首页> 美国政府科技报告 >Use of a Liquid-Crystal,Heater-Element Composite for Quantitative,High-Resolution Heat Transfer Coefficients on a Turbine Airfoil,Including Turbulence and Surface Roughness Effects.
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Use of a Liquid-Crystal,Heater-Element Composite for Quantitative,High-Resolution Heat Transfer Coefficients on a Turbine Airfoil,Including Turbulence and Surface Roughness Effects.

机译:使用液晶,加热元件复合材料在涡轮机翼型上定量,高分辨率传热系数,包括湍流和表面粗糙度效应。

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Local heat transfer coefficients were measured along the midchord of a three-times-size turbine vane airfoil in a static cascade operated at room temperature over a range of Reynolds numbers. The test surface consisted of a composite of commercially available materials: a Mylar sheet with a layer of cholestric liquid crystals, which change color with temperature, and a heater made of a polyester sheet coated with vapor-deposited gold, which produces uniform heat flux. After the initial selection and calibration of the composite sheet, accurate, quantitative, and continuous heat transfer coefficients were mapped over the airfoil surface. Tests were conducted at two free-stream turbulence intensities: 0.6 percent, which is typical of wind tunnels; and 10 percent, which is typical of real engine conditions. In addition to a smooth airfoil, the effects of local leading-edge sand roughness were also examined for a value greater than the critical roughness. The local heat transfer coefficients are presented for both free-stream turbulence intensities for inlet Reynolds numbers from 1.20 to 5.55 x 10 to the 5th power. Comparisons are also made with analytical values of heat transfer coefficients obtained from the STAN5 boundary layer code.

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