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Explore Entri Elevate's NSDC certified MEP Design Course! Get job-oriented training, a comprehensive curriculum, and placement assistance. Elevate your career with Entri!
MEP Course Details
MEP Course is a short of Mechanical, Electrical, and Plumbing course, and is an essential component of building engineering and construction. It encompasses the planning, design, and integration of mechanical, electrical, and plumbing systems within a building or infrastructure. Mechanical: This includes systems for heating, ventilation, and air conditioning (HVAC) to ensure proper climate control and air quality. Electrical: It involves the design of electrical systems, including lighting, power distribution, and security systems, to meet the building's electrical needs efficiently and safely. Plumbing: This covers the design of water supply, drainage,and sewage systems, as well as fire protection systems. The MEP Certification Course is crucial for ensuring a building's functionality, safety, and sustainability. It requires expertise in engineering principles and regulations to create efficient and reliable systems that meet the specific needs of the structure and its occupants.
Inclusive & Immersive Hybrid Training Sessions
Industry Expert Sessions
Soft Skill Sessions
Contents in Native Language (Malayalam)
80+ Live & Recorded Sessions
Self-Paced Learning
Industry Networking
Personal Skill Assessment & Learning Path Suggestions for Technical Upskilling
Guaranteed Placement Support
Skills Covered
If you want to be successful in the fields of MEP, these are the skills that you need to possess.
MEP Design Tools Covered
Job Roles
Here's a list of common job roles in the MEP (Mechanical, Electrical, and Plumbing) field along with brief descriptions of each:
MEP Engineer
The duties of an MEP engineer encompass planning, organizing, and supervising the implementation of mechanical, electrical, and plumbing systems within structures. necessitates knowledge of plumbing installations, electrical circuits, HVAC systems, and coordination with contractors and architects.
MEP Coordinator
Manages communication between different teams working on MEP projects, such as contractors, engineers, and architects. guarantees the smooth incorporation of plumbing, electrical, and mechanical systems into building plans.
HVAC Engineer
HVAC engineers are experts in the planning, setting up, and upkeep of ventilation, air conditioning, and heating systems. System design, equipment selection, ducting arrangement, and energy efficiency optimization are among the responsibilities.
Electrical Engineer
Electrical engineers plan and supervise the installation of the building's electrical systems, such as wiring, lighting, and power distribution. maximizes system performance and energy economy while guaranteeing adherence to safety rules and electrical norms.
Pumbing Engineer
Water supply, drainage, and sewage systems are among the plumbing systems that a plumbing engineer designs and installs. Creates plans, makes suitable fixture and pipe material selections, and guarantees adherence to plumbing standards and codes.
MEP Drafter
Produces intricate technical drawings and plans using the designs that engineers have supplied. creates precise mechanical, electrical, and plumbing system drawings using CAD (Computer-Aided Design) software.
MEP Project Manager
Manages all facet of MEP projects, including design, planning, building, and commissioning. oversees the management of project resources, finances, schedules, and stakeholder communication to guarantee project delivery success.
MEP Estimator
Calculates the price of MEP systems for building projects. evaluates labor, materials, project specs, and other aspects to produce precise cost estimates and bids.
Commissioning Engineer
The commissioning engineer checks and inspects MEP systems to make sure they are installed and operating as intended in accordance with design standards. finds and fixes problems during the commissioning phase to guarantee the best possible system performance and client contentment.
MEP Consultant
Offers architects, developers, and building owners professional guidance and consulting services on MEP systems. provides advice on how to design systems, use energy efficiently, follow building rules and laws, and adopt sustainable practices.
Curriculum
The curriculum is designed to help you learn the skills required to become a successful professional.
• Electricity - Definition Units & Symbols
• Basics & Importance of Electricity
• Generation, Transmission & Distribution System
- Rules & Regulations.
- Types & Selection Of wiring systems
- Applications and Selection of switches & sockets
- Applications and Selection of wires and cables
- Lighting, Power circuit wiring diagrams
- Conduit Layout Design
- Load schedule & Load balancing
- Selection of MCB Distribution Boards
- Standard Heights of Mounting Accessories
- Lighting Schemes
- Lighting Load Estimation and Designing of Lighting Panels
- Types and Application of Luminaries
- Lighting Designing of Auditoriums and Theaters
- Lighting Designing for Interior Decoration and Landscape
- Emergency Lighting System
- Types & selection of Circuit Breakers
- Importance & application of VCB, ACB, MCCB & MCB
- Isolators and SDF (Switch Disconnecting Fuse)
- Selection of AMF (Automatic Main Failure) & APFC (Automatic Power factor Correction) Panel
- Underground Cable Type & Selection.
- LT Panel Board Design.
- Coordination with HVAC, Plumbing, Firefighting, Mechanical systems like Chillers, AHU, FCU, water and Drainage pumps, Fire Fighting Pumps etc.
