2015 23rd Mediterranean Conference on Control and Automation (MED) 2015
DOI: 10.1109/med.2015.7158789
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Bond graph model of a mechanically Pumped Biphasic Loop (MPBL)

Abstract: The MPBL is an effective technology in terms of heat flow transport capacity: 10 MW.m, [2],with high level adaptability. A bond graph model of such a system is proposed in this paper. The model is dynamic, qualitative, configurable and pays particular attention to the dynamic of the transient regime. It aims at being a tool dedicated to designing the different components of a MPBL. It is also used for a physical analysis of the system in different operating conditions.

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Cited by 4 publications
(5 citation statements)
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“…Interpolations giving the evolution of thermo physical properties are specifically developed for the current project with accuracy care, and are presented in our article (Kebdani et al 2015).…”
Section: Description Of the Dynamic Bond Graph Modelmentioning
confidence: 99%
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“…Interpolations giving the evolution of thermo physical properties are specifically developed for the current project with accuracy care, and are presented in our article (Kebdani et al 2015).…”
Section: Description Of the Dynamic Bond Graph Modelmentioning
confidence: 99%
“…The choice of the 13 companies involved in the current project has been oriented towards 2-Phases Loop Mechanically Pumped (2-PLMP). Such systems are undoubtedly the most efficient in terms of heat transfer (Kebdani et al 2015), (Lachassagne 2010) and (Serin 2007) .…”
Section: Introduction and State Of The Artmentioning
confidence: 99%
See 1 more Smart Citation
“…These advantages extend the use of BPC. For instance, they equip power electronics cooling systems [1]. A dynamic study of this condenser is necessary to better understand the transitional behavior of this exchanger.…”
Section: Introductionmentioning
confidence: 99%
“…The choice of the 13 companies involved in the current project has been oriented towards 2-Phases Loop Mechanically Pumped (2-PLMP). Such systems are undoubtedly the most efficient in terms of heat transfer (Kebdani et al 2015), (Lachassagne 2010) and (Serin 2007) . Indeed, in addition to their architectural flexibility and compactness, they guarantee appropriate cooling using a pump.…”
Section: Introduction and State Of The Artmentioning
confidence: 99%