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Centrifugal compressor anti-surge control system modelling

机译:离心式压缩机防喘振控制系统建模

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© 2022 Institute of Advanced Engineering and Science. All rights reserved.From the middle of XX century, natural gas is an important mineral, widely used in the energy sector. Transportation of natural gas is carried out via gas pipeline networks and compression stations. One of the key features which need to be implemented for any centrifugal gas compressor is a surge protection. This article describes the method and develops software application intended for simulation and study of surge protection system of a centrifugal compressor used in modern gas compression stations. Within the article research method, modelling environment’s block diagram, proposed algorithms and results are described. For surge cases control and prediction, Anti-surge control block implemented which based on practical experience and centrifugal compressor theory. To avoid complicated energy balancing differential equations the volumetric flow calculation algorithm proposed which is used in combination with Redlich-Kwong equation of state. Developed software’s adequacy test performed through modeling of one-stage gas compression scheme at rated speed with comparison of parameters with reference commercial software and verification of the anti-surge control system.
机译:© 2022 先进工程科学研究所.保留所有权利。从二十世纪中叶开始,天然气是一种重要的矿物,广泛应用于能源领域。天然气的运输是通过天然气管道网络和压缩站进行的。任何离心式气体压缩机都需要实现的关键功能之一是电涌保护。本文介绍了用于模拟和研究现代气体压缩站中使用的离心式压缩机的浪涌保护系统的方法并开发了软件应用程序。在文章研究方法中,描述了建模环境的框图、所提出的算法和结果。针对浪涌情况的控制和预测,基于实践经验和离心式压缩机理论,实施了防浪涌控制模块。为了避免复杂的能量平衡微分方程,提出了体积流量计算算法,该算法与Redlich-Kwong状态方程结合使用。通过对额定速度下的单级气体压缩方案进行建模,并与参考商业软件进行参数比较,并验证防浪涌控制系统,开发软件的充分性测试。

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