Title :
Application of a multilevel unstructured staggered solver to thermal electronic simulations
Author :
Semin, Viacheslav ; Bardsley, Mark ; Rosten, Oliver ; Aldham, Chris
Author_Institution :
Future Facilities Ltd., London, UK
Abstract :
This paper describes an application of a novel computational fluid dynamics solution procedure to thermal electronic simulations. The mathematical formulation employs a hierarchy of Cartesian grids and a face to cell connectivity graph to discretise the differential equations. The method uses a finite volume scheme with staggered variable arrangement and a pressure-based segregated iteration procedure to solve a discrete algebraic analogue of the Navier-Stokes equations. The paper is concerned primarily with the application and validation of the proposed technique and shows its advantages and flexibility when handling complex industrial applications comprising a large number of multi-scale geometrical objects and physical solution regions.
Keywords :
Navier-Stokes equations; computational fluid dynamics; finite volume methods; iterative methods; thermal management (packaging); Cartesian grids; Navier-Stokes equations; computational fluid dynamics; finite volume scheme; multilevel unstructured staggered solver; pressure-based segregated iteration procedure; thermal electronic simulations; Computational modeling; Face; Fluids; Heat sinks; Mathematical model; Solids; Temperature measurement;
Conference_Titel :
Thermal Measurement, Modeling & Management Symposium (SEMI-THERM), 2015 31st
Conference_Location :
San Jose, CA
DOI :
10.1109/SEMI-THERM.2015.7100174