Quantitative thermal analysis of heat transfer in liquid–liquid biphasic millifluidic droplet flows
Article dans une revue avec comité de lecture
Date
2014Journal
Quantitative InfraRed Thermography JournalAbstract
In this paper, infrared thermography is used to propose a simple quantitative approach toward understanding the thermal behaviour of a liquid–liquid biphasic millifluidic droplet flow under isoperibolic conditions. It is shown that due to the isoperibolic boundary condition, the thermal behaviour at the established periodic state can be managed according to different orders, i.e. either a continuous or fluctuating contribution. A complete analytical solution is proposed for the complex problem model, then a simplified model is proposed. Finally, a simple homogeneous equivalent thin body model approximation with a characteristic coefficient function of a biphasic flow mixing law is sufficient for describing the thermal behaviour of the media under isoperibolic conditions. From this theoretical validation, the experimental results concerning the behaviour of a biphasic oil and droplet flow are presented. An analytical representation law is proposed to quantitatively estimate and predict the thermal behaviour of the flow. Moreover, it is demonstrated that with this new method, the thermophysical properties of the phase can be estimated with a deviation less than 5% from that reported by the suppliers.
Files in this item
Related items
Showing items related by title, author, creator and subject.
-
Article dans une revue avec comité de lectureThe aim of this work is to present an infrared calorimeter for the measurement of the kinetics and the enthalpy of high exothermic chemical reactions. The main idea is to use a millifluidic chip where the channel acts as ...
-
Direction d'ouvragePRADERE, Christophe; JOANICOT, Mathieu; BATSALE, Jean-Christophe; TOUTAIN, Jean; GOURDON, Christophe (Lavoisier, Taylor & Francis, 2006)This work is devoted to the first analysis of temperature fields related to chemical microfluidic reactors. The heat transport around and inside a microchannel is both convective and diffusive with spatial distribution of ...
-
Article dans une revue avec comité de lecturePAILHES, Jerome; PRADERE, Christophe; BATTAGLIA, Jean-Luc; TOUTAIN, Jean; KUSIAK, Andrzej; AREGBA, Aworou Waste; BATSALE, Jean-Christophe (Elsevier, 2012)A new method based on the thermal quadrupoles technique for heat transfer modelling in multilayered slabs with heat sources is proposed. Classical thermal quadrupoles use hyperbolic functions and numerical problems occur ...
-
Analyse de la congélation de tissus biologiques à l’échelle cellulaire par Thermographie InfraRouge Communication avec actePRADERE, Christophe; TOUTAIN, Jean; BAMFORD, Matthieu; BATSALE, Jean-Christophe (Société Française de Thermique / Congrès Français de Thermique, 29 mai - 1 juin 2007, Île des Embiez, 2007)Ce travail concerne l'étude de la congélation de tissus biologiques avec des premiers résultats d’analyse de champs de température obtenus par thermographie infrarouge. On montre plusieurs configurations expérimentales ...
-
Article dans une revue avec comité de lectureBENSALEM, Mohamed; SOMMIER, Alain; MINDEGUIA, Jean-Christophe; BATSALE, Jean-Christophe; PRADERE, Christophe (Elsevier BV, 2023-07)The investigation of humidity movement during drying or imbibition processes represents a serious challenge for several industries, such as the wood-based material industry and paper industry. Recently, several studies ...