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引用次数: 0

摘要

热线风速仪是一种广泛应用于测定流速和研究气流质量的仪器。本文的主要目的是通过提高非校准温度和压力下的测量精度来扩大热丝的应用范围。根据这四种传热导数,提出了一种新的标定方法。综合考虑自然对流、热辐射热传导和强制对流换热,可以发现强制对流换热起主导作用,引起变化的主要因素是温度。强制对流换热也随着压力的变化而变化,压力通过影响运动粘度来影响换热。在此基础上,提出了一种可在一定温度和压力范围内使用的速度标定方法和公式,并通过数值模拟对标定方案进行了验证。对数值计算结果进行比较,平均误差为0.69%,最大误差为2.9%。结果表明,该标定方法在一定范围内具有较高的精度。本文为热线风速仪的校准提供了一种新的解决方案,扩大了热线风速仪在恶劣外部条件下测量的适应性。
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Hot-Wire Measurements in Non-Calibrated Conditions
The hot-wire anemometer is a widely used instrumentation to determine flow velocity and to investigate flow quality. The main objective of this paper is to expand the application range of the hot wire by improving the measurement accuracy under non-calibrated temperature and pressure. According to the four kinds of heat transfer derivations, a new calibration method was carried out. Considering natural convection, heat radiation and heat conduction, and forced convection heat transfer, it can be found that the forced convection heat transfer plays a dominant role, and the main factor causing the change is the temperature. Forced convection heat transfer also changes with pressure, which affects heat transfer by affecting kinematic viscosity. Based on this, a new calibration method and formula of velocity were put forward, which can be used over a range of temperature and pressure, considering the changes of physical property of the calibration scheme were verified by numerical simulation. The numerical calculated results were compared, the average error was 0.69%, the maximum error was 2.9%. The results show that the calibration method has high accuracy in a certain range. This paper provides a new solution for the calibration of hot-wire anemometer, and expands the adaptability of hot-wire anemometer in the measurement of severe external conditions.
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