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Development of weighing tank system employing rotating double wing diverter

机译:旋转双翼转向器的称重罐系统的开发

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A new design for a diverter and weighing tank system has been developed. Experiments have been carried out on a prototype. Diverter wings are set as partitions along the diameter of a half-cylinder tube. The rotation axis is at the center of the half cylinder and runs parallel to liquid jets flowing vertically downward from several independent nozzles. This design contributes to small diverter timing error, compact design, small wet area, a simple and robust mechanism, easy implementation of the ISO4185 test, and easy adjustment of diverter trigger timing. After adjustment of start and stop signal timings, the estimated standard uncertainty caused by diverter timing error is reduced within a negligible small value (0.0019% or less) over a wide range of flow rates at any nozzle position. The weighing tank system has been improved by some refined devices. A single movement of the weighing platform can prevent escaping vapor, enable connection of an air tube, provide protection against impact, and provide a fail-safe against overflow. It is confirmed that the liquid flow calibration facility using the present system achieves accurate measurement, easy operation, wide flow range, high throughput, low cost, small weighing tank, easy maintenance, and safety.
机译:已经开发了分流器和称量箱系统的新设计。实验已经在原型上进行。分流器机翼设置为沿半圆柱管直径的分隔壁。旋转轴位于半圆柱的中心,平行于从几个独立的喷嘴垂直向下流动的液体射流。这种设计有助于减小分流器计时误差,紧凑的设计,较小的湿区,简单而稳定的机制,易于实施ISO4185测试以及易于调节分流器触发计时。在调整了开始和停止信号的时间之后,在任何喷嘴位置的大流量范围内,由分流器时间误差引起的估计标准不确定性都会减小到可忽略的较小值(0.0019%或更小)内。称重罐系统已通过一些改进的设备进行了改进。称重平台的单次移动可防止蒸气逸出,连接空气管,提供防撞击保护,并提供防溢装置。证实了使用本系统的液体流量校准设备实现了准确的测量,容易的操作,宽的流量范围,高通量,低成本,小的称重罐,易于维护和安全性。

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