Showing posts with label Autodesk Revit 2013. Show all posts
Showing posts with label Autodesk Revit 2013. Show all posts

Friday, May 17, 2013

The Expansion of My Horizon

            Throughout this project I have learned a lot, not only about what I thought I was going to learn, but also a multitude of unpredicted things as well! I researched a variety of concepts and acquired a comprehensive knowledge in a broad range of categories. I focused on researching Intermodal Steel Building Units (ISBU) or shipping containers, and the application of these components as housing accommodations; as well as, architectural principles, such as insulation, foundation, and component clearance. I soon found though, the more I learned the more I needed to research in different areas. Insulation research turned into extensive research on insulation types, wall composition, heat transfer and thermal resistance, and so on! Then the foundation was not simply deciding the foundation type, it involved research into the region’s soil properties and load calculations. And with the component clearance, I had to integrated math and physics principles in the application of spatial design—let me just say, this is no piece of cake! I even learned about the military! Seeing as I WAS designing for the military it only made since I knew how many personnel made a squad and that four squads make a platoon! Not to mention, the military actually has a program, JOCOTAS (The Joint Committee on Tactical Shelters), that calls for housing reform—which is exactly what my project provides! But these are only the concepts I learned from the research alone, there was SO much more to this project than just research!
            I designed in a whole new software I had never used before—Autodesk Revit, a Building Information Modeling software. This presented its own set of challenges and knowledge base. I learned the software from the ground up, and even learned how to do some pretty advanced things—as I was designing in shipping containers, which the software interpreted as components not buildings and therefore they worked differently and had to be treated as such. I also worked with designing components I needed but could not find.  I established software communication by designing these components in Autodesk Inventor, and exporting them and importing them into my Revit project. In doing this, I learned how to identify components that have been imported into Revit from another software—as, in the transfer the component becomes a single mass, and usually design materials are lost. In working with imported components, I have not found a way to alter material types, though there is most likely some way that I have yet to discover.  But that is what the software is about—you play around with it enough and there is that “AH HA” moment when you figure out how something is done.
            Project RHEMIDI has been a great experience for me, I not only gained knowledge and insight into the field of architecture, but now I am sure, civil engineering with an architectural back, is definitely the career I want to pursue in college! 

Friday, May 10, 2013

Part Two - The 3D Site Plan

Technical Manufacturing with Mr. Reece

The 3D Site Plan features all of my designed units with doors, windows, and footings, as well as a mess hall model and power house models featuring solar technology. Due to the way Revit works, the Site Plan models have been created as separate models, and are only outside representation.  Though it was necessary to create the original models for the architectural plans as Project files, these cannot be imported as components in other Project files.  For this reason, the creation of new models as Family files was required to create this Site Plan.
            The mess hall unit was designed using four forty foot ISBU units in total. The units are in two stacks, two containers high, and are forty feet apart; this design allows a roof to be put in the middle and will serve as a dining area. The bottom containers are intended to be kitchen and food units and the top containers intended for the housing of staff or supplies. The power house containers are designed with solar panels of varying heights facing true South organized around the container. Inside, the container houses large batteries to store this power and electric generators for assistant purposes.  Also located in different areas around the base are back-up generators for specific amenities such as the SCHEMA units and the mess hall.

 

Wednesday, February 13, 2013

Revit

Autodesk Revit is Building Information Modeling (BIM) software that enables architects and engineers alike to model and design more efficiently.  There are currently three main versions of Revit: Autodesk Revit Architecture, Autodesk Revit MEP, and Autodesk Revit Structure.  Autodesk Revit Architecture is primarily for building design and was originally called Revit Building.  Autodesk Revit MEP focuses on the mechanics of the building; this software’s purpose is to help with mechanical, electrical, and plumbing (MEP) design with specific tools created with these purposes in mind.  Autodesk Revit Structure allows structural engineers to build and design structures more accurately and efficiently by presenting design tools specific to building structures and using intelligent models.  Autodesk Revit 2013 is a fusion of the above software, Autodesk Revit Architecture, Autodesk Revit MEP, and Autodesk Revit Structure, in one comprehensive package, and will be what I will be using to design in.
Revit products save BIM models using .RVT files; these models are created using parametric objects or 3D objects and 2D objects called families, and can be imported into projects to create a building.  A family file is identified by a category such as furniture, plumbing fixtures, or generic models, and is created and grouped based on the characteristics of said category.  Once completed, families are saved in .RFA files that can be inserted into projects.  Projects are Revit’s equivalent of the Autodesk Inventor assembly file, if you are familiar with Inventor.  A project file cannot be inserted into a family or another project; they are the final model file and are saved in .RVT files.  Simply put, a project is where the building model is assembled with some new creations while families are the components placed in the project.