分数阶微积分在两相气/液流动系统建模中的应用

J. Nowakowski, P. Ostalczyk, D. Sankowski
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引用次数: 26

摘要

近年来,分数阶微积分在控制系统辨识中的应用越来越广泛,并有了新的应用。本文介绍了分数阶演算在某试验台气/液两相流动模拟中的应用。该装置由三个不同直径的水平和垂直测量段组成,可以在很宽的参数范围内测量流体。流量组件供应由NI PXI系统和一套流量计/控制器测量/控制。本文建立了上述装置的两相流模型,建立了精确的流动数学模型。流动模型的主要目标是描述稳定的流动参数,特别是流动分数或流动类型。该模型比经典二阶系统模型更准确地描述了流程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of fractional calculus for modelling of two-phase gas/liquid flow system
In recent years the use of fractional calculus in control system identification is becoming popular and it has found new applications. The paper presents application of fractional calculus for modelling of two-phase gas/liquid flows in a test rig. The installation consists of three horizontal and vertical measuring segments with different diameters, which allow to investigate flows in a wide range of parameters. Flow components supply is measured/controlled by NI PXI system and a set of flow meters/controllers. The paper presents model of the two-phase flow in the above described installation, which leads to precise and accurate flow mathematical model. The main goal of the flow model is to describe steady flow parameters, especially the flow fractions, or type of the flow. The model describes flows more accurately, that classical second order system model.
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