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Dry chip feedrate control using online chip moisture

机译:使用在线芯片水分的干芯片进料控制

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Normal practice in continuous digester operation is to set the production rate through the chip meter speed. This speed is seldom, if ever, adjusted except to change production, and most of the other digester inputs are ratioed to it. The inherent assumption is that constant chip meter speed equates to constant dry mass flow of chips. This is seldom, if ever, true. As a result, the actual production rate, effective alkali (EA)-to-wood and liquor-to-wood ratios may vary substantially from assumed values. This increases process variability and decreases profits. In this report, a new continuous digester production rate control strategy is developed that addresses this shortcoming. A new noncontacting near infrared-based chip moisture sensor is combined with the existing weightometer signal to estimate the actual dry chip mass feedrate entering the digester. The estimated feedrate is then used to implement a novel feedback control strategy that adjusts the chip meter speed to maintain the dry chip feedrate at the target value. The report details the results of applying the new measurements and control strategy to a dual vessel continuous digester.
机译:连续蒸煮器操作中正常做法是通过芯片表速度设定生产速率。如果有的话,这种速度很少,除了改变生产外,还有大多数其他蒸煮器输入都与它比率。固有假设是恒定芯片计速度等于芯片的恒定干燥质量流动。如果有的话,这很少。结果,实际生产率,有效碱(EA)-TO-木材和液体到木材比率可能大大从假定的值变化。这增加了过程变异性并降低了利润。在本报告中,开发了一种新的连续挖掘机生产率控制策略,解决了这种缺点。一种新的非联系基于近红外线芯片湿度传感器与现有的加权计信号相结合,以估计进入蒸煮器的实际干芯片质量饲料。然后使用估计的进给率来实现新的反馈控制策略,该策略调整芯片表速度,以保持目标值处的干芯片进给率。该报告详细说明了将新测量和控制策略应用于双舰艇连续蒸煮器的结果。

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