瞬时/累积流量法燃气表检定装置设计与优化

    Design and Optimization of Gas Meter Verification Devices Based on Instantaneous/Cumulative Flow Methods

    • 摘要: 针对目前国内检测机构均采用累积流量法检定电子式燃气表效率低的问题,提出了瞬时流量法检定装置的设计方案。该方案设计了近红外采集接口,根据T/CMA-RQ《燃气表检测用光学接口及通信协议》进行编译,与各厂家实现近红外通讯协议的统一。瞬时流量法和累积流量法的等效性、瞬时流量法的高效性验证了瞬时流量法测量结果可靠;同时采用多个喷嘴组合的方式,实现了G4~G100规格中所有流量点的检测;采用在大、小滞止容器之间加装蝶阀进行隔断的方法对小流量喷嘴流场的稳定进行了优化;对燃气表台位的瞬时流量采集接口进行了优化设计。整体装置可实现流量范围0.016~160 m3/h,扩展不确定度为0.30% (k =2)的检测能力,弥补了国内检测机构尚未采用瞬时流量法检测电子式燃气表的空白。

       

      Abstract: Addressing the inefficiency of domestic testing institutions in verifying electronic gas meters using the cumulative flow method, this study proposes a novel design scheme for a verification device employing the instantaneous flow method. The scheme incorporates a near-infrared acquisition interface, which is compiled according to the T/CMA-RQ standard “Optical Interface and Communication Protocol for Gas Meter Testing,” achieving uniformity in near-infrared communication protocols among various manufacturers. The reliability of measurement results using the instantaneous flow method is verified through assessments of its equivalence to the cumulative flow method and its efficiency. Additionally, a combination of multiple nozzles is utilized to enable the detection of all flow points within the G4 to G100 specifications. The stability of the flow field for small-flow nozzles is optimized by installing a butterfly valve between the large and small stagnation containers to create a partition. Furthermore, the instantaneous flow acquisition interface for the gas meter station is optimized. The overall device achieves a detection capability with a flow range of (0.016 to 160) m3/h and an expanded uncertainty of 0.30% (k = 2), filling the gap in domestic testing institutions that have not yet adopted the instantaneous flow method for verifying electronic gas meters.

       

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