2016
DOI: 10.1016/j.proeng.2016.08.526
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Study of Surface Temperature Monitoring in the Field of Buildings

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Cited by 6 publications
(6 citation statements)
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“…These measurements may prove very beneficial for coming up with a design for the structure, since they may help solve energy efficiency issues and improve protection designs, preventing outer-climate conditions from affecting the indoor temperatures. [11] According to these measurements, the minimum external surface temperature of the east wall is 23,2°C at 06.00 am, and the maximum external surface temperature is 29,8°C which occurs at 12.00 pm, while the minimum internal surface temperature of the east wall is 23°C at 06.00 am and its maximum internal surface temperature is 28,7°C at 1.00 pm. As for the west wall, the value of the minimum external surface temperature is 21°C at 06.00 am and the maximum external surface temperature is 37°C at 3.00 pm, while the minimum internal surface is 20,4°C at 06.00 am and the maximum internal surface temperature is 35,2°C at 5.00 pm.…”
Section: Resultsmentioning
confidence: 87%
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“…These measurements may prove very beneficial for coming up with a design for the structure, since they may help solve energy efficiency issues and improve protection designs, preventing outer-climate conditions from affecting the indoor temperatures. [11] According to these measurements, the minimum external surface temperature of the east wall is 23,2°C at 06.00 am, and the maximum external surface temperature is 29,8°C which occurs at 12.00 pm, while the minimum internal surface temperature of the east wall is 23°C at 06.00 am and its maximum internal surface temperature is 28,7°C at 1.00 pm. As for the west wall, the value of the minimum external surface temperature is 21°C at 06.00 am and the maximum external surface temperature is 37°C at 3.00 pm, while the minimum internal surface is 20,4°C at 06.00 am and the maximum internal surface temperature is 35,2°C at 5.00 pm.…”
Section: Resultsmentioning
confidence: 87%
“…OTTV calculation done upon these two detailed models of the building above uses the approach as seen below: [11] θ= solar gain factor of window glass.…”
Section: Resultsmentioning
confidence: 99%
“…The thermal conditions of building facades are essential parameters for urban environmental analysis. Local microclimates can have significant effects on the surrounding areas and building facades, affecting the thermal environment, air quality, energy consumption, urban heat islands, and external temperatures [57][58][59]. In contemporary constructions with good insulation, building facades tend to deteriorate according to the exterior surface microclimate, as external weather conditions change rapidly within short periods of time [59].…”
Section: Building Surface Temperaturementioning
confidence: 99%
“…Local microclimates can have significant effects on the surrounding areas and building facades, affecting the thermal environment, air quality, energy consumption, urban heat islands, and external temperatures [57][58][59]. In contemporary constructions with good insulation, building facades tend to deteriorate according to the exterior surface microclimate, as external weather conditions change rapidly within short periods of time [59]. Therefore, monitoring surface temperature is a valuable tool for assessing the thermal performance of buildings and implementing them directly or indirectly in virtual simulations [60].…”
Section: Building Surface Temperaturementioning
confidence: 99%
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