2022
DOI: 10.1016/j.ast.2022.107951
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Study on the interaction between coolant pulsation and recirculation vortexes by large-eddy simulation

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Cited by 2 publications
(1 citation statement)
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“…Rutledge et al [10] analyzed the influences of the pulsed film cooling on the turbine blade heat flux, and the superiority of steady film cooling to pulsed film cooling at a low BR was confirmed, while pulsed film cooling could be beneficial at a high BR, confirming the flat plate film cooling. The LES was employed to indicate how the square-wave pulsating film cooling jet could be interacted with recirculation vortexes, and the noticeable role of entraining recirculation vortexes in the near-wall region was figured out [11]. In recent years, coolant pulsation, as one of the active control techniques, has exhibited a high degree of efficiency that could improve the film cooling efficiency; however, further conclusive outcomes are essential [12] and evidence is required to prove the role of coolant pulsation in enhancing the film cooling efficiency.…”
Section: Introductionmentioning
confidence: 99%
“…Rutledge et al [10] analyzed the influences of the pulsed film cooling on the turbine blade heat flux, and the superiority of steady film cooling to pulsed film cooling at a low BR was confirmed, while pulsed film cooling could be beneficial at a high BR, confirming the flat plate film cooling. The LES was employed to indicate how the square-wave pulsating film cooling jet could be interacted with recirculation vortexes, and the noticeable role of entraining recirculation vortexes in the near-wall region was figured out [11]. In recent years, coolant pulsation, as one of the active control techniques, has exhibited a high degree of efficiency that could improve the film cooling efficiency; however, further conclusive outcomes are essential [12] and evidence is required to prove the role of coolant pulsation in enhancing the film cooling efficiency.…”
Section: Introductionmentioning
confidence: 99%