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Titlebook: Advances in Computational Heat and Mass Transfer; Proceedings of the 1 Ali Cemal Benim,Rachid Bennacer,Jan Taler Conference proceedings 202

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GPU Accelerated Simulation of Conjugate Heat Transfer Problemsields, and energy systems. This paper explores the utilization of Graphics Processing Units (GPUs) and the CUDA-C programming language for solving conjugate heat transfer problems. Three distinct heat transfer scenarios are investigated: the Lid-Driven cavity, squared cavity with natural convection,
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Natural Convection Heat Transfer Around a Sphere in a Rotating Fluidpressible fluid. A higher order compact scheme (HOCS) is employed to conduct the numerical investigation, enabling accurate capture of complex fluid flow phenomena. The obtained results are based on a low Reynolds number(.) and varying Taylor number(.) values ranging from low to moderate. The contou
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Instability in Annular Sliding Couette Flow with Variable-Viscosity and Viscous Dissipationoaxial circular cylinders, where the inner cylinder undergoes axial motion while the outer cylinder is at rest. Viscosity varies exponentially with temperature and is modelled using two different laws; Arrhenius-type law and Nahme-type law. Temporal linear stability analysis is employed to explore i
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A Preliminary Exploration of the Coupling Algorithm of the POD-Galerkin Method and FVM in the Temperaccurately based on a series of ex-situ results. However, the PGM suffers from difficulties in the application to the complex flow with openings and turbulence. This study preliminarily explores the coupling algorithm of the PGM and the finite volume method (FVM) to avoid these difficulties. A tempe
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