Heat exchangers are devices widely used in various energy systems. The present research work focuses on the design of single-phase bi-fluid heat exchangers by using topology optimization methods. Unlike conventional size and shape optimization methods, topology optimization methods allow greater design freedom and do not require prior definition of the exchanger geometry. Hence, bi-fluid topology optimization consists of freely reorganizing two fluids and one solid in the optimization domain. Both fluids should connect inlet sections to outlet sections while avoiding any fluid mixture inside the domain. SIMP method “Solid Isotropic Material with Penalization” is used within the framework of this thesis. This method includes various algorith...
Heat and mass transfers are two physical phenomena at the base of many thermal systems involved in v...
Heat and mass transfers are two physical phenomena at the base of many thermal systems involved in v...
Les transferts de chaleur et de masse sont deux phénomènes physiques à la base de nombreux systèmes ...
Heat exchangers are devices widely used in various energy systems. The present research work focuses...
Heat exchangers are devices widely used in various energy systems. The present research work focuses...
Heat exchangers are devices widely used in various energy systems. The present research work focuses...
Les échangeurs de chaleur sont des dispositifs largement utilisés dans divers systèmes énergétiques....
Heat exchangers have long been used in a wide variety of industrial applications, such as for energy...
An active fluid heat exchanger can be controlled effectively using Peltier elements to condition the...
International audienceWe present a topology optimization approach for the design of fluid-to-fluid h...
International audienceWe present a topology optimization approach for the design of fluid-to-fluid h...
International audienceWe present a topology optimization approach for the design of fluid-to-fluid h...
International audienceWe present a topology optimization approach for the design of fluid-to-fluid h...
International audienceWe present a topology optimization approach for the design of fluid-to-fluid h...
International audienceWe present a topology optimization approach for the design of fluid-to-fluid h...
Heat and mass transfers are two physical phenomena at the base of many thermal systems involved in v...
Heat and mass transfers are two physical phenomena at the base of many thermal systems involved in v...
Les transferts de chaleur et de masse sont deux phénomènes physiques à la base de nombreux systèmes ...
Heat exchangers are devices widely used in various energy systems. The present research work focuses...
Heat exchangers are devices widely used in various energy systems. The present research work focuses...
Heat exchangers are devices widely used in various energy systems. The present research work focuses...
Les échangeurs de chaleur sont des dispositifs largement utilisés dans divers systèmes énergétiques....
Heat exchangers have long been used in a wide variety of industrial applications, such as for energy...
An active fluid heat exchanger can be controlled effectively using Peltier elements to condition the...
International audienceWe present a topology optimization approach for the design of fluid-to-fluid h...
International audienceWe present a topology optimization approach for the design of fluid-to-fluid h...
International audienceWe present a topology optimization approach for the design of fluid-to-fluid h...
International audienceWe present a topology optimization approach for the design of fluid-to-fluid h...
International audienceWe present a topology optimization approach for the design of fluid-to-fluid h...
International audienceWe present a topology optimization approach for the design of fluid-to-fluid h...
Heat and mass transfers are two physical phenomena at the base of many thermal systems involved in v...
Heat and mass transfers are two physical phenomena at the base of many thermal systems involved in v...
Les transferts de chaleur et de masse sont deux phénomènes physiques à la base de nombreux systèmes ...