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Performance monitoring of a hydrocyclone based on underflow discharge angle

机译:基于底流排放角的水力旋流器性能监测

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摘要

The performance of a hydrocyclone as a separation device is never perfect and rigorous research efforts are still continuing along various directions towards achieving optimum solutions. The modus operandi of performance optimization is important for quick and non-invasive monitoring of hydrocyclone performance. Therefore, in the present study, an application potential of spray angle as a performance monitoring tool has been explored to investigate the operation state of a hydrocyclone. In this context, phenomenological features of spray discharge over a wide range of injection pressure and feed solid concentration have been investigated. The emphasis of the present study is to verse the amendment of the hydrocyclone operational state with the corresponding change in underflow discharge pattern. The pattern of the underflowdischarge profilewas captured using a digital camera and analyzed based on an image processing algorithm to detect the discharge angle under different operating and design conditions. Stability and reproducibility of the spray angle at fixed operating condition have also been confirmed. Subsequent analysis shows that the spray angle is sensitive to variations of operating and design variables. More specifically the effect of feed slurry concentration has been characterized and is of major importance for the transition to roping. On this basis, an attempt has also been made to develop an empirical correlation based on experimental data. The developed correlation shows that the discharge angle could possibly be used as a reliable tool to monitor hydrocyclone performance.
机译:水力旋流器作为分离装置的性能从来都不是完美的,并且仍在朝着实现最佳解决方案的各个方向继续进行严格的研究。性能优化的方法操作对于快速且无创地监测水力旋流器性能非常重要。因此,在本研究中,已经探索了喷雾角作为性能监测工具的应用潜力,以研究水力旋流器的工作状态。在这种情况下,已经研究了在较大的注射压力和进料固体浓度范围内喷雾排放的现象学特征。本研究的重点是对水力旋流器工作状态的修正与底流排放模式的相应变化相对应。使用数码相机捕获下溢流量曲线的模式,并基于图像处理算法进行分析,以检测不同操作和设计条件下的排放角度。还已经确定了在固定操作条件下喷雾角的稳定性和再现性。随后的分析表明,喷雾角度对操作和设计变量的变化敏感。更具体地说,已经表征了进料浆浓度的影响,这对于过渡到成绳是至关重要的。在此基础上,还尝试根据实验数据开发经验相关性。所发展的相关性表明,排放角可以用作监测水力旋流器性能的可靠工具。

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