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AulaGEO Academy and Felix Enzo Garofalo Lanzuisi

In this course we will concentrate on the use of Revit tools that assist us in performing energy analysis of buildings. We will see how to enter energy information in our model and how to export this information for treatment outside of Revit.

#AulaGEO

In the final section, we will pay attention to creating logical duct and pipe systems, creating those elements, and using the Revit engine to design sizes and verify performance.

content:

Lecture 1: Introduction

Lecture 2: Templates with mechanical configurations

Lecture 3: Links for collaborative work

Lecture 4: Create spaces

Read more

In this course we will concentrate on the use of Revit tools that assist us in performing energy analysis of buildings. We will see how to enter energy information in our model and how to export this information for treatment outside of Revit.

#AulaGEO

In the final section, we will pay attention to creating logical duct and pipe systems, creating those elements, and using the Revit engine to design sizes and verify performance.

content:

Lecture 1: Introduction

Lecture 2: Templates with mechanical configurations

Lecture 3: Links for collaborative work

Lecture 4: Create spaces

Lecture 5: Place spaces

Lecture 6: Create space tables

Lecture 7: Modify space properties

Lecture 8: Create zones

Lecture 9: Modify construction options

Lecture 10: Thermal load analysis

Lecture 11: Load analysis

Lecture 12: Climate data

Lecture 13: Sliver spaces

Lecture 14: Level of detail of the report

Lecture 15: Load analysis details

Lecture 16: Thermal load reports

Lecture 17: Export gbXML to simulation software

Lecture 18: Systems Explorer

Lecture 19: Mechanical configurations

Lecture 20: Duct connectors

Lecture 21: Create mechanical systems

Lecture 22: Mechanical piping configuration

Lecture 23: Pipe connectors

Lecture 24: Piping systems

Lecture 25: Place terminals

Lecture 26: Place mechanical equipment

Lecture 27: Create routing scheme

Lecture 28: Manual routing

Lecture 29: Duct sizes

Lecture 30: Mechanical piping equipment

Lecture 31: Mechanical pipe routing

Lecture 32: Manual pipe editing

Lecture 33: Mechanical pipe size

Lecture 34: Loss reports

Lecture 35: Farewell

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What's inside

Learning objectives

  • Create templates with settings suitable for mechanical design
  • Carry out energy analysis based on building data
  • Create thermal load reports
  • Export to external simulation software using gbxml
  • Create mechanical systems within revit
  • Create piping system for mechanical installations
  • Design duct and pipe sizes from bim model

Syllabus

Introduction
Templates with mechanical configurations
Links for collaborative work
Energy Design
Read more

Traffic lights

Read about what's good
what should give you pause
and possible dealbreakers
Focuses on using Revit for energy analysis, which is essential for designing energy-efficient buildings and complying with building performance standards
Covers the creation of mechanical and piping systems within Revit, which is a core skill for BIM modelers working on MEP (Mechanical, Electrical, and Plumbing) projects
Explores duct and pipe sizing, which is crucial for ensuring the proper functioning and performance of HVAC systems in real-world installations
Examines gbXML export for simulation software, which facilitates collaboration and data exchange between different disciplines in the building design and construction process
Requires familiarity with Revit, which may necessitate additional training for those new to the software, but is essential for leveraging the course's content
Relies on Revit, which requires a license and a computer capable of running the software, potentially posing a barrier to entry for some learners

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Reviews summary

Introduction to revit mep hvac systems

According to learners, this course offers a valuable introduction to working with Revit MEP for mechanical/HVAC systems. Students particularly appreciate the coverage of energy analysis and the process for designing duct and pipe sizes. While some learners note that certain topics might require prior Revit knowledge or feel slightly outdated in parts compared to the latest software versions, the course is widely seen as providing a solid foundational understanding for applying Revit in this specific domain.
Beneficial to have existing knowledge of Revit.
"It's better if you have basic knowledge of Revit..."
"Would recommend this course for people with prior knowledge of Revit."
Includes useful content on performing energy analysis.
"...la sección de análisis de energía es particularmente útil."
"The energy analysis section is particularly useful."
"Covers important aspects like energy analysis..."
"I found the parts on energy analysis and reporting very insightful."
Explains the process for sizing ducts and pipes.
"...and the process for sizing ductwork and pipes."
"Useful content on designing duct and pipe sizes."
"The part on mechanical pipe sizing was very practical."
"Explains the basics of using Revit's tools for duct and pipe calculations."
Provides a solid starting point for Revit MEP HVAC.
"Excellent introduction to the mechanical and piping systems for Revit."
"Great introduction to MEP using Revit."
"Este curso fue una excelente introducción a las herramientas de Revit MEP para sistemas mecánicos..."
"Good basic course on Revit MEP for Mechanical HVAC applications."
"It is a good introduction, but not deep enough for professionals."
May not reflect the very latest Revit versions.
"Some parts seemed slightly outdated compared to the current Revit interface."

