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Development of a Distribution System for Measuring Nozzle Integrative Parameters

机译:喷嘴综合参数测量分配系统的开发

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The experimental system used in this study was equipped with sensors and computer-controlled processing technology. This system was used in the measurement of major performance parameters such as pressure, flux, spray angle, spray distribution character of the nozzle and its integrative performance parameter. It could also achieve precise and synchronous measurements and process multiple parameters. Measuring position of a single nozzle was also available for three-dimensional adjustment by nozzle transmission frame. The boom could achieve two-dimensional precision adjustment. Fluid power supply system could ensure the accurate measurement of nozzle flow between 50~15000 ml/min. The control system consisted of a PC, a CCD image acquisition system, data acquisition cards, sensors, and single chip microcomputer. The spray angle was measured by image processing technique. Data fusion technology was used to improve the precise measurement of spray angle. Neural network technology was used to improve the precision and speed of the system. The results showed that it is promising for using this system for measuring nozzle integrative parameter.
机译:本研究中使用的实验系统配备了传感器和计算机控制的处理技术。该系统用于测量主要性能参数,例如压力,通量,喷雾角度,喷嘴的喷雾分布特性及其综合性能参数。它还可以实现精确和同步的测量并处理多个参数。单个喷嘴的测量位置也可以通过喷嘴传输框架进行三维调整。动臂可以实现二维精度调整。流体电源系统可确保在50〜15000 ml / min之间准确测量喷嘴流量。该控制系统由一台PC,一个CCD图像采集系统,数据采集卡,传感器和单片机组成。喷雾角通过图像处理技术测量。数据融合技术用于改善喷雾角度的精确测量。使用神经网络技术来提高系统的精度和速度。结果表明,该系统用于测量喷嘴综合参数是有希望的。

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