Computational Fluid Dynamics Analysis of Flow in High Speed Turbine using Fluent
Bidhan Kumar Pradhan
Abstract
Bidhan Kumar Pradhan
Abstract
This project deals with the computational fluid dynamics analysis of flow in high speed turbine. This involves with the three dimensional analysis of flow through of a high turbine having radial inlet and axial outlet. The software used for this purpose are GAMBIT and FLUENT. The 3 D model of the parts of the turbine are made by GAMBIT and analysis are to be carried out by FLUENT. The models are first generated using the data and then are meshed and then various velocity and pressure contours are to be drawn and graphed in this paper to analyze the flow through the cryogenic turbine. Various graphs indicating the variation of velocity, pressure and temperature along the stream length of the turbine are given.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This project deals with the computational fluid dynamics analysis of flow in high speed turbine. This involves with the three dimensional analysis of flow through of a high turbine having radial inlet and axial outlet. The software used for this purpose are GAMBIT and FLUENT. The 3 D model of the parts of the turbine are made by GAMBIT and analysis are to be carried out by FLUENT. The models are first generated using the data and then are meshed and then various velocity and pressure contours are to be drawn and graphed in this paper to analyze the flow through the cryogenic turbine. Various graphs indicating the variation of velocity, pressure and temperature along the stream length of the turbine are given.
Key concepts: Gambit, Fluent, Computational fluid dynamics, Turbine, Inlet, Flow (mathematics), Fluid dynamics, Mechanics