射流设备中气体质量流控制

N. Pryadko, A. D. Yhnatev, H. Shevelova, K. Ternova
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引用次数: 1

摘要

本文通过对喷射器内气流的数值模拟和对磨削腔声信号的分析,提出了提高射流磨削效率的方法。为了防止喷射器加速管的磨损和获得无杂质的磨粉产品,研究了在射流磨加速管中加入额外的载能流对加速管流动形态的影响。对比分析了附加进料和加速管形状对喷射器流型的影响。结果表明,锥形喷嘴在喷射器出口处的流动更为均匀。额外的能量载体进给量提供了均匀的流速增加,并减少了加速管壁磨损。针对磨机工作区域的声信号与射流磨工艺参数的关系,提出了一种磨产品质量控制方法。本文提出了一种利用声波监测的结果确定载能流中物料粒度的方法。该技术利用了流动物料输送中声信号特征频率的色散与相应裂缝质量之间的关系。该技术加快了物料粒度测定速度,提高了成品质量。根据磨削区声信号的特点,通过控制加载过程来实现磨削过程的自动控制。建立了燃气喷射磨控制料斗的工作模型。仿真模型包括控制对象(磨机)模型和控制系统模型,验证了控制系统的可操作性。结果表明,基于磨矿区声信号特征的磨机加载自动控制系统可使磨机容量提高10%,并在维尔诺霍斯克矿冶厂的工业条件下进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gas mass flow control in jet equipment
Based on a numerical simulation of gas flows in an ejector unit and an analysis of grinding chamber acoustic signals, this paper shows ways to increase the efficiency of jet grinding. To prevent ejector speed-up tube wear and to obtain a ground product without impurities, the effect of feeding an additional energy carrier flow on the flow pattern in the speed-up tube of a jet mill was studied. A comparative analysis of the ejector flow pattern as a function of the presence of an additional feed and the speed-up tube shape was carried out. It was shown that the use of a conical nozzle offers a more uniform flow at the ejector outlet. The additional energy carrier feed provides a uniform increase in flow speed and reduces speed-up tube wall wear. The acoustic signals of the mill working zones were related to the jet grinding process parameters, around which a ground product quality control method was developed. The paper presents a technique for determining the material particle size in the energy carrier flow from the results of acoustic monitoring of the process. The technique uses the established relationship between the dispersion of the acoustic signal characteristic frequency and the mass of the corresponding fracture of the mixture in in-flow material transportation. The technique speeds up material particle size determination and improves the finished product quality. An automatic system was developed to control the grinding process by controlling the loading process according to the characteristics of the grinding zone acoustic signals. An operating model of a controlled hopper of a gas jet mill was made. The operability of the control system was verified on a simulation model, which includes a control objet (mill) model and a control system model. It was shown that the system of mill loading automatic control by the characteristics of the grinding zone acoustic signals offers an up to 10 percent increase in mill capacity, which was verified in industrial conditions at Vilnohorsk Mining and Metallurgical Plant.
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