Film-Cooling Effectiveness on a Rotating Blade Platform

被引:72
|
作者
Suryanarayanan, A. [1 ]
Mhetras, S. P. [1 ]
Schobeiri, M. T. [1 ]
Han, J. C. [1 ]
机构
[1] Texas A&M Univ, Dept Mech Engn, College Stn, TX 77843 USA
来源
关键词
WHEELSPACE COOLANT INJECTION; COOLED TURBINE ENDWALL; TRANSONIC FLOW-FIELD; HEAT-TRANSFER; AERODYNAMIC MEASUREMENTS; PART II; STAGE;
D O I
10.1115/1.2752184
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Film cooling effectiveness measurements under rotation were performed on the rotor blade platform using a pressure sensitive paint (PSP) technique. The present study examines in articular the film cooling effectiveness due to purging of coolant from the wheel-space cavity through the circumferential clearance gap provided between the stationary an rotating components of the turbine. The experimental investigation is carried out in a new three-stage turbine facility, recently designed and taken into operation at the Turbomachinery Performance and Flow Research Laboratory (TPFL) of Texas A&M University. This new turbine rotor has been used to facilitate coolant injection through this stator-rotor gap upstream of the first stage rotor blade. The gap was inclined at 25 deg to mainstream flow to allow the injected coolant to form a film along the passage platform. The effects of turbine rotating conditions on the blade platform film cooling effectiveness were investigated at three speeds of 2550 rpm, 2000 rpm, and 1500 rpm with corresponding incidence angles of 23.2 deg, 43.4 deg, and 54.8 deg, respectively Four different coolant-to-mainstream mass flow ratios varying from 0.5% to 2.0% were tested at each rotational speed. Aerodynamic measurements were performed at the first stage stator exit using a radially traversed five-hole probe to quanti the mainstream by flow at this station. Results indicate that film cooling effectiveness increases with an increase in the coolant-to-mainstream mass flow ratios for all turbine speeds. Higher turbine rotation speeds show more local film cooling effectiveness spread on the platform with increasing magnitudes. [DOI: 10.1115/1.2752184]
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页数:12
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