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Stagnation temperature measurement using thin-film platinum resistance sensors

机译:使用薄膜铂电阻传感器测量停滞温度

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摘要

The measurement of stagnation temperature in high-speed flows is an important aspect of gas turbine engine testing. The ongoing requirement to improve the accuracy of such measurements has led to the development of probe systems that use a thin-film platinum resistance thermometer (PRT) as the sensing element. For certain aspects of engine testing this type of sensing device potentially offers superior measurement performance to the thermocouple, the temperature sensor of choice in most gas turbine applications. This paper considers the measurement performance of prototype PRT-based stagnation temperature probes, up to high-subsonic flow conditions, using passively aspirated probe heads. The relatively poor temperature recovery performance of a simply constructed probe has led to the development of a new design that is intended to reduce the impact of thermal conduction within the probe assembly. The performance of this so-called dual-skin probe has been measured through a series of tests at a range of Mach numbers, incidence angles and Reynolds numbers. The data reveal that a high probe recovery factor has been achieved with this device, and that the application of this design to engine tests would yield the measurement performance benefits of the PRT whilst requiring small levels of temperature recovery compensation.
机译:高速流动中停滞温度的测量是燃气涡轮发动机测试的重要方面。对提高此类测量精度的持续需求导致了使用薄膜铂电阻温度计(PRT)作为传感元件的探头系统的开发。对于发动机测试的某些方面,这种类型的传感设备可能会为热电偶(大多数燃气轮机应用中选择的温度传感器)提供出色的测量性能。本文考虑了使用被动吸气式探头在高达高亚音速流动条件下基于原型PRT的停滞温度探头的测量性能。简单构造的探头相对较差的温度恢复性能导致开发了一种新设计,旨在减少探头组件内热传导的影响。在一系列马赫数,入射角和雷诺数下,通过一系列测试测量了这种所谓的双皮肤探针的性能。数据表明,使用该设备已实现了很高的探头恢复系数,并且将该设计应用于发动机测试将带来PRT的测量性能优势,同时需要少量的温度恢复补偿。

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