Revit MEP Complete - Electrical, Plumbing and HVAC - AulaGEO

所在平台: Udemy

课程主页: https://www.udemy.com/course/revit-mep-specialization/

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课程名称:Revit MEP 完整课程 - 电气、管道和 HVAC - AulaGEO 课程概述: Revit MEP 电气机械专业化课程是专业人士学习建筑信息建模(BIM)设计基础的完美途径,帮助学员在 Revit 领域获得专业技能。此课程提供深入的学习体验,涵盖从基本原理到高级技术的内容,包括图纸绘制、建模和可视化等主题,以及 Autodesk Revit 工具的使用。通过此专业化课程,学员将能够熟练使用 Revit MEP 进行电气系统、管道系统和 HVAC 系统等项目的设计。课程内容全面,涵盖 3D 建模、可视化技术和项目协调等主题,使学生掌握在职业生涯中脱颖而出的技能。 课程内容: **第一部分 - 电气** 在课程中,我们将关注 Revit 项目中必需的配置,以便进行电气计算。你将学习如何处理电路、配电板、电压类型和电气分配系统,提取电路数据并创建平衡设计负荷的仪表板视图。最后,我们将展示如何创建部件、导线和电气管道的详细报告。 **第二部分 - 管道** 针对管道部分,我们将专注于如何正确配置项目以适应管道安装,同时考虑多学科项目中所需的协同工作。学员将学习在 BIM 环境下建模、设计和报告卫生设施模型。课程最后,将关注创建合理的管道系统及其元素,并使用 Revit 引擎进行尺寸设计和性能验证。 **第三部分 - HVAC** 在这一部分,将集中使用 Revit 工具进行建筑能量分析。学员将学习如何在模型中输入能量信息,以及如何将该信息导出以供 Revit 之外的处理。课程最后,将关注逻辑管道和管道系统的创建,利用 Revit 引擎进行设计尺寸及性能验证。 此课程由 AulaGeo 团队精心制作,由 Enzo 开发,Gabriella 为英语学习者配音。

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Revit MEP Electromechanical Specialization Course is the perfect way for professionals to learn the fundamentals of BIM design and become specialized in Revit. This course provides an in-depth learning experience that covers everything from basic principles to advanced techniques. It covers topics such as drafting, modeling, and visualization, as well as the use of tools such as Autodesk Revit. #AulaGEOThrough this specialization course, learners will be able to become proficient in using Revit MEP for projects such as electrical systems, plumbing systems & HVAC systems. With a comprehensive curriculum that covers topics such as 3D modeling, visualization techniques, and project coordination, this course arms students with the skills needed to excel in your career path.CONTENTPART I - ElectricalDuring the development of the course we will pay attention to the necessary configuration within a Revit project to be able to execute electrical calculations. We will show you how to work with circuits, boards, voltage types and electrical distribution systems. You will learn how to extract data from circuits and create dashboard views that balance design loads.Finally, we will show you how to create detailed reports of parts, conductors and electrical pipes.IntroductionLecture 1: IntroductionLecture 2: Electricity templatesLecture 3: Link external modelsLightingLecture 4: Efficient lighting designLecture 5: Spaces and lightingLecture 6: Reflected ceiling viewLecture 7: Lighting analysisLecture 8: Lighting fixturesLecture 9: Light switchesLecture 10: Annotation symbolsPowerLecture 11: Create circuitsLecture 12: Electric ConectorsLecture 13: Transformers and boardsLecture 14: Power distribution systemsLecture 15: Conduits and cable traysLecture 16: Configuration of electrical pipesLecture 17: Placing conduits on a modelLecture 18: Place cable trays on modelLecture 19: Electrical configurationsLecture 20: Wiring configurationLecture 21: Voltage configuration and distribution systemsLecture 22: Set up load calculation and dashboard viewLecture 23: Create circuits and wiringLecture 24: Manual cable creationLecture 25: Circuit PropertiesLecture 26: Board PropertiesLecture 27: Circuit tablesConclusionLecture 28: FarewellPART II - PlumbingFor plumbing, we will focus on how to properly configure our projects to work with plumbing installations. And we will do it taking into account the collaborative work necessary for multi-disciplinary projects. You will learn to model, design and report models of sanitary facilities under the BIM environment. 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.IntroductionLecture 1: IntroductionLecture 2: Templates for plumbing systemsLecture 3: Link architecturePlumbing Model CreationLecture 4: Place piecesLecture 5: Pieces per monitor copyLecture 6: Pipe connectorsLecture 7: Place teamsLecture 8: Plumbing setupLecture 9: Piping systemsLecture 10: Pipe routingLecture 11: Manual laying of pipesLecture 12: Pendiente de tuberíasLecture 13: Valves and other accessoriesInspection, design and reportingLecture 14: Systems inspectionLecture 15: Piping designLecture 16: Pressure loss reportsLecture 17: Sanitary Parts TablesConclusionLecture 18: FarewellPART III - HVACIn this part 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. 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.IntroductionLecture 1: IntroductionLecture 2: Templates with mechanical configurationsLecture 3: Links for collaborative workEnergy DesignLecture 4: Create spacesLecture 5: Place spacesLecture 6: Create space tablesLecture 7: Modify space propertiesLecture 8: Create zonesLecture 9: Modify construction optionsLecture 10: Thermal load analysisLecture 11: Load analysisLecture 12: Climate dataLecture 13: Sliver spacesLecture 14: Level of detail of the reportLecture 15: Load analysis detailsLecture 16: Thermal load reportsLecture 17: Export gbXML to simulation softwareDesign of mechanical installationsLecture 18: Systems ExplorerLecture 19: Mechanical configurationsLecture 20: Duct connectorsLecture 21: Create mechanical systemsLecture 22: Mechanical piping configurationLecture 23: Pipe connectorsLecture 24: Piping systemsLecture 25: Place terminalsLecture 26: Place mechanical equipmentLecture 27: Create routing schemeLecture 28: Manual routingLecture 29: Duct sizesLecture 30: Mechanical piping equipmentLecture 31: Mechanical pipe routingLecture 32: Manual pipe editingLecture 33: Mechanical pipe sizeLecture 34: Loss reportsConclusionLecture 35: FarewellThe AulaGeo team worked hard on this course. It was developed in Spanish by Enzo, voiced by Gabriella for English speaking students.

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