无组织甲烷排放催化燃烧的回流反应器lq控制

A. Fuxman, I. Aksikas, J. Forbes, R. Hayes, S. Hristo
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引用次数: 0

摘要

本文用无限维希尔伯特空间表示处理催化回流反应器的线性二次控制问题。在单向流催化反应器的基础上,研制了一种lq控制器。该控制器是利用流体的流动速度,使温度沿反应器轴线的分布保持在稳态状态。研究了该控制器在催化反应器逆流操作中的应用。利用催化管式反应器的双时间尺度特性,开发了一种只需沿反应器轴方向测量温度的控制器。利用无限维状态空间,通过求解Riccati微分方程,计算出状态lq反馈算子。开发的控制器在CFRR装置中进行了催化燃烧贫甲烷排放的数值测试,并在加拿大魁北克Varennes CANMET能源技术中心的反应器配置中实施,目前实验测试正在进行中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LQ-control of a flow reversal reactor for the catalytic combustion of fugitive methane emissions
This paper deals with linear-quadratic control problem for a catalytic flow reversal reactor using an infinite dimensional Hilbert space representation of the system. A LQ-controller is developed on the basis of the catalytic reactor with unidirectional flow. The controller is formulated to keep the distribution of the temperature along the axis of the reactor at stationary state by using the fluid flow velocity. We study the application of the controller on the catalytic reactor with reverse flow operation. We take advantage of the two-time scale characteristic of catalytic tubular reactors to develop a controller that requires only the measurement of the temperature along the axis of the reactor. Using the infinite dimensional state space, a state LQ-feedback operator is computed via the solution of a Riccati differential equation. The developed controller is tested numerically for the catalytic combustion of lean methane emissions in CFRR unit and implemented for a reactor configuration at the CANMET Energy Technology Centre Varennes, Quebec, Canada, and currently experimental tests are underway.
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