The present paper presents the application of an inverse analysis approach to experimental infrared temperature data with the aim of estimating the local convective heat transfer coefficient for forced convection flow in coiled pipe having corrugated wall. The estimation procedure here adopted is based on the solution of the inverse heat conduction problem within the wall domain by adopting the temperature distribution on the external coil wall as input data of the inverse problem: the unwanted noise in filtered out from the infrared temperature maps in order to make feasible the direct calculation of its Laplacian, embedded in the formulation of the inverse heat conduction problem in which the convective heat transfer coefficient is rega...
Wall curvature represents a widely adopted technique for enhancing heat transfer: the fluid flowing ...
Wall curvature is a widely used technique to passively enhance convective heat transfer that has als...
International audienceAbstract The techniques for solving the Inverse Heat Conduction Problem repres...
The present paper presents the application of an inverse analysis approach to experimental infrared ...
Purpose - Most of the passive techniques for enhancing heat transfer inside pipes (e.g. rough surfac...
This paper presents and assesses an inverse heat conduction problem (IHCP) solution procedure which ...
Wall curvature is a widely used technique to passively enhance convective heat transfer in the therm...
Wall curvature is a widely used technique to passively enhance convective heat transfer and it is pa...
Most of passive techniques for heat transfer enhancement (e.g. rough surfaces, swirl-flow devices an...
Wall curvature represents one of the most used passive techniques to enhance convective heat transfe...
Wall curvature is a widely used technique to passively enhance convective heat transfer that has pro...
Most of passive techniques for heat transfer enhancement (e.g. rough surfaces, swirl-flow devices an...
Wall curvature is a popular heat transfer enhancement technique since it gives origin to the centrif...
The techniques for solving the Inverse Heat Conduction Problem represent useful tools for designing ...
Wall curvature represents one of the most used passive techniques to enhance convective heat transfe...
Wall curvature represents a widely adopted technique for enhancing heat transfer: the fluid flowing ...
Wall curvature is a widely used technique to passively enhance convective heat transfer that has als...
International audienceAbstract The techniques for solving the Inverse Heat Conduction Problem repres...
The present paper presents the application of an inverse analysis approach to experimental infrared ...
Purpose - Most of the passive techniques for enhancing heat transfer inside pipes (e.g. rough surfac...
This paper presents and assesses an inverse heat conduction problem (IHCP) solution procedure which ...
Wall curvature is a widely used technique to passively enhance convective heat transfer in the therm...
Wall curvature is a widely used technique to passively enhance convective heat transfer and it is pa...
Most of passive techniques for heat transfer enhancement (e.g. rough surfaces, swirl-flow devices an...
Wall curvature represents one of the most used passive techniques to enhance convective heat transfe...
Wall curvature is a widely used technique to passively enhance convective heat transfer that has pro...
Most of passive techniques for heat transfer enhancement (e.g. rough surfaces, swirl-flow devices an...
Wall curvature is a popular heat transfer enhancement technique since it gives origin to the centrif...
The techniques for solving the Inverse Heat Conduction Problem represent useful tools for designing ...
Wall curvature represents one of the most used passive techniques to enhance convective heat transfe...
Wall curvature represents a widely adopted technique for enhancing heat transfer: the fluid flowing ...
Wall curvature is a widely used technique to passively enhance convective heat transfer that has als...
International audienceAbstract The techniques for solving the Inverse Heat Conduction Problem repres...