TY - JOUR
T1 - Mitigating harmful effects of climate warming on ceiling paintings by ceiling insulation: An evaluation using timed ir imaging and numeric modelling
AU - Kain, G.
AU - Idam, F.
AU - Huber, A.
AU - Mudri, M.
AU - Petutschnigg, A.
AU - Goldsteiner, M.
N1 - Cited By :1
Export Date: 14 December 2023
Correspondence Address: Kain, G.; Department for Forest Products Technology and Timber Construction, Markt 136a, Austria; email: [email protected]
Funding text 1: Funding: This project was funded by Department 4 in Section IV of the Austrian Ministry for Art, Culture, Public Service and Sports and by ICOMOS Austria.
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PY - 2021/12/28
Y1 - 2021/12/28
N2 - Due to climate change, ceiling paintings in many historic buildings are subjected to increasingly high short-term temperature change, resulting in high thermal tension caused by the construction assembly. This article focuses on the combined use of timed IR imaging and numeric modelling to evaluate insulation measures on the upper side of a ceiling to reduce thermal tensions in the painting layers, overheating in summer as well as cooling down in winter. As a model room, the southern splendour stair hall in the Burgtheater Vienna was chosen. Famous ceiling paintings created from 1886 to 1888 by Gustav Klimt and his brother Ernst Klimt can be found on this ceiling. The results show that timed IR imaging is an adequate tool to study the transient thermal behaviour of ceiling paintings which are not accessible to standard sensor measurements. Moreover, it could be shown that the presented measurement technique is well suited to validate a numeric model. The latter was applied to evaluate the potential insulation on the top of the ceiling. It was shown that cooling loads and energy loss in the room underneath can be reduced and most importantly the thermal stress in painting layers is reduced. The findings are relevant as, due to global warming, the current situation in many buildings is worsening. Considering the great intangible cultural value of many ceiling paintings, the application of the presented evaluation strategy for building physical boundaries on a ceiling with paintings seems to be appropriate.
AB - Due to climate change, ceiling paintings in many historic buildings are subjected to increasingly high short-term temperature change, resulting in high thermal tension caused by the construction assembly. This article focuses on the combined use of timed IR imaging and numeric modelling to evaluate insulation measures on the upper side of a ceiling to reduce thermal tensions in the painting layers, overheating in summer as well as cooling down in winter. As a model room, the southern splendour stair hall in the Burgtheater Vienna was chosen. Famous ceiling paintings created from 1886 to 1888 by Gustav Klimt and his brother Ernst Klimt can be found on this ceiling. The results show that timed IR imaging is an adequate tool to study the transient thermal behaviour of ceiling paintings which are not accessible to standard sensor measurements. Moreover, it could be shown that the presented measurement technique is well suited to validate a numeric model. The latter was applied to evaluate the potential insulation on the top of the ceiling. It was shown that cooling loads and energy loss in the room underneath can be reduced and most importantly the thermal stress in painting layers is reduced. The findings are relevant as, due to global warming, the current situation in many buildings is worsening. Considering the great intangible cultural value of many ceiling paintings, the application of the presented evaluation strategy for building physical boundaries on a ceiling with paintings seems to be appropriate.
KW - Ceiling insulation
KW - FE modelling
KW - Infrared thermography
KW - Overheating protection
KW - Secco painting
KW - Simple smart buildings
KW - Thermal tensions
KW - building construction
KW - imaging method
KW - insulation
KW - modeling
KW - sensor
KW - temperature effect
KW - Austria
KW - Vienna
UR - https://www.mendeley.com/catalogue/2d948083-ee54-3add-b040-9c5cb79c5fad/
U2 - 10.3390/su14010308
DO - 10.3390/su14010308
M3 - Article
SN - 2071-1050
VL - 14
JO - Sustainability
JF - Sustainability
IS - 1
ER -