Unsteady behavior of wall-detached flow inside a steam turbine control valve

Wall-detached flow inside an ultra-supercritical steam turbine control valve was comprehensively investigated with detached-eddy simulation, proper orthogonal decomposition (POD), and flow reconstruction. The dependency of the wall-detached flow on the control valve’s opening ratio and pressure rati...

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Main Authors: Wang, P, Xu, S, He, L, Liu, Y
Format: Journal article
Language:English
Published: AIP Publishing 2019
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author Wang, P
Xu, S
He, L
Liu, Y
author_facet Wang, P
Xu, S
He, L
Liu, Y
author_sort Wang, P
collection OXFORD
description Wall-detached flow inside an ultra-supercritical steam turbine control valve was comprehensively investigated with detached-eddy simulation, proper orthogonal decomposition (POD), and flow reconstruction. The dependency of the wall-detached flow on the control valve’s opening ratio and pressure ratio was established first. Scattered wall-detached-flow, merged wall-detached-flow, and intersected wall-detached-flow were then identified by distinguishing the detachment scale of the wall-detached jet. Subsequently, flow analysis was conducted in terms of the statistical flow quantities, i.e., velocity fluctuation, turbulent kinetic energy, pressure loss, and pressure fluctuation. The statistical results demonstrated that the merged wall-detached-flow facilitated the most intensive velocity and pressure fluctuations inside the steam turbine control valve. The intersected wall-detached-flow encountered significant shock-wave reflections along the downstream pipe. By conducting POD analysis and flow reconstruction on the instantaneous flow snapshots, the dominant vortex structures and energetic pressure fluctuation modes were extracted to illustrate the wall-detached flow’s unsteady behavior. The results showed that the instabilities of the scattered wall-detached-flow were primarily represented by the horizontal flapping motion of the wall-detached jet. However, for the merged wall-detached-flow, both the vertical out-phase oscillation and the horizontal flapping motion of the wall-detached jet intensified, yielding essential axial pressure fluctuation modes. As for the intersected wall-detached-flow, due to the complex wave reflections and propagations, essential regions with velocity discontinuities and diagonal crosslines with intensive pressure fluctuations formed inside the valve pipe. These findings are of great practical significance for the operation and optimization of steam turbine control valves in thermal power plants.
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spelling oxford-uuid:dd602629-ac4e-46fe-a774-0fe216c4b8f22022-03-27T09:24:37ZUnsteady behavior of wall-detached flow inside a steam turbine control valveJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:dd602629-ac4e-46fe-a774-0fe216c4b8f2EnglishSymplectic Elements at OxfordAIP Publishing2019Wang, PXu, SHe, LLiu, YWall-detached flow inside an ultra-supercritical steam turbine control valve was comprehensively investigated with detached-eddy simulation, proper orthogonal decomposition (POD), and flow reconstruction. The dependency of the wall-detached flow on the control valve’s opening ratio and pressure ratio was established first. Scattered wall-detached-flow, merged wall-detached-flow, and intersected wall-detached-flow were then identified by distinguishing the detachment scale of the wall-detached jet. Subsequently, flow analysis was conducted in terms of the statistical flow quantities, i.e., velocity fluctuation, turbulent kinetic energy, pressure loss, and pressure fluctuation. The statistical results demonstrated that the merged wall-detached-flow facilitated the most intensive velocity and pressure fluctuations inside the steam turbine control valve. The intersected wall-detached-flow encountered significant shock-wave reflections along the downstream pipe. By conducting POD analysis and flow reconstruction on the instantaneous flow snapshots, the dominant vortex structures and energetic pressure fluctuation modes were extracted to illustrate the wall-detached flow’s unsteady behavior. The results showed that the instabilities of the scattered wall-detached-flow were primarily represented by the horizontal flapping motion of the wall-detached jet. However, for the merged wall-detached-flow, both the vertical out-phase oscillation and the horizontal flapping motion of the wall-detached jet intensified, yielding essential axial pressure fluctuation modes. As for the intersected wall-detached-flow, due to the complex wave reflections and propagations, essential regions with velocity discontinuities and diagonal crosslines with intensive pressure fluctuations formed inside the valve pipe. These findings are of great practical significance for the operation and optimization of steam turbine control valves in thermal power plants.
spellingShingle Wang, P
Xu, S
He, L
Liu, Y
Unsteady behavior of wall-detached flow inside a steam turbine control valve
title Unsteady behavior of wall-detached flow inside a steam turbine control valve
title_full Unsteady behavior of wall-detached flow inside a steam turbine control valve
title_fullStr Unsteady behavior of wall-detached flow inside a steam turbine control valve
title_full_unstemmed Unsteady behavior of wall-detached flow inside a steam turbine control valve
title_short Unsteady behavior of wall-detached flow inside a steam turbine control valve
title_sort unsteady behavior of wall detached flow inside a steam turbine control valve
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