首页> 外文会议>ASME Turbo Expo >TIME-RESOLVED HEAT TRANSFER MEASUREMENTS ON THE TIP WALL OF A RIBBED CHANNEL USING A NOVEL HEAT FLUX SENSOR PART I: SENSOR AND BENCHMARKS
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TIME-RESOLVED HEAT TRANSFER MEASUREMENTS ON THE TIP WALL OF A RIBBED CHANNEL USING A NOVEL HEAT FLUX SENSOR PART I: SENSOR AND BENCHMARKS

机译:使用新型热通量传感器部分I:传感器和基准,在罗纹通道的尖端壁上的时间分辨热传递测量。传感器和基准

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A novel heat flux sensor was tested which allows for time-resolved heat flux measurements in internal ribbed channels related to the study of passages in gas turbine blades. The working principle of the Atomic Layer Thermopile (ALTP) sensor is based on a thermoelectric field created by a temperature gradient over an YBCO crystal (the transverse Seebeck effect). The sensors very fast frequency response allows for highly time-resolved heat flux measurements up to the 1 MHz range. This paper explains the design and working principle of the sensor, as well as the benchmarking of the sensor for several flow conditions. For internal cooling passages, this novel sensor allows for highly accurate, time-resolved measurements of heat transfer coefficients, leading to a greater understanding of the influence of fluctuations in temperature fields.
机译:测试了一种新型热通量传感器,其允许与燃气轮机叶片中的通道相关的内部罗纹通道中的时间分辨热通量测量。原子层热电堆(ALTP)传感器的工作原理基于由YBCO晶体(横向塞克效应)上的温度梯度产生的热电场。传感器非常快速的频率响应允许高度分辨的热通量测量到1 MHz范围。本文解释了传感器的设计和工作原理,以及传感器的基准,用于多个流动条件。对于内部冷却通道,该新颖传感器允许热传递系数的高度准确,时间分辨测量,从而更加了解对温度场中波动的影响。

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