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Gravimetric system using high-speed double switching valves for low liquid flow rates

机译:使用高速双开关阀的重量系统,用于低液体流量速率

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This paper presents a gravimetric system developed to perform the static weighing with flying-start-and-stop (SW-FSS) calibration method at low liquid flow rates using a pair of identical high-speed switching valves as a flow diverter. Features of the gravimetric system comprise three main components: a pair of switching valves that divert the working liquid between two symmetrical flow paths; a weighing vessel equipped with an overflow inner vessel and enclosed in a weighing chamber; and a liquid discharge mechanism comprising a discharge tube and a discharge pump, used with a multi-purpose bin. These are described with an explanation of the design considerations behind each feature. The overflow inner vessel is designed with a notch in its wall and is positioned so that it does not come into contact with the liquid surface of the accumulated liquid in the weighing vessel or the side wall of the weighing vessel to obtain a good repeatability of the interactive effects between the feeding tube and the submerging working liquid, thus ensuring a correct mass reading of the liquid collection. A performance test showed that, in terms of contribution to the overall uncertainty of the standard flow rate, the pair of switching valves is capable of performing SW-FSS satisfactorily with small relative timing errors within +/- 0.002%. However, the mass loss due to evaporation is considered a major source of error of the gravimetric system, showing a maximum error of 0.011% under the most evaporative condition tested for the longest liquid collection time of the gravimetric system.
机译:本文介绍了一种重量系统,以在低液体流速下使用一对相同的高速开关阀以流量分流器执行静止称量的静态称量。重力系统的特点包括三个主要部件:一对开关阀,其将工作液转移到两个对称的流动路径之间;配备有溢流内容物并封闭在称重室的称重容器;和一种液体排出机构,包括具有多功能箱的放电管和排出泵。描述这些描述了每个特征后面的设计注意事项的说明。溢流内容器设计有其壁的凹口,并且定位成使得它不会与称重容器中的累积液体的液体表面接触或称重容器的侧壁以获得良好的重复性进料管和浸没式工作液之间的互动效果,从而确保了液体收集的正确质量读数。性能测试表明,在对标准流速的总不确定性的贡献方面,这对开关阀能够以+/- 0.002%的小相对定时误差令人满意地执行SW-FSS。然而,由于蒸发引起的质量损失被认为是重量系统的误差的主要来源,在最大蒸发状态下,最大误差为0.011%,在对重力系统的最长液体收集时间测试的最蒸发状态下。

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