Raphaele Thery-Hetreux
University of Toulouse
9 Papers
9 Citations
Raphaele Thery-Hetreux is an academic researcher from University of Toulouse. The author has contributed to research in topics: Exergy & Electricity market. The author has an hindex of 4, co-authored 9 publications. Previous affiliations of Raphaele Thery-Hetreux include Centre national de la recherche scientifique.
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Papers
General methodology for exergy balance in ProSimPlus® process simulator
Ali Ghannadzadeh,Ali Ghannadzadeh,Raphaele Thery-Hetreux,Raphaele Thery-Hetreux,Olivier Baudouin,Philippe Baudet,Pascal Floquet,Pascal Floquet,Xavier Joulia,Xavier Joulia +9 more
TL;DR: In this paper, a general methodology for exergy balance in chemical and thermal processes integrated in ProSimPlus® as a well-adopted process simulator for energy efficiency analysis is presented.
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A modelling framework for energy system planning: Application to CHP plants participating in the electricity market
TL;DR: A general modelling framework dedicated to the short-term planning of energy systems, which supports the fast prototyping of optimization models, based on a generic Mixed Integer Linear Programming (MILP) formulation is presented.
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Feasibility analysis, synthesis, and design of reactive distillation processes: A focus on double‐feed processes
TL;DR: In this paper, a new approach for the feasibility analysis of reactive distillation processes based on the reactive extractive curve maps (rExCM) concept is introduced, which permits the conceptual design of hybrid reactive column configuration with one or two feed plates, for any number of equilibrium reactions (provided that the degree of freedom of the system is equal to 2) occurring in liquid or vapor phase.
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General Methodology for Exergy Balance in a Process Simulator
Ali Ghannadzadeh,Ali Ghannadzadeh,Raphaele Thery-Hetreux,Raphaele Thery-Hetreux,Olivier Baudouin,Philippe Baudet,Pascal Floquet,Pascal Floquet,Xavier Joulia,Xavier Joulia +9 more
TL;DR: In this article, a general methodology for exergy balance in chemical and thermal processes in order to be integrated in a process simulator has been presented, as well as using the general expressions for heat and work streams, a new general expression for calculating exergy of material stream in process simulators.
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Toward an Approach Combining Exergy Analysis and Pinch Analysis for Improving the Energy Efficiency of Industrial Sites: Application to a Pulp and Paper Process
Ali Ghannadzadeh,Raphaele Thery-Hetreux,N. Raimondi,Pascal Floquet,Olivier Baudouin,B. Abou Khalil,Philippe Baudet,Xavier Joulia +7 more
- 01 Jan 2011
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