An Alternative Numerical Model for Investigating Three- Dimensional Steam Turbine Exhaust Hood
Publish place: Journal of Applied Fluid Mechanics، Vol: 13، Issue: 2
Publish Year: 1398
Type: Journal paper
Language: English
View: 227
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Document National Code:
JR_JAFM-13-2_021
Index date: 5 January 2022
An Alternative Numerical Model for Investigating Three- Dimensional Steam Turbine Exhaust Hood abstract
A proper design of exhaust hood geometry is very much essential in order to improve the overall efficiency of the steam turbine plant. The geometry of the non-axisymmetric exhaust hood makes the fluid flow at the exit of the steam turbine to be radially and circumferentially non-uniform. This work involves computational simulation of steam turbine asymmetric exhaust hood flows by incorporating the actuator-disc concept. The ANSYS FLUENT, finite volume based CFD solver is used for the present computational study. In the present simulation, the implementation of actuator disc boundary conditions with and without tip leakage is described in detail. The Actuator disc model approach exhibits a similar steam turbine exhaust hood flow asymmetry and static pressure recovery compared with the results reported in the literature, highlighting the applicability of the present model in coupling the rotor tip leakage jet with the steam turbine hood flow structure with less computational effort.
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An Alternative Numerical Model for Investigating Three- Dimensional Steam Turbine Exhaust Hood authors
S. Sadasivan
School of Mechanical Engineering, Vellore Institute of Technology, India-۶۳۲ ۰۱۴
S. K. Arumugam
CO۲ Research and Green Technologies Centre, Vellore Institute of Technology, India-۶۳۲ ۰۱۴
M. C. Aggarwal
Department of Mechanical Engineering, Gannon University, PA, USA