- Switchgears-Types and Selection.
- UPS & Inverters.
- Earthing Systems (Types Method and Installation)
- Lightning Protection Systems.
- Types and Selections
- Installation - Rules and Regulations.
- Parallel Operation of Transformers and Generators.
- Calculating the Total Power Requirements
- Circuit Breaker Selection & Design Calculations
- RCBO/ELCB Selection & Design Calculations
- Branch & Main Feeder cable Sizing, Selection & Calculation
- Determining CableTtrays and Trenches
- Busbar Selection and Design
- Earthing Cable Selection and Design
- Total connected load & Maximum Demand Calculation based on Diversity Factor
- Load distribution Schedule & load Balancing calculations
- Transformer selection & Design calculations.
- Generator selection & Design calculations.
- Capacitor bank selection
- Voltage Drop calculations.
- Fault level calculations
- Preparation of Schematic diagram (One Line Diagram) - Residential, High rise, Commercial and Industrial buildings.
- Different Types Of Plumbing Materials In Water Supply System
- Cold Water Supply Water Flow System
- Hot Water Supply Water Flow System
- Water Supply Schematic Layout & Plan Layout
- International Plumbing Code And Local Authority Requirements
- Sizing Of Water Supply Piping Network
- Water Demand Calculations
- Water Storage & Plumbing Calculations
- Fixtures, Faucets & Fixture Fittings
- Design Of Sanitary Drainage & Venting System
- Requirements Of Sanitary Drainage System
- External & Internal Sanitary Drainage System
- Single And Two Stack System
- Sanitary Drainage Pipe Sizing Calculations
- Design Of Storm Water Drainage System
- Manhole & Soak Pit Design
- Sanitary Drainage Schematic,Plan & Detailed Layout
- Application of HVAC Systems
- Human Comfort Condition
- Refrigeration Machines
- Basic Refrigeration System or Vapor Compression Cycle
- Refrigeration Cycle & its functions
- Function & Types of Compressors
- Function & Types of Condensers
- Function & Types of Expansion Valves
- Function & Types of Evaporators
- Properties of Refrigerants
- Window A/C Systems
- Split A/C Systems
- Package A/C Systems
- Multi split AC concept
- Variable Refrigerant Volume (VRV)/ Variable Refrigerant Flow (VRF) Systems
- Concept of Chilled Water System
- Chilled water Piping Configurations
- GPM Calculations
- Pipe sizing for Chilled Water System
- Valves Used in Chilled Water System
- Pipe Routing & Levels
- Pump Head Calculation
- Selection of PumpsTechnical Connection Details - FCU, AHU, Chillers, Pumps etc
- Duct-Definition & Classification
- Duct Materials and Selection
- Air Distribution Design - Ducting Design
- International Ducting standards- Smacna, DW144, ASHRAE
- Aspect Ratio, Duct Routing & Levels
- Duct sizing methods -Mc Quay Duct Sizer
- Air outlets- Diffusers and Grilles, selection
- Duct Accessories (Sound Attenuators, VAVs, VCD, FD, SD etc.)
- External Static Pressure Calculations
- Design Ventilation Concept and Types of Ventilation
- Introduction ASHRAE 62.1
- Breathing Zone Fresh Air Design and Calculation.
- Exhaust System Types Design and Calculation
- Parking Exhaust System Types & Procedures.
- Domestic & Industrial Kitchen Ventilation.
- Sources of heat and Parameters
- Survey of Building
- Finding ‘U’ Factor for Walls, Roof, Glass etc
- Tonnage (TR) & Air Flow (L/S) for Project
- Heat Load Estimate - Manually Basics
- Weather
- Spaces
- Systems
- Plants
- Selection based on Heat Load Results
- Selection as per Project Specifications,Application and Popular Brand
- Placing Location of Equipment Equipment Detailing as per Catalogs
- Machines: AHU, FCU, Primary Pumps, Secondary Pumps, Chillers, Exhaust Fans, Centrifugal Fans, Grills & Diffusers, Kitchen Exhaust Hood, Parking Exhaust Fans etc
- Introduction to International Drawings
- Various types of international drawings and representations.
- Live project
- Detailed Latest Technology Developments in HVAC System
- Introduction About CAD
- How to Open, Close, Save and Save As
- Toolbar and Command line
- Units
- Draw and Modify Commands
- Dimension Style, Dimension & Layers
- File Cleaning, Title Block Settings
- How to Submit Drawings
- IFC Drawings, Shop Drawings, Red Mark Up Drawings & As Built Drawings
- Coordination Drawings
- Revisions, Submission and Approvals
Blogs
Check out our popular blogs!
Whether youโre a seasoned professional or a student aspiring to enter the field, having access to the right reference books can enhance your knowledge. In this article, weโll explore a curated list of MEP books that cover various aspects, from design principles to practical applications.
