MSBTE Power Engineering and Refrigeration Video Lectures in FREE | MSBTE Diploma 22562 Mechanical Engineering

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1. Internal Combustion Engines

1.1(a) Power cycles: Engine terminology,


1.1(b) Working of 4 stroke engines,


1.1(c) Carnot cycle,


1.1(d) Otto cycle, theorem,


1.1(e) Diesel cycle,


1.1(f) Dual cycle,


1.1(g) Actual indicator diagrams for 4 stroke engines


1.2 Basic of IC Engines: Working and comparison of four stroke and two stroke cycle engines and SI and CI engines.


1.3(a) IC Engines auxiliaries: Valve timing Charger, diagrams,


1.3(b) VVT-I engines — concept and arrangement,


1.3(c) Supercharging - objectives and advantages, Turbocharging, Variable Geometry Turbochargers,


1.3(d) MPFI layout,


1.3(e) Rotary and inline fuel injection pump,


1.3(f) Piezoelectric injectors,


1.3(g) EGR layout,


1.3(h) Viscous coupling for fan.


1.4 Common rail direct injection diesel engines (CRDI) controlled by electronic control unit.


1.6 List of Methods to reduce pollution in diesel engines as prescribed in BS6

2. Testing of IC Engines and Emission Control

2.1(a) IC engine testing parameters: IP, BSFC,


2.1(b) Components of heat balance sheet,


2.1(c) Thermal and mechanical efficiency,


2.1(d) Morse test.


2.2(a) Combustion in IC cngines,


2.2(b) Octane Number (RON, MON)


2.2(c) Knock Resistance.


2.3(a) Exhaust emissions and control: Polluting emissions in IC engines, effects on environment


2.3(b) Measurement of exhaust emissions,


2.3(c) Effect of air-fuel ratio on exhaust emissions (with graph),


2.3(d) Euro IV and Euro VI norms for M and N1 vehicles,


2.3(e) Catalytic converter,


2.3(f) SCR


2.4 Engine Control Unit (ECU): working and diagnosis procedure.

3. Air Compressors

3.1(a) Reciprocating compressors — applications,


3.1(b) Working of single stage


3.1(c) Two stage compressors with PV diagrams.


3.1(d) Intercooling


3.2(a) Testing of reciprocating air compressors: Pressure ratio, compressor capacity, FAD,


3.2(b) Volumetric efficiency


3.2(c) Isothermal efficiency


3.2(d) Numerical.


3.2(e) Methods of energy saving.


3.3(a) Rotary compressors: Screw Compressors,


3.3(b) Rotary compressors: Centrifugal Compressors


3.3(c) Rotary compressors: Lobe type Compressors


3.3(d) Rotary compressors: Vane type compressors


3.3(e) Rotary compressors: Axial flow compressors


3.3(f) Comparison of rotary with rceiprocating.

4. Gas Turbines and Jet Propulsion

4.1(a) Types of Gas Turbines: Constant pressure,


4.1(b) Open cycle gas turbines


4.1(c) Closed cycle gas turbines,


4.1(d) Brayton cycle,


4.1(e) Aero derivative and heavy frame engines


4.2(a) Jet propulsion: Turbojet


4.2(b) Jet propulsion: Turboprop


4.3(a) Rocket propulsion: Liquid propellant systems.


4.3(b) Rocket propulsion: Solid propellant systems.

5. Refrigeration Air-conditioning

5.1(a) Refrigeration: Unit of refrigeration, EER, SEER,


5.1(b) Carnot cycle,


5.1(c) Vapor compression cycle,


5.1(d) Sub cooling and superheating,


5.1(e) Components of vapor compression systems,


5.1(f) Refrigerant properties,


5.1(g) Concepts of GWP, ODP, TEWI, LCCP.


5.2(a) Applications: Specification, Working and construction of Domestic refrigerator,


5.2(b) Water cooler,


5.2(c) Ice plant


5.2(d) Cold storage.


5.3(a) Air-conditioning: Definition,


5.3(b) Classification-comfort air conditioning,


5.3(c) Applications of air conditioning


5.4(a) Psychrometry: properties of air,


5.4(b) Psychrometric processes


5.4(c) Psychrometric chart


5.5(a) Applications: Specification, Working and construction of Window,


5.5(b) Split air- conditioner


5.5(c) Central air-conditioning



MSBTE Power Engineering and Refrigeration Video Lectures in FREE | MSBTE Diploma 22562 Mechanical Engineering

The Maharashtra State Board of Technical Education (MSBTE) offers a Diploma course in Power Engineering and Refrigeration, a program designed to equip students with the knowledge and practical skills required to work in the fields of power generation and refrigeration systems.

