INFLUENCE OF THE ORIFICE SHAPE ON MASS FLOW MEASUREMENTS OF AIR–WATER MIXTURE

Barbara Tomaszewska-Wach, M. Rząsa, B. Dobrowolski, O. Serediuk
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引用次数: 1

Abstract

Flow measurements using differential pressure meters are common in industrial applications. In such cases, the flow of gas is often accompanied by conditions that can lead to liquid condensation. As a consequence, flow measurements basically involve gas–liquid mixture metering. For this reason, errors occur in the metering equipment resulting from the variations in the characteristics of the continuous phase that is present in the flow. In addition, the existence of a dispersed phase leads to the development of flow disturbance and pressure pulsations. Therefore, new methods and tools are being sought to enable the measurements of gas–liquid mixture flows that will offer a suitable accuracy of measurement in the instances of flow interference in the form of a liquid phase. This paper reports the results of a study into the application of orifice plate meters for gas–liquid mixture flow metering. The analysis of the influence of the geometry of an orifice meter on the measurement of a two-phase mixture flow was carried out for this purpose. Experimental tests were carried out by application of a standard orifice and three slotted orifice meters with various designs. The experiments included the measurements of air flow containing small amounts of dispersed water in the form of droplets. The analysis also involved the level of differential pressure that is obtained as a result of applying orifice meters, and the level of the permanent pressure loss caused by the installation of an orifice plate. The results of the research were compared with the results obtained for the standard orifice.
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孔板形状对空气-水混合物质量流量测量的影响
使用差压计进行流量测量在工业应用中很常见。在这种情况下,气体的流动往往伴随着可能导致液体冷凝的条件。因此,流量测量基本上涉及气液混合物计量。由于这个原因,由于流动中存在的连续相的特性变化,计量设备中会出现误差。此外,分散相的存在导致流动扰动和压力脉动的发展。因此,人们正在寻求新的方法和工具来测量气液混合流动,以便在以液相形式存在流动干扰的情况下提供适当的测量精度。本文报道了孔板流量计在气液混合流量计量中的应用研究结果。为此,分析了孔板流量计的几何形状对两相混合流测量的影响。采用一个标准孔板和三个不同设计的开槽孔板进行了实验测试。实验包括测量含有少量以水滴形式分散的水的气流。分析还包括应用孔板流量计获得的压差水平,以及安装孔板造成的永久压力损失水平。将研究结果与标准孔板的结果进行了比较。
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