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Our aim is to develop useful tools and apps for Archicad users. On the eptar cad support page, you will find free and inexpensive Archicad add-ons and libraries that will make working in Archicad easier and more effective. Here is a small selection of our solutions:
ArchiTerra is an affordable addition to Archicad that provides increased functionality for terrain and landscaping. The terrain model can be easily edited and supplemented with everything from roads, buildings, trees and you can combine functions from ArchiTerra with objects and tools from Archicad. You can easily color parts of the model, generate length profiles on roads and find elevations anywhere in the terrain.
Also included is Norwegian-adapted SOSI import, which contains functions for automatic generation of 3D terrain, existing buildings and correct floor plan with, among other things, neighboring boundaries, building lines, etc.
.xyz or .txt. Bullet lists, with terrain data, .kof can be used after some processing in Excel. Point clouds can be imported in .xyz format, and filtered (minimum distance between points can be defined) before generating a terrain model.
Using ArchiTerra, you can import map data in SOSI format into Archicad as a 2D map, and you can create terrain models very quickly. You can also use 3D data from SOSI, such as. buildings, to generate models of existing buildings and building facilities. Importing a set of SOSI files and generating a terrain as well as an environment model only takes a few minutes and is really easy to do.
The [eptar] Reinforcement tool opens up the world of Archicad towards civil engineers who work closely with fellow architects. The solution provides a helpful tool that enables civil engineers and architects to work on the same BIM model, without leaving the Archicad environment, making this an ideal add-on for medium-sized architecture firms.
The solution helps designers to draw, document and list the necessary reinforcement for their buildings in Archicad. The application provides tools to define all 2D drawings and the complete 3D model as well as the cutting list of rebar. The solution supports Archicad network-keys as well.
This solution helps users define real roof tile designs for their buildings modeled in Archicad. The solution offers real products and true-to-life colors from the product range of Mediterrn Hungary Ltd. Download content
The elements made with eptar are basically objects. If you change a structural element in Archicad you need to reshape the reinforcement by changing the parameters of the reinforcements objects yourself, so it is not automatic.
The reinforcement scenarios you can model is not bad, it can be pretty versatile, but the documentation process (graphic positioning on layouts, how you can label elements, show the elements themselves, quantity takeoffs, etc.) is still bad and have minimal control over it.
I have used it for my project, and as far as updating goes, it is a little bit tedious. It is not as robust as a Rivet would be however, I find it to be very useful quality and presentation with minimal effort. I have used it for a house. The size is 24,000 square-foot. It provided me with all the steel work detail that I needed. I definitely think you should give it a try however use the one for Archicad 26.
A great building is the result of designers, architects, engineers and contractors working together. We are committed to facilitate open collaboration. Archicad supports more than 40 export and import formats, including classics such as DWG, PDF and XLS as well as the contemporary OPEN BIM formats IFC and BCF. The latter are manufacturer-independent and industry standards.
The [eptar] solution helps designers to draw documents and lists the necessary reinforcement for their buildings in ArchiCAD. The application provides tools to define all 2D drawings as well as complete 3D models.
[eptar] provide great freedom in defining constructions and also help to specify complex objects. Eptar Reinforcement checks the rebar ID numbering and corrects it if necessary. With tools, users can simply calculate the necessary amount of rebars. Iron list is available on the floor plan just as the interactive schedule.
OPEN BIM is a universal approach to the collaborative design, realization, and operation of buildings based on open standardsand workflows. OPEN BIM is an initiative of several leading software vendors using the open building SMART Data Model.
There are three main criteria driving the architectural enhancements in Allplan 2024: enabling design in context, accelerating design processes and automation, and providing flexible and accelerated data information management. An example of enabling design in context is a new GIS Connector tool which allows detailed site data to be brought into Allplan through a cloud-based connector. It is powered by 3DCityLoader, a service that connects to global open GIS platforms and includes models of several cities in its database. As shown in Figure 3, you can use the GIS Connector tool to select an area to import into Allplan and specify the content that is needed such as 3D buildings, terrains, cadastral maps, street contours, textures, etc. The selected site and accompanying data is quickly brought into Allplan, providing an accurate and detailed site context for the design.
Additional enhancements for steel construction include the introduction of inclined columns as a new structural steel component and the ability to connect structural components to each other with a new "line component to line component" function. These enhancements allow more flexibility and precision for modeling the structural steel frame of the design.
For cast-in-place concrete, you can now create and modify reinforcement directly in 3D, which is especially helpful for structural firms who do not want to create 2D drawings any longer but have entirely model-based workflows. For those with hybrid workflows, there is full associativity between models and drawings. The automated reinforcement capabilities that were already available in Allplan for individual components have been expanded in this release to L- and T-shaped wall connections as well (Figure 9), helping to further speed up repetitive, time-consuming tasks.
Last but not least, the clash detection capabilities for reinforcement have been finetuned to differentiate between hard clashes, soft clashes, and workflow clashes, based on user-defined parameters. This is very helpful as there are typically many clashes that can be resolved with only minor adjustments to the reinforcement and are not mission-critical, and having a clearer picture of these allows customers to focus on the more severe cases. The clashes are color-coded based on their severity.
Integrated formwork planning for in-situ or cast-in-place concrete is another new feature in Allplan 2024. It is enabled by a new add-on tool for designing formwork systems that can automatically assemble the individual components of the formwork based on the manufacturer that has been selected, the systems they support, and any additional settings (Figure 11). Having this integrated formwork design capability allows construction companies to take the service inhouse instead of outsourcing it to external companies, which is typically very expensive. In addition to the cost savings, it also allows construction companies to take greater control over the phasing and the construction sequence of the elements needing the formwork. And since Allplan is a BIM application, the formwork design can be directly associated with the building elements that have been modeled in it.
Allplan now has a fully integrated and parametric workflow that includes the three main transportation infrastructure elements: roads, bridges, and tunnels. What this means from a high-level perspective is that you can define a single axis for a transportation stretch comprising all the elements, and if that axis is changed, the individual elements like roads, bridges, and tunnels that have been defined in relation to that axis are all changed so as to maintain their relationship to the axis and their connections with each other (Figure 12). The technology stack enabling this includes Allplan, Allplan Bridge, as well as Allplan Bimplus as the exchange platform between the two.
Other enhancements in Allplan for infrastructure design include a fully template-based design for roads that enables their geometry to be quickly modified, the ability to create parametric intersections between two roads by simply clicking on them, automated outputs such as earthwork volumes or stakeout points from the model, and support of the new IFC 4.3 format that is specific to infrastructure.
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