Constrained exact boundary controllability of a semilinear model for pipeline gas flow

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
M. Gugat, J. Habermann, M. Hintermüller, Olivier Huber
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引用次数: 3

Abstract

Abstract While the quasilinear isothermal Euler equations are an excellent model for gas pipeline flow, the operation of the pipeline flow with high pressure and small Mach numbers allows us to obtain approximate solutions by a simpler semilinear model. We provide a derivation of the semilinear model that shows that the semilinear model is valid for sufficiently low Mach numbers and sufficiently high pressures. We prove an existence result for continuous solutions of the semilinear model that takes into account lower and upper bounds for the pressure and an upper bound for the magnitude of the Mach number of the gas flow. These state constraints are important both in the operation of gas pipelines and to guarantee that the solution remains in the set where the model is physically valid. We show the constrained exact boundary controllability of the system with the same pressure and Mach number constraints.
管道气体流动半线性模型的约束精确边界可控性
摘要虽然准线性等温欧拉方程是一个很好的气体管道流动模型,但高压和小马赫数管道流动的操作使我们能够通过一个更简单的双线性模型获得近似解。我们给出了该模型的一个推导,表明该模型对于足够低的马赫数和足够高的压力是有效的。我们证明了一个连续解的存在性结果,该结果考虑了压力的下界和上界以及气流马赫数大小的上界。这些状态约束在天然气管道的运行中都很重要,并确保解决方案保持在模型物理有效的集合中。我们给出了在相同压力和马赫数约束下系统的约束精确边界可控性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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