首页> 外文期刊>SIAM Journal on Control and Optimization >GAS FLOW IN FAN-SHAPED NETWORKS: CLASSICAL SOLUTIONS AND FEEDBACK STABILIZATION
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GAS FLOW IN FAN-SHAPED NETWORKS: CLASSICAL SOLUTIONS AND FEEDBACK STABILIZATION

机译:扇形网络中的气体流动:经典解决方案和反馈稳定化

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摘要

We analyze the subcritical gas flow through fan-shaped networks of pipes, that is, through tree-shaped networks with exactly one node where more than two pipes meet. The gas flow in pipe networks is modeled by the isothermal Euler equations, a hyperbolic PDE system of balance laws. For this system we analyze stationary states and classical nonstationary solutions locally around a stationary state on a finite time interval. Furthermore, we present a Lyapunov function and boundary feedback laws to stabilize a fan-shaped network around a given stationary state.
机译:我们分析了通过扇形管网络(即恰好在一个节点上有两个以上管道汇合的树形网络)的亚临界气流。管网中的气体流量通过等温Euler方程(平衡律的双曲PDE系统)建模。对于此系统,我们在有限的时间间隔内分析稳态附近的稳态和经典非平稳解。此外,我们提出了一个Lyapunov函数和边界反馈定律,以稳定给定稳态附近的扇形网络。

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