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Port-Hamiltonian Modelling of Fluid Dynamics Models with Variable Cross-Section

IFAC-PapersOnLine(2021)

Cited 5|Views28
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Abstract
Many single- and multi-phase fluid dynamical systems are governed by non-linear evolutionary equations. A key aspect of these systems is that the fluid typically flows across spatially and temporally varying cross-sections. We, first, show that not any choice of state-variables may be apt for obtaining a port-Hamiltonian realization under spatially varying cross-section. We propose a modified choice of the state-variables and then represent fluid dynamical systems in port-Hamiltonian representations. We define these port-Hamiltonian representations under spatial variation in the cross-section with respect to a new proposed state-dependent and extended Stokes- Dirac structure. Finally, we account for temporal variations in the cross-section and obtain a suitable structure that respects key properties, such as, for instance, the property of dissipation inequality.
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Key words
multi-phase,non-linear,evolutionary equations,varying cross-sections,port-Hamiltonian,Stokes-Dirac structure,dissipation inequality
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