Influences of Inlet Reynolds Number and Humidity Ratio of Moist Air on Flow and Heat Transfer Characteristics of Impingement Cooling[J]. 2020, 54(5): 170-178.
DOI:
Influences of Inlet Reynolds Number and Humidity Ratio of Moist Air on Flow and Heat Transfer Characteristics of Impingement Cooling[J]. 2020, 54(5): 170-178.DOI: 10.7652/xjtuxb202005022.
Influences of Inlet Reynolds Number and Humidity Ratio of Moist Air on Flow and Heat Transfer Characteristics of Impingement Cooling
To investigate the cooling of the blade leading edge of a humidified gas turbine
the effects of inlet Reynolds number and humidity ratio of moist air on the impingement cooling of flow and heat transfer are analy-ed. An impingement cooling model with an inlet chamber
a row of circular impingement holes and an impingement cooling chamber is established. The ANSYS CFX software is used to numerically investigate the influences of inlet Reynolds number and humidity ratio of moist air on flow and heat transfer characteristics of impingement cooling
and the properties of the flow and heat transfer are summari-ed. Following the numerical results
the Nusselt number is correlated with the Reynolds number of impingement holes and the Prandtl number to obtain the heat transfer correlation of the moist air impingement cooling. The results show that the cooling performance of impingement cooling improves with the increasing Reynolds number and humidity ratio. After the impingement jet impacts t
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