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Load cell adoption in an electronic drag force flowmeter

机译:电子拖曳力流量计中采用称重传感器

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This research introduces the development of an electronic flowmeter based on the drag force that a body experiences when immersed in a fluid stream. Its main goal was the development of an Electronic Drag Force Flowmeter (EDFF) using a load cell, as well as the evaluation of its performance parameters. The developed flowmeter should not require specialized labor, equipments, computers or any sophisticated and complex method, providing an easy and accurate way of flow estimation. This research was carried out in the following stages: (i) EDFF mechanical structure development; (ii) data acquisition system and embedded software design; and (iii) evaluation of EDFF performance parameters. EDFF has routines for instantaneous flow rate measurement, interactive calibration, and also several flow meter parameter adjustments, allowing data transmission via a RS232 protocol. The real-time flow measurement task updates values of instantaneous flow rate each seven seconds, enabling unit selection. The interactive calibration routine guides users during all calibration process showing instructions on EDFF's display. A data digital filtering procedure was implemented in an embedded software using the Grubbs' Test in order to identify and to remove outliers from the acquired data. The Method of Least Squares was also implemented in the embedded software in order to calculate the fitting model coefficients on the calibration procedure. This flowmeter is able to work from 1.94 to 7.78 dm3 s-1 with an uncertainty of ± 5.7%. The coefficient of local head loss (K) was close to 0.55 for Reynolds number values higher than 10(5). The developed EDFF is a low-cost and stand-alone system with potential for agricultural applications.
机译:这项研究介绍了一种基于人体浸入流体流时所受阻力的电子流量计的开发。其主要目标是开发使用称重传感器的电子阻力流量计(EDFF)以及对其性能参数进行评估。所开发的流量计不需要专门的人工,设备,计算机或任何复杂的方法,即可提供一种简单而准确的流量估算方法。这项研究在以下阶段进行:(i)EDFF机械结构开发; (ii)数据采集系统和嵌入式软件设计; (iii)评估EDFF性能参数。 EDFF具有用于瞬时流量测量,交互式校准以及多种流量计参数调整的例程,从而允许通过RS232协议进行数据传输。实时流量测量任务每隔七秒更新一次瞬时流量值,从而实现单位选择。交互式校准程序在所有校准过程中指导用户在EDFF的显示屏上显示说明。使用Grubbs测试在嵌入式软件中实施了数据数字过滤程序,以便识别并从获取的数据中删除异常值。最小二乘法也已在嵌入式软件中实现,以便在校准过程中计算拟合模型系数。该流量计能够在1.94至7.78 dm3 s-1的范围内工作,不确定度为±5.7%。对于高于10(5)的雷诺数,局部头部损失系数(K)接近0.55。发达的EDFF是一种低成本的独立系统,具有农业应用潜力。

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