Activities

Be better prepared before your course. Deepen your understanding during and after it. Supplement your coursework and achieve mastery of the topics covered in Revit MEP - Mechanical / HVAC systems - AulaGEO with these activities:
Review HVAC Fundamentals
Refresh your understanding of HVAC fundamentals to better grasp the Revit MEP course material.
Browse courses on HVAC Systems
Show steps
  • Review basic thermodynamics principles.
  • Study different types of HVAC systems.
  • Familiarize yourself with HVAC components.
Revit MEP: An Introductory Tutorial
Get familiar with Revit MEP interface and basic workflows.
Show steps
  • Read the chapters on mechanical systems.
  • Follow the tutorials on creating ductwork.
Follow Revit MEP Tutorials
Refine your Revit MEP skills by following online tutorials focused on mechanical and HVAC systems.
Show steps
  • Search for Revit MEP tutorials online.
  • Follow tutorials on duct and pipe sizing.
  • Practice creating mechanical systems in Revit.
Four other activities
Expand to see all activities and additional details
Show all seven activities
Generate a Thermal Load Report
Practice generating a thermal load report using Revit MEP to analyze building energy performance.
Show steps
  • Input building data into Revit.
  • Run a thermal load analysis.
  • Interpret the results of the report.
HVAC Systems Design Handbook
Expand your understanding of HVAC design principles with this comprehensive handbook.
View Alter Ego: A Novel on Amazon
Show steps
  • Read the chapters on duct and pipe design.
  • Review the sections on energy analysis.
Design a Simple HVAC System in Revit
Solidify your knowledge by designing a simple HVAC system for a small building using Revit MEP.
Show steps
  • Create a basic building model in Revit.
  • Design the duct and pipe layout.
  • Size the ducts and pipes using Revit's tools.
  • Generate a loss report.
Contribute to Revit MEP Open Source Projects
Deepen your understanding of Revit MEP by contributing to open-source projects related to building information modeling.
Show steps
  • Find open-source Revit MEP projects on GitHub.
  • Identify bugs or areas for improvement.
  • Contribute code or documentation to the project.

