2013Unpublished venueRequires access

- CFD-Based Combustion Modeling

Michael A. Lorra, Shirley X. Chen

Open publisher page 1 citations

Abstract

Computational uid dynamics (CFD) has become a widely accepted tool to help in the design and operation of equipment in various industries. It evolved from a tool to simulate isothermal ow distribution in simpler geometries, as for example ow distribution in combustion equipment, see also Figure 9.1, to a generic tool that is theoretically capable of simulating complex ow phenomena with respect to geometry and physics.

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What this paper is about

Computational uid dynamics (CFD) has become a widely accepted tool to help in the design and operation of equipment in various industries. It evolved from a tool to simulate isothermal ow distribution in simpler geometries, as for example ow distribution in combustion equipment, see also Figure 9.1, to a generic tool that is theoretically capable of simulating complex ow phenomena with respect to geometry and physics.

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Available abstract

Computational uid dynamics (CFD) has become a widely accepted tool to help in the design and operation of equipment in various industries. It evolved from a tool to simulate isothermal ow distribution in simpler geometries, as for example ow distribution in combustion equipment, see also Figure 9.1, to a generic tool that is theoretically capable of simulating complex ow phenomena with respect to geometry and physics.

Key concepts: Combustion, Computational fluid dynamics, Environmental science, Materials science, Aerospace engineering, Engineering, Chemistry, Physical chemistry

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