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Online acoustic chemometric monitoring of fish feed pellet velocity in a pneumatic conveying system

机译:在线声学化学计量监测鱼饲料颗粒速度在气动输送系统

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摘要

Fish farmers consider the cost of fish feed pellets as one of the most expensive factors in fish cultivation. Proper control of the handling and conveying systems is necessary to avoid damage and disintegration of the cylindrically shaped fish feed pellets. Pneumatic conveying is widely used to transport large quantities of fish feed. Proneness of crushing the fish feed pellets caused by pellets interaction with the inner wall of the pipeline is a major concern to the manufacturer due to the associated economic loss; pellet damage increases exponentially with the conveying air velocity. On the other hand, too low conveying rates would lead to pipeline blockages and severe pipe vibration. In order to address the foregoing issues, it is necessary to optimize the conveying velocity of fish feed pellets during pneumatic transport. Application of an on-line monitoring technique based on non-invasive passive acoustic measurements and multivariate regression modeling (acoustic chemometrics) was investigated. A partial least squares regression (PLS-R) model was calibrated to predict pellet velocity from 19 m/s to 36 m/s in a pilot scale pneumatic conveying system. The PLS-R prediction model was validated based on independent experimental data (test set validation). The root mean square error of prediction (RMSEP), slope and r2 of the prediction results were 0.64 m/s, 1.02 and 0.97 respectively. The prediction results obtained shows the applicability of acoustic chemometrics for real-time prediction of the velocities of fish feed pellets during pneumatic conveying.
机译:养鱼者认为鱼饲料颗粒的成本是养鱼中最昂贵的因素之一。必须正确控制处理和输送系统,以免损坏圆柱形鱼饲料颗粒。气力输送被广泛用于输送大量鱼饲料。由于颗粒物与管道内壁的相互作用,导致鱼饲料颗粒物易于破碎是制造商的主要关切,因为这会造成相关的经济损失。颗粒的损伤随输送的空气速度呈指数增加。另一方面,过低的输送速度会导致管道堵塞和严重的管道振动。为了解决上述问题,有必要在气动运输过程中优化鱼饲料颗粒的输送速度。研究了一种基于无创被动声学测量和多元回归建模(声学化学计量学)的在线监测技术的应用。校准了偏最小二乘回归(PLS-R)模型,以在中试规模的气力输送系统中预测颗粒速度从19 m / s到36 m / s。基于独立的实验数据对PLS-R预测模型进行了验证(测试集验证)。预测的均方根误差(RMSEP),斜率和r2分别为0.64 m / s,1.02和0.97。获得的预测结果表明,声学化学计量学可用于气动输送过程中鱼饲料颗粒速度的实时预测。

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