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contributor authorWei Zhang
contributor authorBu Geun Paik
contributor authorYoung Gil Jang
contributor authorSu Eon Lee
contributor authorJin Hwan Kim
contributor authorSang Joon Lee
date accessioned2017-05-09T00:23:44Z
date available2017-05-09T00:23:44Z
date copyrightApril, 2007
date issued2007
identifier issn1528-8919
identifier otherJETPEZ-26949#411_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/135738
description abstractThe three-dimensional flow structure inside an exhaust hood model of a low-pressure steam turbine was investigated using a particle image velocimetry (PIV) velocity field measurement technique. The PIV measurements were carried out in several selected planes under design operation conditions with simulated total pressure distribution and axial velocity profile. The mean flow fields revealed a complicated vortical flow structure and the major sources of energy loss. Vortices with different scales were observed inside the exhaust hood: a strong separation vortex (SV) behind the tip of the guide vane, a longitudinal vortex (LV) at the exhaust hood top, a large-scale passage vortex (PV) evolving throughout the flow path, and an end-wall vortex (EWV) in the region adjacent to the front end-wall. Both the SV and the large-scale PV seemed to consume large amounts of kinetic energy and reduce the pressure recovery ability. The results indicate that the steam guide vane and the bearing cone should be carefully designed so as to control the vortical flow structure inside the exhaust hood.
publisherThe American Society of Mechanical Engineers (ASME)
titleParticle Image Velocimetry Measurements of the Three-Dimensional Flow in an Exhaust Hood Model of a Low-Pressure Steam Turbine
typeJournal Paper
journal volume129
journal issue2
journal titleJournal of Engineering for Gas Turbines and Power
identifier doi10.1115/1.2431387
journal fristpage411
journal lastpage419
identifier eissn0742-4795
keywordsPressure
keywordsFlow (Dynamics)
keywordsExhaust systems
keywordsMeasurement
keywordsParticulate matter
keywordsSteam turbines
keywordsKinetic energy AND Vortices
treeJournal of Engineering for Gas Turbines and Power:;2007:;volume( 129 ):;issue: 002
contenttypeFulltext


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