Analysis of a model of a natural gas pipeline—a transfer function approach

Author:

Baker Luke1,Armbruster Dieter1,Scaglione Anna2,Platte Rodrigo B1

Affiliation:

1. School of Mathematical and Statistical Sciences, Arizona State University, Tempe, AZ 85287, USA

2. School of Electrical, Computer and Energy Engineering, Arizona State University, Tempe, AZ 8527, USA

Abstract

Abstract A framework for natural gas pipelines is developed in a context similar to the theory of electric transmission lines. The system of semi-linear partial differential equations describing the time-dependent flow of natural gas is linearized around the steady-state flow. Additional approximations lead to a constant coefficient linear system that is equivalent to an electrical circuit that is analytically solvable and admits an ABCD matrix representation of input and output. The sinusoidal steady-state operation of natural gas pipelines is analysed including the distortion of waves. It is shown that the timing of the propagation of phases and other events is accurately represented in the approximation. The quantitative accuracy for flux and gas density of the approximation depending on different operating scenarios and depending on the frequency of the disturbances is documented.

Funder

National Science Foundation

Director of the US Department of Energy

Publisher

Oxford University Press (OUP)

Reference20 articles.

1. A state space model for transient flow simulation in natural gas pipelines;Alamian;J. Nat. Gas Sci. Eng.,2012

2. Safe operation and flow reversal in natural gas pipelines;Baker,2021

3. Hyperbolic discretization via Riemann invariants;Grundel,2020

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