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Measurement of bulk material flow based on laser scanning technology for the energy efficiency improvement of belt conveyors

机译:基于激光扫描技术的散装物料流量测量,以提高带式输送机的能效

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Bulk material flow is the key variable of speed control technology and is responsible for the improving energy efficiency in belt conveyors. This paper presents the design and verification of a mathematical model intended for the measurement of bulk material flow on belt conveyor using laser scanning technology. This problem is solved using the method of non-contact measurement, which can acquire the surface profile of bulk materials moving on a belt conveyor in real-time using a laser scanner and a belt speed monitor. A contour extraction solution is proposed in accordance with the space's morphological characteristics and the material flow outline in one frame. By integrating the element areas of the bulk material cross section, a mathematical model to calculate the flow rate of bulk materials on moving belt is established. The main advantage of these models is that the measure accuracy is less affected that previous model by the uneven distribution and intermittence of bulk materials. The concept of the experimental rig at Wuhan University of Technology of China is designed so that it represents a 3.5 m long belt conveyor system on which bulk material flow detecting experiments can be conducted. When the belt operates at speed of 0.5 m/s, 1.0 m/s and 1.5 m/s, the repeatability, the correlation and the variation coefficient of the measurement value are more than 98%. The experimental results prove the excellent characteristics of the new device for real practice because the characteristics correspond to real operational conditions. The obtained results are useful for analysing belt mechanical properties under real operational conditions and for optimising operating procedures of belt conveyor systems. (C) 2015 Published by Elsevier Ltd.
机译:散装物料流是速度控制技术的关键变量,它负责提高带式输送机的能效。本文介绍了旨在使用激光扫描技术测量皮带输送机上散装物料流量的数学模型的设计和验证。使用非接触式测量方法可以解决此问题,该方法可以使用激光扫描仪和皮带速度监控器实时获取在皮带输送机上移动的散装物料的表面轮廓。根据空间的形态特征和一帧中的物料流轮廓,提出了轮廓提取解决方案。通过整合散装物料横截面的元素面积,建立了一个数学模型来计算散装物料在移动带上的流速。这些模型的主要优点是,由于散装材料的不均匀分布和间歇性,与以前的模型相比,测量精度受到的影响较小。中国武汉理工大学实验台的概念经设计,代表了3.5 m长的皮带输送机系统,可在该系统上进行散装物料流检测实验。当皮带以0.5 m / s,1.0 m / s和1.5 m / s的速度运行时,测量值的可重复性,相关性和变异系数大于98%。实验结果证明了该新设备在实际实践中的出色特性,因为这些特性与实际操作条件相对应。获得的结果对于分析实际运行条件下的皮带机械性能以及优化皮带输送机系统的运行程序很有用。 (C)2015由Elsevier Ltd.出版

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