M.Tech. in Thermal Science & Energy Systems is a two-year postgraduate program that focuses on the study of energy, thermodynamics, and heat transfer systems. This program is designed to impart knowledge and skills required for developing efficient and sustainable energy systems.
M. Tech in Thermal Sciences and Energy Systems (TSES) is a two-year postgraduate specialisation degree course offered by the Department of Mechanical and Industrial Engineering. The PG program aims at providing sufficient theoretical knowledge in the thermal and fluid sciences combined with simulation and experimental skills applied to renewable energy systems, heat exchangers, and fluid dynamics research. The program aims to equip students to showcase their expertise in advanced research fields like computation fluid dynamics, refrigeration and cryogenics, solar thermal systems,
Stream | Engineering |
Course | M.Tech. Inthermal Science And Energy Systems |
Full Name | Master Of Technology In Thermal Science And Energy Systems |
Eligibility | Graduation |
Duration | 2 Years |
Fees | 10000 |
Type | Degree |
Mode | Year |
2 years
Bachelor’s degree in relevant field with at least 50% marks
Candidates are generally required to have completed a Bachelor's degree in Mechanical Engineering, Chemical Engineering, Energy Engineering, Thermal Engineering, Aerospace Engineering, or a related field from a recognized institution. Some institutions may also consider candidates with degrees in relevant branches of Physics.
Many institutions have a minimum percentage or Grade Point Average (GPA) requirement for admission consideration. The specific minimum percentage or GPA may vary depending on the institution, but candidates are usually expected to have a strong academic record in their undergraduate studies.
Some institutions require candidates to have qualified in entrance exams such as the Graduate Aptitude Test in Engineering (GATE) or institution-specific entrance exams. GATE scores, particularly in disciplines like Mechanical Engineering or Chemical Engineering, are often preferred for admission to M.Tech. programs in Thermal Science and Energy Systems.
The institution offering the M.Tech. program releases notifications or advertisements regarding admissions, usually on its official website or through other communication channels. The notification includes details such as the program name, eligibility criteria, application deadlines, and the admission process.
Candidates must carefully review the eligibility criteria specified by the institution for admission to the M.Tech. program in Thermal Science and Energy Systems. Common eligibility criteria may include educational qualifications, minimum percentage or GPA, entrance exam scores, and any other specific requirements.
GATE (Graduate Aptitude Test in Engineering)
Based on GATE score, academic record, and personal interview
Relevant Background: Candidates with a background in subjects related to thermal sciences, energy systems, fluid mechanics, heat transfer, thermodynamics, combustion, and renewable energy are typically preferred. Previous coursework or practical experience in these areas may be advantageous.
Research Experience (if applicable): While not always mandatory, previous research experience, such as internships, projects, or publications in the field of thermal science and energy systems, can strengthen a candidate's application. Research experience demonstrates a candidate's commitment and suitability for advanced studies in the field.
English Proficiency (if applicable): For international applicants or programs conducted in English, proficiency in the English language may be required. Applicants may need to provide proof of English proficiency through standardized tests such as the TOEFL (Test of English as a Foreign Language) or IELTS (International English Language Testing System).
Online application through the respective institute’s website
Varies from institute to institute
Thermodynamics, Heat Transfer, Energy Systems Analysis, Renewable Energy Systems, Combustion, etc.
Core Courses:
Advanced Thermodynamics
Heat Transfer
Fluid Mechanics
Combustion Theory
Renewable Energy Sources
Energy Conversion Systems
Advanced Heat and Mass Transfer
Computational Fluid Dynamics (CFD)
Advanced Energy Engineering
Specialization Electives (Choose from specialized topics based on interest and career goals):
Advanced Power Plant Engineering
Refrigeration and Air Conditioning
Solar Energy Engineering
Wind Energy Systems
Biomass and Bioenergy Systems
Energy Storage Technologies
Energy Management and Audit
Advanced Heat Exchangers
Advanced Turbomachinery
Advanced Internal Combustion Engines
Thermal and Energy Systems Design:
Design of Thermal Systems
Design of Energy Systems
Advanced HVAC System Design
Design Optimization Techniques
Renewable Energy System Design
Energy-Efficient Building Design
Energy Analyst, Research Scientist, Design Engineer, Energy Consultant, etc.
Here is a step-by-step guide on how to apply for M.Tech. in Thermal Science & Energy Systems:
Check the eligibility criteria of the institute you want to apply to
Register for GATE and appear for the exam
Apply for the M.Tech. program through the respective institute’s website
Upload the required documents (academic certificates, GATE scorecard, etc.)
Pay the application fee online
Submit the application form
The salary and job opportunities after completing M.Tech. in Thermal Science & Energy Systems vary depending on the institute, company, and job profile. However, some common job profiles and their salaries are:
Energy Analyst: INR 3-6 lakhs per annum
Research Scientist: INR 5-10 lakhs per annum
Design Engineer: INR 4-8 lakhs per annum
Energy Consultant: INR 4-10 lakhs per annum
Overall, M.Tech. in Thermal Science & Energy Systems is a lucrative career option for those interested in sustainable energy and energy systems design.
India is vitality starved nation and per capita utilization of vitality in India is one of the most minimal on the planet. India faces a considerable test in giving sufficient and effective vitality supplies to clients at a sensible expense. With a normal yearly development rate of 8-9 percent, it will be an incredible test to satisfy the vitality need, and creating it proficiently without contaminating the earth. This program is intended to empower the understudies to create skill in both hypothesis and plan of Thermal Systems, Energy Systems and Energy Management. The understudies likewise figure out how to reproduce different liquid, warm and vitality frameworks utilizing diverse computational instruments. They likewise do examinations to test different warm and vitality frameworks.
This program offers many profession alternatives for the adolescents in both open and private area associated with creation of vitality, structure and generation of warm frameworks and vitality frameworks. They will likewise get chances to join different Research and Development associations. This program additionally incorporates seminars on Micro Flows and Micro/Nano Heat Transfer which are vital in electronic hardware plan industry.
Qualification Criteria
Candidates ought to have any of the accompanying, scoring at least 60% with a pass. Four year certification in Engineering/Technology (counting the last year understudies anticipating the outcomes) Master's qualification in any part of Science/Mathematics/Statistics/Computer Applications Professional Society Examinations perceived by MHRD/UPSC/AICTE proportional to B.E. /B.Tech/B. Curve.