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Adaptive Pulse Repetition Frequency Technique for an Ultrasonic Transit-Time Gas Flowmeter for Hot Pulsating Gases

机译:用于热脉动气体的超声渡越时间气体流量计的自适应脉冲重复频率技术

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A technique of using an adaptive pulse repetition frequency (PRF) to operate an ultrasonic contrapropagation transit-time gas flowmeter (UFM) is introduced. This adaptive PRF technique allows transient measurements of hot (up to 450 deg C) and pulsating (up to 1.5 kHz) gas flows. Such conditions occur in the exhaust gas of a combustion engine. Here, a UFM with the widely used fixed PRF technique is not applicable, because the large gas temperature variations would prevent a reliable detection of ultrasonic pulse arrival times. Coherently reflected waves are generated within the gas because of the unavoidable acoustic impedance mismatch between the gas and the transducers, and, depending on the gas temperatures, these echoes overlap with the main signal. The adaptive PRF technique overcomes this problem and allows correct pulse detection over the whole temperature range required. The UFM utilizes special high-temperature-resistant capacitance ultrasonic transducers (CUTs) to meet the requirements in terms of operating temperature range and dynamic response. Results, which are obtained with a preliminary laboratory prototype, are presented for the exhaust gas mass flow rate in a direct/ 50-mm pipe measured at gas temperatures of up to 450 deg C and at PRFs of up to 5.5 kHz, which is an increase in frequency response of one order of magnitude in comparison to existing measurement systems.
机译:介绍了一种使用自适应脉冲重复频率(PRF)来操作超声传播传播时间气体流量计(UFM)的技术。这种自适应PRF技术允许瞬时测量热气流(最高450摄氏度)和脉动气流(最高1.5 kHz)。这样的条件出现在内燃机的废气中。在此,采用广泛使用的固定PRF技术的UFM不适用,因为较大的气体温度变化会阻止可靠检测超声波脉冲到达时间。由于气体和换能器之间不可避免的声阻抗失配,在气体中产生了相干反射波,并且根据气体温度,这些回波与主信号重叠。自适应PRF技术克服了这个问题,并允许在所需的整个温度范围内进行正确的脉冲检测。 UFM利用特殊的耐高温电容超声换能器(CUT)来满足工作温度范围和动态响应方面的要求。给出了通过实验室的初步原型获得的结果,该结果是在直通/ 50毫米管道中的废气质量流量下,在高达450摄氏度的气体温度和高达5.5 kHz的PRF下测得的。与现有的测量系统相比,频率响应增加了一个数量级。

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