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Vortex Structure Effects on Impingement, Effusion, and Cross Flow Cooling of a Double Wall Configuration
Vortex Structure Effects on Impingement, Effusion, and Cross Flow Cooling of a Double Wall Configuration
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Vortex Structure Effects on Impingement, Effusion, and Cross Flow Cooling of a Double Wall Configuration
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Vortex Structure Effects on Impingement, Effusion, and Cross Flow Cooling of a Double Wall Configuration
Vortex Structure Effects on Impingement, Effusion, and Cross Flow Cooling of a Double Wall Configuration

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Vortex Structure Effects on Impingement, Effusion, and Cross Flow Cooling of a Double Wall Configuration
Vortex Structure Effects on Impingement, Effusion, and Cross Flow Cooling of a Double Wall Configuration
Journal Article

Vortex Structure Effects on Impingement, Effusion, and Cross Flow Cooling of a Double Wall Configuration

2018
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Overview
A variety of different types of vortices and vortex structures have important influences on thermal protection, heat transfer augmentation, and cooling performance of impingement cooling, effusion cooling, and cross flow cooling. Of particular interest are horseshoe vortices, which form around the upstream portions of effusion coolant concentrations just after they exit individual holes, hairpin vortices, which develop nearby and adjacent to effusion coolant trajectories, and Kelvin-Helmholtz vortices which form within the shear layers that form around each impingement cooling jet. The influences of these different vortex structures are described as they affect and alter the thermal performance of effusion cooling, impingement cooling, and cross flow cooling, as applied to a double wall configuration.