Control and Simulation of A 13C Isotope Separation Process

Roxana M. Motorga, V. Muresan, M. Abrudean
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引用次数: 1

Abstract

This paper is presenting a control solution for the concentration of the 13C isotope, both at the output and inside of the separation column; the proposed solutions are a relay and a PID controller. The 13C isotope results after a distributed parameter process, specifically the chemical exchange process of the carbon dioxide and carbamate. The analytical solution that was determined in order to model the described process is simulated. The evolution of the proposed solution depends on two parameters: the position in the column height and the time. The reference model is simulated in order to reach to the desired concentration using an acceptable flow of solution. The tuning method for the PID controller is Ziegler-Nichols, based on the bipositional relay. The advantage obtained during this control process consists of the possibility of reaching the desired concentration of the 13C isotope at any point of height inside the separation column.
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a13c同位素分离过程的控制与模拟
本文提出了一种控制13C同位素浓度的方法,可以同时控制分离柱输出和分离柱内部的浓度;提出的解决方案是继电器和PID控制器。13C同位素经过了一个分布参数过程,即二氧化碳与氨基甲酸酯的化学交换过程。为模拟所述过程而确定的解析解进行了仿真。所提出的解决方案的演变取决于两个参数:在柱的高度和时间的位置。为了使用可接受的溶液流达到所需的浓度,模拟了参考模型。PID控制器的整定方法是基于双位置继电器的齐格勒-尼科尔斯整定方法。在此控制过程中获得的优点包括在分离柱内的任何高度上都有可能达到所需的13C同位素浓度。
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