首页> 外文会议>International North Sea Flow Measurement Workshop; 20071016-18; Oslo(NO) >IMPACT OF REGULATOR NOISE ON ULTRSONIC FLOW METERS IN NATURAL GAS
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IMPACT OF REGULATOR NOISE ON ULTRSONIC FLOW METERS IN NATURAL GAS

机译:调节器噪声对天然气超声流量的影响

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The impact of pressure regulator noise on the performance of ultrasonic meters has been discussed for several years now. This is one of the problems still to be solved in ultrasonic flow metering technology. Engineers have so far attempted to solve the problem by installing complex spatial pipe arrangements at high costs to reduce interfering noise levels. The issue has been examined systematically both in field tests in the measuring station of a transportation pipeline and on the E.ON Ruhrgas high-pressure test facility in Lintorf to determine the limits of use and potential applications of an ultrasonic gas meter with chordal path layout in combination with a regulator. The tests made on a 16-inch meter in the measuring station confirmed that proper functioning of the meter with respect to pressure differential and flow rate can be guaranteed even under the most extreme conditions. For further systematic testing on the Lintorf high-pressure test facility, an 8-inch ultrasonic meter was equipped with two four-path systems working independently of each other. This approach made it possible to directly compare a system with 210 kHz ultrasonic sensors with the latest technology of 350 kHz sensors. It was found that the 350 kHz sensors are clearly less sensitive to interfering noise signals and therefore improve measurement reliability under worst case conditions. Based on auto-diagnosis parameters such as signal-to-noise ratio and performance, the meter was confirmed to be capable of clearly detecting and rejecting disturbed signals. The paper describes the test results and the information derived with respect to an expanded use of ultrasonic technology.
机译:数年来,已经讨论了压力调节器噪声对超声波仪表性能的影响。这是超声流量计量技术中仍需解决的问题之一。迄今为止,工程师们一直试图通过高成本安装复杂的空间管道装置以降低干扰噪声水平来解决该问题。在运输管道测量站的现场测试中以及在Lintorf的E.ON Ruhrgas高压测试设施中均已对该问题进行了系统地检查,以确定具有弦路径布局的超声波燃气表的使用限制和潜在应用与调节器结合。在测量站的16英寸仪表上进行的测试证实,即使在最极端的条件下,仪表也能保证在压差和流量方面的正常功能。为了在Lintorf高压测试设备上进行进一步的系统测试,一台8英寸的超声波仪表配备了两个相互独立工作的四路径系统。这种方法可以直接将带有210 kHz超声波传感器的系统与最新的350 kHz传感器技术进行比较。发现350 kHz传感器显然对干扰噪声信号不那么敏感,因此在最坏情况下提高了测量可靠性。根据信噪比和性能等自动诊断参数,确认该仪表能够清楚地检测和拒绝受干扰的信号。本文介绍了有关超声技术扩展使用的测试结果和信息。

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