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Investigation on Characterizing Heated Pulsating Flows with Hot Wire Anemometers - A Hands-On Approach

机译:热线风速计表征加热的脉动流的研究-动手方法

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摘要

The pulsating heated flows are traditionally a difficult subject to treat with conventional hot wire or film methods. Special factors that complicate matters are flow reversal and non linear flow effects of vortices and wire probe wake disturbances on the heat transfer to the hot film or wire sensor in heated pulsating flows. The presence of these strongly nonlinear and unknown terms leads to great difficulties in calibration of hot film probes in this particular regime. The paper analyses the current state of matters in the field and reports a series of solutions that have been practically tested in a case of a high speed pulsated heated flow. Normally such measurements are made in a non-contact fashion using a LDV system or various visualization techniques but there have been recent attempts to use a constant temperature hot wire anemometer system (CTA).To obtain meaningful calibration for hot wire films in hot pulsating flows, a comparison system on other principles (LDV) was used, as well as a specially designed nozzle to replace the calibrator unit that could not be operated with heated fluid due to structural integrity reasons. The method as described below works well for the expected speed range that could be generated using the special nozzle.
机译:脉动加热流传统上是用常规热线或薄膜方法难以处理的主题。使问题复杂化的特殊因素是涡流的逆向流动和非线性流动效应,以及在加热的脉动流中,传热膜或导线传感器传热的线探针尾流干扰。这些强非线性和未知项的存在导致在这种特定情况下热膜探针的校准非常困难。本文分析了该领域的现状,并报告了一系列解决方案,这些解决方案已在高速脉冲加热流的情况下进行了实际测试。通常,这种测量是使用LDV系统或各种可视化技术以非接触方式进行的,但最近已尝试使用恒温热线风速计系统(CTA)。为热脉动流中的热线膜获得有意义的校准,使用了基于其他原理的比较系统(LDV),以及专门设计的喷嘴,以替换由于结构完整性原因而无法使用加热流体操作的校准器单元。如下所述的方法对于使用特殊喷嘴可能产生的预期速度范围效果很好。

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