Finite Element Thermography

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A01=Benoit Beckers
A01=Pierre Beckers
Author_Benoit Beckers
Author_Pierre Beckers
Category=PHH
Category=UNA
Category=UYZM
diffusion equations
digital twins
eq_bestseller
eq_computing
eq_isMigrated=1
eq_nobargain
eq_non-fiction
eq_science
finite element thermography
heat transfer
mean radiant temperature
point sensors
surface temperature fields
thermal radiation
thermograms
thermography

Product details

  • ISBN 9781836690788
  • Publication Date: 12 Jun 2026
  • Publisher: ISTE Ltd
  • Publication City/Country: GB
  • Product Form: Hardback
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The thermal camera has revolutionized our understanding of heat transfer across many fields. In particular, it has enabled the visualization of surface temperature fields, which were previously only accessible through point sensors. However, thermograms are often difficult to interpret and can only be obtained from existing scenes. To understand them and extrapolate their insights to projects that have not yet been realized, a digital twin is required. This book examines how the finite element method facilitates the creation of idealized thermograms that both explain and extend measured situations.

Finite Element Thermography addresses steady-state and transient heat transfer, starting from diffusion equations. Their discretization leads to the classical formulation of the finite element method. This book then discusses thermal radiation, with the final chapter exploring the challenges of representing results and adapting them for the calculation of derived quantities, such as the mean radiant temperature.

Benoit Beckers is a professor at the Université de Pau et des Pays de l’Adour, France. His research focuses on the perception of sound, light and thermal waves, in connection with the history of architecture and urban planning.

Pierre Beckers is an emeritus professor at the Université de Liège, Belgium. His research focuses primarily on the finite element method, dual analysis, computer graphics and computer-aided design.

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