation and the energy saving cost. The C-B-F-G wall configuration has the best performance in terms of solar heat conduction while B-A-G has a very close performance to C-B-F-G configuration. However, the use of B-A-G configuration will be much more advantageous if the economic consideration is emphasized. The optimum WWR of these opaque wall is in between 0.1 and 0.2.
650 0 _aLighting
700 0 _aSurapong Chiraratananon,
_eChairperson
700 1 _aG.V. Dang,
_eExamination committee
700 0 _aSupachart C.,
_eExamination committee
710 2 _aEastern Indonesia University Development project (EIUDPCIDA),
_eScholarship donor
810 2 _aAsian Institute of Technology.
_tThesis ;
_vno. ET-93-27
856 _3Full-Text
_uhttp://203.159.5.9/ait-thesis/detail.php?q=B16270
907 _a.b10088386
_bmnait
_cx
902 _a240410
998 _b2
_c951012
_dm
_ea
_fx
_g0
945 _lmnait
945 _lmnait
945 _lmnarc
942 _c20
942 _c40
909 _aBarcode : 30050003107108
_bCREATED : 1994-05-16
_cRECORD # : i10094222
_dLPATRON : 0
_eLCHKIN : -
_f# RENEWALS : 0
_g# OVERDUE : 0
_hIUSE3 : 0
_iTOT CHKOUT : 0
_jTOT RENEW : 0
909 _aBarcode : 30050004390976
_bCREATED : 1994-05-16
_cRECORD # : i10094234
_dLPATRON : 1016614
_eLCHKIN : 2004-08-19
_f# RENEWALS : 0
_g# OVERDUE : 0
_hIUSE3 : 0
_iTOT CHKOUT : 1
_jTOT RENEW : 8
909 _aBarcode : 30050120367346
_bCREATED : 2016-06-13
_cRECORD # : i13033116
_dLPATRON : 0
_eLCHKIN : -
_f# RENEWALS : 0
_g# OVERDUE : 0
_hIUSE3 : 0
_iTOT CHKOUT : 0
_jTOT RENEW : 0
999 _c6734
_d6734