Course Features

Price

Original price was: د.إ2,424.07.Current price is: د.إ74.16.

Study Method

Online | Self-paced

Course Format

Reading Material - PDF, article

Duration

4 hours, 15 minutes

Qualification

No formal qualification

Certificate

At completion

Additional info

Coming soon

Overview

District cooling systems are at the core of sustainable HVAC solutions, offering large-scale efficiency, reduced energy consumption, and long-term operational savings. Advanced HVAC District Cooling System Designing using Revit is designed to bridge theoretical knowledge with practical applications, giving learners a step-by-step understanding of both the fundamentals and advanced design strategies.

You will start with an introduction to cooling tower placement, condenser pump integration, and the fundamentals of district cooling systems (DCS). As the course progresses, you will explore energy efficiency in chillers, the benefits of DCS, and how to plan and configure system equipment effectively. Learners will also gain expertise in chiller arrangement, pump configurations, and capacity planning — essential aspects of designing large-scale cooling infrastructure.

One of the key highlights of this course is the focus on system calculations. You will learn how to calculate motor horsepower, determine minor and major head losses, and size pipes accurately based on engineering principles. These skills are then applied in a practical Revit environment, where you will design a chiller plant, place pumps, and create precise piping connections, integrating every aspect of the system into a professional 3D model.

By the end of this course, you will have mastered both the engineering and software aspects of district cooling system design. Whether you are upgrading your HVAC expertise or working on complex infrastructure projects, this course ensures you have the technical and design skills to excel in the growing field of sustainable cooling solutions.

This course is ideal for mechanical engineers, HVAC designers, MEP professionals, and engineering students who want to specialize in district cooling system design and Revit modeling. It is also suitable for professionals seeking to expand their knowledge of sustainable HVAC solutions in large-scale projects.
Learners should have a basic understanding of HVAC systems and mechanical engineering concepts. Familiarity with Revit or other design software is helpful but not mandatory, as the course provides guided, step-by-step instructions to ensure beginners can follow along.

Completing this course can open opportunities in HVAC engineering, MEP design, energy consultancy, and sustainable infrastructure projects. Professionals will be equipped to work as HVAC design engineers, district cooling system consultants, Revit MEP modelers, and project engineers in industries focusing on smart cities, sustainable energy, and large-scale building projects.

Who is this course for?

District cooling systems are at the core of sustainable HVAC solutions, offering large-scale efficiency, reduced energy consumption, and long-term operational savings. Advanced HVAC District Cooling System Designing using Revit is designed to bridge theoretical knowledge with practical applications, giving learners a step-by-step understanding of both the fundamentals and advanced design strategies.

You will start with an introduction to cooling tower placement, condenser pump integration, and the fundamentals of district cooling systems (DCS). As the course progresses, you will explore energy efficiency in chillers, the benefits of DCS, and how to plan and configure system equipment effectively. Learners will also gain expertise in chiller arrangement, pump configurations, and capacity planning — essential aspects of designing large-scale cooling infrastructure.

One of the key highlights of this course is the focus on system calculations. You will learn how to calculate motor horsepower, determine minor and major head losses, and size pipes accurately based on engineering principles. These skills are then applied in a practical Revit environment, where you will design a chiller plant, place pumps, and create precise piping connections, integrating every aspect of the system into a professional 3D model.

By the end of this course, you will have mastered both the engineering and software aspects of district cooling system design. Whether you are upgrading your HVAC expertise or working on complex infrastructure projects, this course ensures you have the technical and design skills to excel in the growing field of sustainable cooling solutions.

This course is ideal for mechanical engineers, HVAC designers, MEP professionals, and engineering students who want to specialize in district cooling system design and Revit modeling. It is also suitable for professionals seeking to expand their knowledge of sustainable HVAC solutions in large-scale projects.
Learners should have a basic understanding of HVAC systems and mechanical engineering concepts. Familiarity with Revit or other design software is helpful but not mandatory, as the course provides guided, step-by-step instructions to ensure beginners can follow along.

Completing this course can open opportunities in HVAC engineering, MEP design, energy consultancy, and sustainable infrastructure projects. Professionals will be equipped to work as HVAC design engineers, district cooling system consultants, Revit MEP modelers, and project engineers in industries focusing on smart cities, sustainable energy, and large-scale building projects.

Requirements

District cooling systems are at the core of sustainable HVAC solutions, offering large-scale efficiency, reduced energy consumption, and long-term operational savings. Advanced HVAC District Cooling System Designing using Revit is designed to bridge theoretical knowledge with practical applications, giving learners a step-by-step understanding of both the fundamentals and advanced design strategies.

You will start with an introduction to cooling tower placement, condenser pump integration, and the fundamentals of district cooling systems (DCS). As the course progresses, you will explore energy efficiency in chillers, the benefits of DCS, and how to plan and configure system equipment effectively. Learners will also gain expertise in chiller arrangement, pump configurations, and capacity planning — essential aspects of designing large-scale cooling infrastructure.

One of the key highlights of this course is the focus on system calculations. You will learn how to calculate motor horsepower, determine minor and major head losses, and size pipes accurately based on engineering principles. These skills are then applied in a practical Revit environment, where you will design a chiller plant, place pumps, and create precise piping connections, integrating every aspect of the system into a professional 3D model.

By the end of this course, you will have mastered both the engineering and software aspects of district cooling system design. Whether you are upgrading your HVAC expertise or working on complex infrastructure projects, this course ensures you have the technical and design skills to excel in the growing field of sustainable cooling solutions.

