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Comparative Analysis of the Influence of the Convective Term in the Quantitative Assessment by Infrared Thermography

Identifiers
URI: http://hdl.handle.net/20.500.12251/2953
View/Open: https://doi.org/10.1007/978-981-19-1894-0_5
ISBN: 23662557
DOI: 10.1007/978-981-19-1894-0_5
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Author
Bienvenido Huertas, David; Tejedor Herrán, Blanca; Marín García, David; Durán Álvarez, Joaquín Manuel
Date
2022
Subject/s

Transmitancia térmica

Envolvente de edificio

Consumo energético

Edificación residencial

Termografía infrarroja

Ensayos (propiedades o materiales)

Simulación energética - herramientas

Unesco Subject/s

3305.14 Viviendas

3305.90 Transmisión de Calor en la Edificación

2209.09 Radiación Infrarroja

3311.02 Ingeniería de Control

3311.16 Instrumentos de Medida de la Temperatura

Abstract

Envelope thermal transmittance strongly influences building energy consumption, so there is a significant interest in using methods that assess it accurately. The quantitative infrared thermography method is among the most studied methods to assess thermal transmittance as this method could be used to analyse building envelopes qualitatively and quantitatively. However, its main limitation is the great variety of approaches. Their greater differences are the convective heat transfer coefficient and the place from which the measurement is carried out. This chapter comparatively analyses the experimental results obtained in previous studies. The analysis showed that the approaches from the interior using expressions of adimensional numbers allow accurate characterizations of thermal transmittance to be obtained. © 2022, The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd.

Envelope thermal transmittance strongly influences building energy consumption, so there is a significant interest in using methods that assess it accurately. The quantitative infrared thermography method is among the most studied methods to assess thermal transmittance as this method could be used to analyse building envelopes qualitatively and quantitatively. However, its main limitation is the great variety of approaches. Their greater differences are the convective heat transfer coefficient and the place from which the measurement is carried out. This chapter comparatively analyses the experimental results obtained in previous studies. The analysis showed that the approaches from the interior using expressions of adimensional numbers allow accurate characterizations of thermal transmittance to be obtained. © 2022, The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd.

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