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The impact of process design decisions on operability and control of an LNG process

机译:工艺设计决策对液化天然气工艺的可操作性和控制的影响

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This paper describes a framework for integrated process and control structure design, and applies this framework to a Liquefied Natural Gas (LNG) process design. The overall aim of the work is to contribute to the methodological basis for improved design and operability of gas processing plants. Good operability means essentially that a plant can be operated easily, i.e. it can cope with unknown disturbances, offsets and other uncertainties with the smallest possible profit loss and without frequent shutdowns. This is obtained both through the design of the process itself and the design of the control system. There is a potential for improved operability of process plants, and thereby reduced profit loss, by considering these two aspects together. The main message is that this is handled by considering control structure design when process design changes are made. The main steps for developing an improved procedure for integrated process and control design are suggested. Such a procedure includes analyses of how altering key parameters in the process design affects the best possible control structure in the presence of defined disturbance scenarios. An important ingredient is the use of a dynamic, control relevant simulation model. The paper presents an analysis of how altering compressor size affects the choice of control structure for the Tealarc LNG process. This analysis has been carried out using a self-optimizing control methodology.
机译:本文介绍了用于集成过程和控制结构设计的框架,并将该框架应用于液化天然气(LNG)过程设计。这项工作的总体目标是为改进气体处理厂的设计和可操作性提供方法学基础。良好的可操作性从本质上讲意味着工厂可以轻松地进行操作,即,它可以以最小的利润损失并且无需频繁停机来应对未知的干扰,补偿和其他不确定性。这可以通过过程本身的设计和控制系统的设计来获得。通过同时考虑这两个方面,可以提高加工厂的可操作性,从而减少利润损失。主要信息是,在进行流程设计更改时,可以通过考虑控制结构设计来解决此问题。建议了开发改进的过程以集成过程和控制设计的主要步骤。这样的过程包括分析在存在确定的干扰场景的情况下,在过程设计中更改关键参数如何影响最佳的控制结构。重要的因素是使用动态的,控制相关的仿真模型。本文分析了改变压缩机尺寸对Tealarc液化天然气工艺控制结构的选择的影响。该分析是使用自优化控制方法进行的。

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