Counselling Code - 5912

Admission Merit Scholarship admission
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The M.E. in Energy Engineering program is designed to provide advanced knowledge and research skills in energy systems, renewable energy technologies, and energy management. This program prepares students for leadership roles in the energy sector, research organizations, and academia.

The curriculum focuses on both theoretical foundations and practical applications in areas like renewable energy systems, energy efficiency, power generation, and sustainable energy solutions.

  • Advanced coursework in energy systems and technologies
  • Research-oriented program with thesis component
  • Industry collaborations and internship opportunities
  • Experienced faculty with research expertise
  • State-of-the-art energy laboratories

Duration: 2 Years (4 Semesters)

Eligibility: B.E./B.Tech in Mechanical/Electrical/Chemical/Energy Engineering or related fields with valid GATE score

Course Fee: As per University Regulations

THE VISION

"To be a center of excellence in energy engineering education and research, producing innovative professionals capable of addressing global energy challenges through sustainable solutions."

THE MISSION

  • To provide advanced technical education in energy engineering through innovative teaching and research methodologies.
  • To foster industry-academia collaboration for developing sustainable energy solutions.
  • To promote ethical energy practices and lifelong learning among students.
  • To contribute to the development of clean and efficient energy technologies for societal benefit.

The Department of Energy Engineering offers a comprehensive postgraduate program that combines theoretical knowledge with practical applications in energy systems and technologies. Our faculty members are experts in their respective fields with extensive research and industry experience.

The program focuses on:

  • Renewable energy systems (Solar, Wind, Biomass, etc.)
  • Energy efficiency and conservation
  • Thermal and fluid systems
  • Power generation and distribution
  • Energy policy and management
  • Emerging energy storage technologies

Students have opportunities to work on cutting-edge research projects and collaborate with industry partners on real-world energy challenges.

  • ENERGY SYSTEMS LABORATORY
  • RENEWABLE ENERGY LAB
  • THERMAL ENGINEERING LAB
  • ENERGY EFFICIENCY LAB
  • POWER ELECTRONICS LAB
  • FLUID MECHANICS LAB
  • ENERGY STORAGE LAB
  • CONTROL SYSTEMS LAB
  • ENERGY AUDIT LAB
  • RESEARCH LAB FOR EMERGING ENERGY TECHNOLOGIES
  • To provide advanced knowledge in energy engineering theory and practice, enabling graduates to analyze, design, and implement sustainable energy solutions.
  • To develop research skills for innovation in energy technologies and systems.
  • To prepare graduates for leadership roles in energy industries, research organizations, and academia.
  • To foster professional ethics and commitment to lifelong learning in the rapidly evolving field of energy engineering.
  • To develop the ability to address energy challenges through sustainable and efficient technologies.

Postgraduate students will be able to:

  • Advanced Knowledge Apply advanced knowledge of mathematics, science, and engineering to solve complex energy problems.
  • Problem Analysis Identify, formulate, and analyze complex energy engineering problems using research principles.
  • Design/Development Design and develop solutions for complex energy systems considering sustainability, efficiency, and environmental factors.
  • Research Skills Conduct investigations of complex energy problems using appropriate research methodologies.
  • Modern Tools Create, select, and apply appropriate techniques and modern engineering tools for energy system design and analysis.
  • Professional Ethics Apply ethical principles and commit to professional ethics in energy engineering practice.
  • Communication Communicate effectively on complex technical activities with both technical and non-technical audiences.
  • Project Management Demonstrate knowledge of engineering and management principles to manage energy projects.
  • Lifelong Learning Recognize the need for and engage in independent lifelong learning in the context of technological change.

Graduates of the M.E. Energy Engineering program will be able to:

  • Design and analyze sustainable energy systems including renewable energy technologies.
  • Apply energy efficiency principles to optimize energy usage in various sectors.
  • Develop innovative solutions to emerging energy challenges through research and development.
  • Evaluate and implement energy policies and management strategies.