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contributor authorD. J. Dorney
contributor authorJ. R. Schwab
date accessioned2017-05-08T23:51:51Z
date available2017-05-08T23:51:51Z
date copyrightOctober, 1996
date issued1996
identifier issn0889-504X
identifier otherJOTUEI-28655#783_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/117808
description abstractExperimental data taken from gas turbine combustors indicate that the flow exiting the combustor can contain both circumferential and radial temperature gradients. A significant amount of research recently has been devoted to studying turbine flows with inlet temperature gradients, but no total pressure gradients. Less attention has been given to flows containing both temperature and total pressure gradients at the inlet. The significance of the total pressure gradients is that the secondary flows and the temperature redistribution process in the vane blade row can be significantly altered. Experimental data previously obtained in a single-stage turbine with inlet total temperature and total pressure gradients indicated a redistribution of the warmer fluid to the pressure surface of the airfoils, and a severe underturning of the flow at the exit of the stage. In a concurrent numerical simulation, a steady, inviscid, three-dimensional flow angle distribution, In the current research program, a series of unsteady two-and three-dimensional Navier–Stokes simulations have been performed to study the redistribution of the radial temperature profile in the turbine stage. The three-dimensional analysis predicts both the temperature redistribution and the flow underturning observed in the experiments.
publisherThe American Society of Mechanical Engineers (ASME)
titleUnsteady Numerical Simulations of Radial Temperature Profile Redistribution in a Single-Stage Turbine
typeJournal Paper
journal volume118
journal issue4
journal titleJournal of Turbomachinery
identifier doi10.1115/1.2840934
journal fristpage783
journal lastpage791
identifier eissn1528-8900
keywordsComputer simulation
keywordsTurbines
keywordsTemperature profiles
keywordsFlow (Dynamics)
keywordsTemperature
keywordsPressure gradient
keywordsTemperature gradients
keywordsCombustion chambers
keywordsEngineering simulation
keywordsGas turbines
keywordsFluids
keywordsBlades
keywordsPressure AND Airfoils
treeJournal of Turbomachinery:;1996:;volume( 118 ):;issue: 004
contenttypeFulltext


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