This course is ideal for mechanical engineers, HVAC designers, MEP professionals, and engineering students who want to specialize in district cooling system design and Revit modeling. It is also suitable for professionals seeking to expand their knowledge of sustainable HVAC solutions in large-scale projects.
Learners should have a basic understanding of HVAC systems and mechanical engineering concepts. Familiarity with Revit or other design software is helpful but not mandatory, as the course provides guided, step-by-step instructions to ensure beginners can follow along.

Completing this course can open opportunities in HVAC engineering, MEP design, energy consultancy, and sustainable infrastructure projects. Professionals will be equipped to work as HVAC design engineers, district cooling system consultants, Revit MEP modelers, and project engineers in industries focusing on smart cities, sustainable energy, and large-scale building projects.

Career path

District cooling systems are at the core of sustainable HVAC solutions, offering large-scale efficiency, reduced energy consumption, and long-term operational savings. Advanced HVAC District Cooling System Designing using Revit is designed to bridge theoretical knowledge with practical applications, giving learners a step-by-step understanding of both the fundamentals and advanced design strategies.

You will start with an introduction to cooling tower placement, condenser pump integration, and the fundamentals of district cooling systems (DCS). As the course progresses, you will explore energy efficiency in chillers, the benefits of DCS, and how to plan and configure system equipment effectively. Learners will also gain expertise in chiller arrangement, pump configurations, and capacity planning — essential aspects of designing large-scale cooling infrastructure.

One of the key highlights of this course is the focus on system calculations. You will learn how to calculate motor horsepower, determine minor and major head losses, and size pipes accurately based on engineering principles. These skills are then applied in a practical Revit environment, where you will design a chiller plant, place pumps, and create precise piping connections, integrating every aspect of the system into a professional 3D model.

By the end of this course, you will have mastered both the engineering and software aspects of district cooling system design. Whether you are upgrading your HVAC expertise or working on complex infrastructure projects, this course ensures you have the technical and design skills to excel in the growing field of sustainable cooling solutions.

This course is ideal for mechanical engineers, HVAC designers, MEP professionals, and engineering students who want to specialize in district cooling system design and Revit modeling. It is also suitable for professionals seeking to expand their knowledge of sustainable HVAC solutions in large-scale projects.
Learners should have a basic understanding of HVAC systems and mechanical engineering concepts. Familiarity with Revit or other design software is helpful but not mandatory, as the course provides guided, step-by-step instructions to ensure beginners can follow along.

Completing this course can open opportunities in HVAC engineering, MEP design, energy consultancy, and sustainable infrastructure projects. Professionals will be equipped to work as HVAC design engineers, district cooling system consultants, Revit MEP modelers, and project engineers in industries focusing on smart cities, sustainable energy, and large-scale building projects.

    • Cooling Tower Placement 00:10:00
    • Condenser Pump with Cooling Tower (Part 1) 00:10:00
    • Condenser Pump with Cooling Tower (Part 2) 00:10:00
    • Introduction to District Cooling and DCHS 00:10:00
    • Energy Efficiency of Chillers 00:10:00
    • Benefits of District Cooling Systems (DCS) 00:10:00
    • Equipment Used in DCS 00:10:00
    • Chiller Arrangement and Capacity Planning 00:10:00
    • Pump Arrangements and Configurations 00:10:00
    • How to Calculate Motor Horsepower 00:10:00
    • Calculating Minor Head Losses 00:10:00
    • Calculating Major Head Losses 00:10:00
    • Pipe Sizing Based on Major Loss Calculations 00:10:00
    • Inserting Files in Revit 00:10:00
    • Placement of Chillers in Revit 00:10:00
    • Placement of Pumps in Revit 00:10:00
    • Connecting Pumps with Headers 00:10:00
    • Connecting Pipes to Chiller Condenser Inlet 00:10:00
    • Connecting Pipes to Chiller Evaporator Inlet 00:10:00
    • Exam of Advanced HVAC District Cooling System Designing using Revit 00:50:00
    • Premium Certificate 00:15:00
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Yes, our premium certificate and transcript are widely recognized and accepted by embassies worldwide, particularly by the UK embassy. This adds credibility to your qualification and enhances its value for professional and academic purposes.

Yes, this course is designed for learners of all levels, including beginners. The content is structured to provide step-by-step guidance, ensuring that even those with no prior experience can follow along and gain valuable knowledge.

Yes, professionals will also benefit from this course. It covers advanced concepts, practical applications, and industry insights that can help enhance existing skills and knowledge. Whether you are looking to refine your expertise or expand your qualifications, this course provides valuable learning.

No, you have lifetime access to the course. Once enrolled, you can revisit the materials at any time as long as the course remains available. Additionally, we regularly update our content to ensure it stays relevant and up to date.

I trust you’re in good health. Your free certificate can be located in the Achievement section. The option to purchase a CPD certificate is available but entirely optional, and you may choose to skip it. Please be aware that it’s crucial to click the “Complete” button to ensure the certificate is generated, as this process is entirely automated.

Yes, the course includes both assessments and assignments. Your final marks will be determined by a combination of 20% from assignments and 80% from assessments. These evaluations are designed to test your understanding and ensure you have grasped the key concepts effectively.

We are a recognized course provider with CPD, UKRLP, and AOHT membership. The logos of these accreditation bodies will be featured on your premium certificate and transcript, ensuring credibility and professional recognition.

Yes, you will receive a free digital certificate automatically once you complete the course. If you would like a premium CPD-accredited certificate, either in digital or physical format, you can upgrade for a small fee.

Course Features

Price

Original price was: د.إ2,424.07.Current price is: د.إ74.16.

Study Method

Online | Self-paced

Course Format

Reading Material - PDF, article

Duration

4 hours, 15 minutes

Qualification

No formal qualification

Certificate

At completion

Additional info

Coming soon

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