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Fabrication and static calibration of double-layer thermal film sensor for fluid wall shear stress measurement

机译:用于流体墙剪应力测量的双层热膜传感器的制造和静态校准

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A double-layer flexible sensor array with an active thermal insulation method for fluid wall shear stress was fabricated in this study and evaluated experimentally. Static calibration of the sensor was studied in both wind and water tunnels and the experimental results reveal that the sensor's static performance was improved by active thermal insulation. Compared to single-layer methods, the static sensitivity of the proposed double-layer sensor is increased by approximately 48% in a wind tunnel and 13% in a water tunnel. Additionally, consistent deviations in the static calibration coefficients of sensors with different basic parameters were clearly compensated in the wind tunnel. The calibration coefficient deviation of the sensors was reduced from 57% in single-layer mode to 5% in double-layer mode.
机译:在本研究中制造了一种双层柔性传感器阵列,具有用于流体覆盖应力的活性隔热方法,并通过实验评估。 在风和水隧道中研究了传感器的静态校准,实验结果表明,通过主动热绝缘改善了传感器的静态性能。 与单层方法相比,所提出的双层传感器的静灵敏度在风隧道中增加了大约48%,水隧道中的13%增加。 另外,在风洞中明确地补偿了具有不同基本参数的传感器的静态校准系数中的一致偏差。 传感器的校准系数偏差在单层模式下从57%降低到双层模式的5%。

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