As technology continues to advance and environmental concerns gain prominence, the future of MEP is poised for exciting transformations. Here, we will explore some of the emerging trends that are likely to shape the future of the MEP industry.
MEP is a branch of engineering that combines the skills of mechanical and electrical engineers. MEP engineers are important across all stages of the construction process as they plan, design and manage the MEP systems of a building.
As electrical engineering is such an important area of engineering, taking an online course in the field could lead to a well-paying job. In this article we will discuss about best 5 certification courses for Electrical Engineers.
Eligibility Criteria
These classes are open to those who want to have a successful career in MEP. Here you can check the eligibility to learn the MEP training course
ITI, a diploma, or a BTech (BE) is the minimum requirement to enroll in the course.
The applicants with a Bachelor of Technology or Bachelor of Engineering degree in Mechanical Engineering or Electrical Engineering, or a Diploma in Mechanical Engineering or Electrical Engineering, are the most qualified.
If your qualification is a +2 or any other graduation, don't worry. Our faculty members are able to explain things to you and qualify you in every way.
Pre-requisites of MEP Design Course
Here's a list of MEP Course Qualification (Mechanical, Electrical, and Plumbing) along with descriptions for each:
Basic Engineering Knowledge
To understand ideas in MEP courses, one must have a basic understanding of engineering fundamentals. This involves having an understanding of mechanics, mathematics, and physics.
Mathematical proficiency
Mathematical proficiency is required for the computations involved in the design and analysis of MEP systems. Particularly pertinent subjects include algebra, trigonometry, and calculus.
Knowledge of Building Systems
MEP training is contextualized by knowledge of building systems and components, such as structural elements, architectural layouts, and construction techniques.
Understanding of Construction Procedures
Students are better able to understand the practical elements of installing MEP systems in building projects when they are familiar with construction terminology and techniques.
Computer Literacy
Drafting, modeling, and evaluating MEP systems need a high level of computer and software application proficiency. Particularly helpful is familiarity with CAD (Computer-Aided Design) software.
Knowledge of Building Codes and Standards
Developing MEP systems that meet safety, performance, and environmental criteria requires knowledge of pertinent building codes, regulations, and industry standards.
Effective Communication Skills
In the discipline of MEP engineering, clear communication is crucial for working with team members, presenting designs, and communicating technical knowledge.
Problem-Solving Abilities
Strong analytical and problem-solving abilities are required to handle difficulties in MEP projects, such as malfunctioning equipment or problems with system design.
Attention to Detail
Paying close attention to details is essential when it comes to correctly reading technical drawings, specifications, and project requirements in MEP classes and practical applications.
Desire to Learn and Adapt
The dynamic field of MEP engineering continually changes due to developments in building systems and construction techniques. To succeed in this sector, one must possess an enthusiasm to grasp new concepts, technologies, and industry trends.
Why Live Session?
Real-time interaction
Live sessions facilitate interactions between students and instructors, fostering a sense of community and an atmosphere to ask questions, get feedback, and pick up knowledge from others.
Affordability
Live sessions are accessible to a wider audience due to their lower cost in comparison to traditional classroom-based training.
Flexible and Convenient
Participation is possible from any location with an internet connection, allowing learners to easily integrate education into their hectic schedules.
Up-to-date information
The newest technologies are used in live sessions. Teachers can impart their knowledge on subjects and offer perceptions into current business practices.
Increased Engagement
Engage participants directly, respond to inquiries promptly, and provide a more dynamic learning environment.
Professionals to Guide You
Get guidance from qualified professionals and industry experts with 10+ years of experience in the field
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Frequently Asked Questions
Learning Outcomes
Knowledge about MEP Systems
Students get a thorough understanding of the mechanical, electrical, and plumbing systems that are frequently utilized in the design and construction of buildings.
Design Principles
Students gain knowledge of the concepts and methods used in MEP system design, such as equipment selection, load calculations, and system layout.
Building Codes and Regulations
To guarantee compliance and safety, it is crucial to comprehend the applicable building codes, standards, and regulations controlling the design and installation of MEP systems.
Energy Efficiency and Sustainability
To encourage environmental responsibility and maximize building performance, knowledge on energy-efficient and sustainable MEP techniques is disseminated.
System Integration
To guarantee functionality, efficiency, and coordination, students learn how to integrate mechanical, electrical, and plumbing systems inside building designs.
Project Management Skills
To efficiently oversee MEP projects from inception to conclusion, project management skills, such as planning, scheduling, budgeting, and coordination, are developed.
MEP Course - FAQs
You can take the course if you have a background in civil engineering, architecture, construction, or a related discipline.
- ITI Graduates
- Diploma in Electrical/Mechanical Engineering
- Graduates from Related Disciplines
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