Career center

Learners who complete Revit MEP - Mechanical / HVAC systems - AulaGEO will develop knowledge and skills that may be useful to these careers:
Energy Analyst
An Energy Analyst evaluates and improves the energy efficiency of buildings and systems. As the course concentrates on using Revit tools to perform energy analysis of buildings, it helps an energy analyst in this career. The course covers entering energy information into the model, exporting information for treatment outside of Revit, creating thermal load reports, and exporting gbXML to simulation software. These are all essential tasks for an energy analyst. This course helps an Energy Analyst to conduct thorough energy analysis using Revit and related tools, making it a very useful skill to acquire.
Building Information Modeling Mechanical Designer
A Building Information Modeling Mechanical Designer plays a crucial role in creating and managing digital representations of mechanical, HVAC, and plumbing systems within buildings. This course, focusing on Revit MEP and energy analysis, fits directly into the BIM Mechanical Designer's workflow. The course helps the designer create mechanical systems in Revit, create piping systems for mechanical installations, and design duct and pipe sizes from a BIM model, all of which are essential components of their daily responsibilities. The course also helps with collaborative work through Revit, a key part of working in an integrated design and construction team. A BIM Mechanical Designer should take this course to enhance their skills in using Revit for mechanical design and energy analysis.
Energy Engineer
Energy Engineers develop and implement energy-efficient solutions for buildings and industrial processes. The course, with its concentration on Revit tools for energy analysis of buildings and creating thermal load reports, fits this role well. The content on exporting gbXML to simulation software helps an Energy Engineer with advanced analysis and optimization. This course can help an Energy Engineer to analyze and improve building energy performance.
MEP Coordinator
An MEP Coordinator manages the mechanical, electrical, and plumbing aspects of construction projects. The course on Revit MEP focuses directly on the mechanical aspects, providing a deep understanding of these systems within a BIM environment. The course helps the MEP Coordinator create mechanical systems in Revit, create piping systems for mechanical installations, and design duct and pipe sizes from a BIM model. The course helps with the coordination process, as it offers the ability to create mechanical configurations within Revit, design duct and pipe sizes from a BIM model, and understand energy analysis, which all enable better collaboration and issue resolution. An MEP Coordinator should take this course to improve their skills in managing mechanical systems using Revit.
HVAC Designer
The HVAC Designer is responsible for the design and planning of heating, ventilation, and air conditioning systems in buildings. This course on Revit MEP focuses on mechanical and HVAC systems and is highly relevant to this career. The course covers topics such as creating mechanical systems within Revit and designing duct and pipe sizes from a Building Information Modeling model. This helps an HVAC Designer to efficiently design and analyze HVAC systems using Revit. The course's focus on energy analysis and thermal load reports also helps the HVAC Designer to create more energy-efficient and sustainable designs. Those wanting to become an HVAC Designer would benefit from this course, as it helps provide skills needed for HVAC system design.
Mechanical Engineer
Mechanical Engineers apply principles of engineering, physics, and material science for the design, analysis, and manufacturing of mechanical systems. The course, with its focus on Revit MEP and energy analysis, would be beneficial. It helps the Mechanical Engineer with skills to create mechanical systems within Revit, create piping systems for mechanical installations, and design duct and pipe sizes from a Building Information Modeling model. The course also provides knowledge on thermal load analysis and generating reports, which are crucial for designing efficient and sustainable systems. With its focus on Revit, the course helps a mechanical engineer better utilize building information, improving their designs.
BIM Manager
BIM Managers are responsible for implementing and managing Building Information Modeling processes within an organization. The course, focusing on Revit MEP, directly contributes to a BIM Manager's skillset. With the course, one may create templates with settings suitable for mechanical design, carry out energy analysis based on building data, create mechanical systems within Revit, and create piping systems for mechanical installations, all of which are key aspects of managing BIM projects related to MEP systems. Thus, this course will be helpful to those who want to move into the BIM Manager field.
CAD Technician
CAD or computer aided design Technicians create technical drawings and plans using specialized software. This course helps CAD Technicians specializing in mechanical, electrical, and plumbing systems by enhancing their skills in using Revit MEP. This course allows them to create mechanical systems in Revit, create piping systems for mechanical installations, and design duct and pipe sizes from a Building Information Modeling model. Overall, this course is useful to help CAD Technicians become proficient in using Revit for MEP design.
Mechanical Drafter
Mechanical Drafters prepare detailed drawings and plans for mechanical devices and systems. The course directly aligns with the work of a Mechanical Drafter who specializes in MEP systems. Individuals may create mechanical systems within Revit, create piping systems for mechanical installations, and design duct and pipe sizes from a Building Information Modeling model. This course helps Mechanical Drafters to produce accurate and detailed drawings for mechanical projects, so anyone who wishes to move into this role may find this course useful.
Sustainable Design Engineer
Sustainable Design Engineers integrate environmentally friendly principles into building design and construction. The course, teaching energy analysis, thermal load reports, and gbXML exporting, helps the Sustainable Design Engineer assess building performance and optimize designs. The course helps Sustainable Design Engineers use Revit, a widely-used software, for sustainable design. The course may be useful to those wanting to specialize in sustainable design.
HVAC Project Manager
HVAC Project Managers oversee the installation, maintenance, and repair of HVAC systems. The course helps HVAC Project Managers in understanding the technical aspects of HVAC systems within a BIM environment. This course allows individuals to create mechanical systems in Revit, create piping systems for mechanical installations, and design duct and pipe sizes from a BIM model. Understanding of mechanical configurations helps better communication and coordination with design and construction teams. This course may be helpful for HVAC Project Managers.
Sustainability Consultant
Sustainability Consultants advise organizations on how to operate in a more environmentally responsible manner. The course helps with energy analysis of buildings, creating thermal load reports, and exporting gbXML to simulation software. All of these help a Sustainability Consultant better assess the environmental impact of building designs and provide recommendations for improvement. The course's emphasis on energy efficiency and sustainable design aligns perfectly with the goals of a sustainability consultant, so this course may be useful in this career.
Commissioning Agent
Commissioning Agents ensure that building systems are designed, installed, tested, and operated according to the owner's project requirements. The course, focusing on mechanical and HVAC systems in Revit, is helpful for Commissioning Agents. This course helps individuals to create mechanical systems in Revit, create piping systems for mechanical installations, and design duct and pipe sizes from a BIM model. Therefore, this course may be helpful to those who want to move into the commissioning agent field.
Facilities Manager
Facilities Managers are responsible for the upkeep and maintenance of buildings and their systems. The course helps in designing and analyzing mechanical and piping systems, which are crucial for effective facilities management. The skills acquired in the course, such as understanding mechanical configurations and creating piping systems, allow a Facilities Manager to make informed decisions about maintenance, upgrades, and energy efficiency improvements. Thus, the course may be helpful for a facilities manager.
Construction Manager
Construction Managers oversee construction projects, ensuring they are completed on time and within budget. While not directly related to construction management, the course provides skills in understanding the design and analysis of mechanical and HVAC systems. This helps a construction manager in coordinating with mechanical engineers and subcontractors, understanding design plans, and resolving any issues that may arise during construction related to these systems. Anyone wanting to move into construction management may find this course useful.

Reading list

We've selected two books that we think will supplement your learning. Use these to develop background knowledge, enrich your coursework, and gain a deeper understanding of the topics covered in Revit MEP - Mechanical / HVAC systems - AulaGEO.
This handbook provides comprehensive coverage of HVAC system design principles and practices. It serves as a valuable reference for understanding the underlying concepts behind Revit's MEP tools. It is particularly useful for understanding duct and pipe sizing calculations, which are essential for effective system design. adds depth to the course by providing the theoretical background necessary for informed decision-making within Revit.
Provides a step-by-step introduction to Revit MEP, covering the fundamentals of mechanical, electrical, and plumbing systems. It useful resource for beginners who are new to Revit MEP. It provides a solid foundation for understanding the software's interface and basic workflows. This book is more valuable as additional reading to supplement the course material.

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