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Master of Technology in Computational Fluid Dynamics with Specialization In Turbomachinery Engineering

Master of Technology in Computational Fluid Dynamics with Specialization In Turbomachinery Engineering

at University of Petroleum and Energy Studies India

Overview

Turbomachinery is the term used to broadly describe the rotating components in the jet engine. It is an arrangement designed to convert kinetic energy into other forms of usable energy, depending upon the application of the unit. Turbomachinery covers industries from energy conversion to the aeronautical engineering sector. Because of its extensive use in the job market, getting qualified in turbomachinery is crucial for any engineering. Computational fluid dynamics (CFD) plays an essential role to analyse fluid flows and heat transfer situations by using numerical methods. Turbomachines involve internal and external fluid flow problems in compressors and turbines. CFD at present is one of the most important tools to design and analyse all types of turbomachinery flow physics. In the realm of turbomachinery, there is no shortage of diversity in the types of aero-thermal analysis of compressor and turbine as well as turbulent mixing in the flow passage area of the turbomachinery. Energy content is being added into and extracted from the flow and the resulting turbulent structures are not only taken for a ride, but precisely manipulated to maximize the performance of the system. For example, consider the cooling flow which is meant to blanket and protect the blade surface, as in the media below. The turbulence between the primary flow and the blanket of cooling flow streams has a massive impact on the effectiveness in shielding the metal parts from high heat loads.

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30

Application Processing Days

Under Graduate

Program Level

Fact & Figures

Full Time On Campus

Study Mode

24

Duration

University of Petroleum and Energy Studies

Location

Master of Technology in Computational Fluid Dynamics with Specialization In Turbomachinery Engineering Assistant Fee

$220000

Tuition Fee

$NA

Average Cost of Living

$1300

Application Fee

Master of Technology in Computational Fluid Dynamics with Specialization In Turbomachinery Engineering Admissions Requirements

Minimum 60% marks at Higher and Senior Secondary level (10th and 12th).
B. Tech /BE in Aerospace/ Aeronautical/ Mechanical/ Civil/ Chemical Eng. with minimum 60% marks. Or equivalent

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Detailed Program and Facts

30

Application Processing Days

Full Time On Campus

Program Intensity

Under Graduate

Program Level

24

Duration

Study Visa

Turbomachinery is the term used to broadly describe the rotating components in the jet engine. It is an arrangement designed to convert kinetic energy into other forms of usable energy, depending upon the application of the unit. Turbomachinery covers industries from energy conversion to the aeronautical engineering sector. Because of its extensive use in the job market, getting qualified in turbomachinery is crucial for any engineering. Computational fluid dynamics (CFD) plays an essential role to analyse fluid flows and heat transfer situations by using numerical methods. Turbomachines involve internal and external fluid flow problems in compressors and turbines. CFD at present is one of the most important tools to design and analyse all types of turbomachinery flow physics. In the realm of turbomachinery, there is no shortage of diversity in the types of aero-thermal analysis of compressor and turbine as well as turbulent mixing in the flow passage area of the turbomachinery. Energy content is being added into and extracted from the flow and the resulting turbulent structures are not only taken for a ride, but precisely manipulated to maximize the performance of the system. For example, consider the cooling flow which is meant to blanket and protect the blade surface, as in the media below. The turbulence between the primary flow and the blanket of cooling flow streams has a massive impact on the effectiveness in shielding the metal parts from high heat loads.

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