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Problems of unsteady temperature measurements in a pulsating flow of gas

机译:气体脉动流中温度测量不稳定的问题

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Unsteady flow temperature is one of the most difficult and complex flow parameters to measure. Main problems concern insufficient dynamic properties of applied sensors and an interpretation of recorded signals, composed of static and dynamic temperatures. An attempt is made to solve these two problems in the case of measurements conducted in a pulsating flow of gas in the 0-200 Hz range of frequencies, which corresponds to real conditions found in exhaust pipes of modern diesel engines. As far as sensor dynamics is concerned, an analysis of requirements related to the thermometer was made, showing that there was no possibility of assuring such a high frequency band within existing solutions. Therefore, a method of double-channel correction of sensor dynamics was proposed and experimentally tested. The results correspond well with the calculations made by means of the proposed model of sensor dynamics. In the case of interpretation of the measured temperature signal, a method for distinguishing its two components was proposed. This decomposition considerably helps with a correct interpretation of unsteady flow phenomena in pipes.
机译:不稳定的流动温度是要测量的最困难和最复杂的流动参数之一。主要问题涉及所用传感器的动态性能不足,以及由静态和动态温度组成的记录信号的解释。在以0-200Hz频率范围内的脉动气流进行测量的情况下,试图解决这两个问题,这对应于现代柴油发动机的排气管中的实际条件。就传感器动力学而言,对温度计的要求进行了分析,结果表明,在现有解决方案中无法确保如此高的频带。因此,提出了一种对传感器动力学进行双通道校正的方法,并进行了实验测试。结果与通过提出的传感器动力学模型进行的计算非常吻合。在解释所测温度信号的情况下,提出了一种区分其两个分量的方法。这种分解极大地有助于正确解释管道中的不稳定流动现象。

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