The Significance of MSBTE Diploma Power Engineering and Refrigeration

Power engineering and refrigeration are crucial disciplines in the modern world. They play integral roles in ensuring the efficient generation and utilization of electrical power and the maintenance of temperature control systems.

Power Engineering

Power engineering encompasses the generation, transmission, and distribution of electrical power. It involves a wide range of activities, from power plant operations to electrical system design and maintenance. Professionals in this field are responsible for ensuring that electricity is produced and delivered reliably and safely.

Refrigeration

Refrigeration, on the other hand, focuses on the science and technology of cooling and maintaining specific temperatures in various environments. It has applications in commercial and domestic refrigeration systems, as well as in industries such as food storage, medical preservation, and air conditioning.

The Structure of the MSBTE Diploma Course

The MSBTE Diploma course in Power Engineering and Refrigeration is designed to provide a well-rounded education that combines theoretical knowledge with practical skills.


Theoretical Component

The theoretical part of the course covers a wide range of topics, including:

  • Power Generation: Understanding the principles and methods of electricity generation, including power plants and renewable energy sources.
  • Electrical Systems: Learning about electrical systems, distribution networks, and safety measures.
  • Refrigeration Technology: Exploring the science of cooling, refrigeration cycles, and the operation of refrigeration equipment.
  • Heat Transfer: Understanding the principles of heat transfer and how they apply to refrigeration and cooling systems.
  • Thermodynamics: Gaining knowledge about the thermodynamic principles that underlie power generation and refrigeration.
  • Control Systems: Learning about the control and automation of power systems and refrigeration equipment.

 

Career Opportunities

Upon completing the MSBTE Diploma course in Power Engineering and Refrigeration, graduates have a wide range of career opportunities. Some potential career paths include:

  • Power Plant Operators: Graduates can work in power plants, managing and operating electricity generation equipment.
  • Electrical Technicians: Electrical technicians are responsible for maintaining and repairing electrical systems.
  • Refrigeration Technicians: Refrigeration technicians work on the installation and maintenance of cooling systems in various industries.
  • HVAC Technicians: Those interested in air conditioning and heating can specialize in HVAC (Heating, Ventilation, and Air Conditioning) systems.
  • Renewable Energy Specialists: With the increasing focus on renewable energy sources, there are opportunities to work in this growing sector.


Here, we introduce you to a selection of enlightening video lectures on "Power Engineering and Refrigeration."

1. Power Generation and Distribution

This series of video lectures provides an overview of power generation methods, including conventional power plants and renewable energy sources. You'll learn about the generation of electricity and its efficient distribution.

 

2. Electrical Systems and Safety Measures

Understanding electrical systems is vital in power engineering. These lectures cover electrical circuits, safety measures, and best practices when working with electricity. It's a must-watch for anyone entering the field.

 

3. Refrigeration Technology Explained

Refrigeration is a complex field, and these video lectures break down the science behind cooling processes. You'll explore refrigeration cycles, equipment operation, and the principles of maintaining temperature control.

 

4. Heat Transfer in Power Engineering and Refrigeration

Heat transfer is a fundamental concept in both power engineering and refrigeration. This lecture series delves into the principles of heat transfer and how it applies to cooling and power generation.

 

5. Thermodynamics in Energy Systems

Thermodynamics is at the heart of both power generation and refrigeration. These lectures explain the key thermodynamic principles that underlie these fields, helping you grasp the fundamental concepts.

 

6. Control Systems in Power Engineering

Control systems are essential for ensuring the efficient and safe operation of power systems. This lecture series explores the automation of power systems, providing insights into their design and management.

 

7. Refrigeration Equipment Maintenance

Maintenance of refrigeration equipment is crucial for its longevity and efficiency. These lectures offer guidance on troubleshooting and maintaining cooling systems in various applications.

 

8. Renewable Energy Sources

With the increasing focus on sustainability, understanding renewable energy sources is vital. This lecture series covers solar, wind, and hydropower, offering insights into the future of power generation.

 

9. HVAC Systems in Practice

For those interested in heating, ventilation, and air conditioning (HVAC), these lectures provide a comprehensive overview of HVAC systems and their practical applications.

 

10. Advanced Topics in Power Engineering and Refrigeration

For professionals and enthusiasts seeking in-depth knowledge, this advanced lecture series explores specialized topics and the latest advancements in power engineering and refrigeration.

 
These video lectures offer a valuable resource for expanding your knowledge of power engineering and refrigeration. Whether you are a student, an aspiring professional, or an industry veteran, these lectures provide insights, expertise, and practical information to help you excel in these essential fields.

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