
Discover dynamic modeling with Dynamo for bridges, roads, and tunnels in Revit. Build an integrated toolkit with road modeling tools to speed up workflows and review results.
Explore how dynamo BIM integrates with revit 2020 to prototype and automate workflows, create custom nodes, and extend modeling for bridges, roads, and tunnels.
Set up Dynamo scripts for Revit workflows, configure units to meters, install LunchBox, and automate element creation in a 3D architectural model using Excel inputs and topography.
Explore creating and modifying model curves in Revit and Dynamo, from level-based lines to nerve curves and curves defined by control points, and learn about parameters, lengths, and offsets.
Learn to split curves by parameter, derive start and end points, and convert points into lines or polylines, using polycurve workflows, directions, and offset and fill techniques for geometry.
Learn to create and manipulate lists of points and curves to build lines and surfaces, using indexing, transpose, cross products, and normals to support paneling and iso lines.
Utilize vectors and coordinate systems in Dynamo for Revit to place points and curves. Learn to build a custom node that generates points from curves using segment length and translations.
Explore coordinate systems by using vectors and points to derive x, y, z components, rotate vectors, and create elements with Cartesian coordinates, curves, and lofted surfaces.
Create basic elements in Revit and Dynamo, including structural framing columns, beams, and floors, using curves, poly curve by points, and lofted surfaces to automate connections.
Leverage dynamo player to automate border lines, group notes, and custom nodes, with inputs such as distance and height, for efficient bridge and road modeling.
Learn to perform topography extraction and create bridge, road, and tunnel surfaces in Revit and Dynamo by using topography limits, subregions, topography mesh, lines, and planes.
Build the bridge main line in Dynamo by selecting topography, projecting points to the surface, and creating an evenly spaced, elevation-aware curve with control points for precise geometry.
Create structural supports along a curved path in revit using dynamo, building a square profile family, aligning it to the path, and configuring instance parameters for spacing and height.
Learn to place road supports by configuring six-meter segments in Dynamo, sketching paths, and projecting a square profile with adjustable lengths for accurate structural placement.
Learn to set a family instance parameter by name, rotate using a vector angle, and place points with a coordinate system and cross products to align and connect structures.
Learn to place bridge elements in revit using dynamo, building floors by level from point sets, shaping curves and panels, and creating adaptive framing and 3d references for bridge components.
Create road geometry by importing the model, selecting a curve, and projecting points to form a flattened path that uses coordinates and vectors to follow the route.
Split the curve into evenly spaced points and build a modular conveyor structure using custom nodes, vectors, and coordinates to create connected lines and five-meter high segments.
Learn to create and place framing elements along curves by building columns and framing means, set level 3 from the structure, and manage coordinate systems and points for curve-based framing.
Create tunnel paths with manholes by importing geometry, building a parametric ring topography for roads, and aligning it with a generic model using Dynamo rotations.
Adjust a Revit family with Dynamo to develop the tunneling shape, setting two meters depth and an angle-driven diameter through reference lines, constraints, and extrusion.
Learn to model tunnel manholes in Revit using Dynamo by setting rotation angles, parameters by name, and instancing manholes at precise locations for bridges, roads, and tunnels.
This course it’s part of a new series of developments towards bringing Dynamo as main platform tool on BIM processes for any type of project.
Infrastructure and element analysis for linear projects are often manage with Civil 3d with out reviewing individual analysis elements, on this course we will bend the rules and aproach to the benefits of having a Dynamic Modeling Tool to create other types of results that can be review documented and quantified.
We will study ways to create elements integrated together and connect further to set construction possibilities.
We will explore custom nodes for specific aproaches so that your own toolkit can be created.
This course was develop by a client’s requirement to speed up dynamo learning focused only on Bridges Railways and Tunnels for a general use so it speed up the process of jumping to dynamo by the required practical tools, user interface tools and dynamo player capabilities.
We will explore tools for Revit Modeling, Tools for Dynamo Programming, Mixed Tools for Bridges
This course it’s a recommended next step for Dynamo Modeling with Structure
Dynamo its been used all over the world for speeding up Revit Models, Enabling impossible modeling, Project Management, QTOS and Documents, and to set around workflows between different types.
Unravel your full potential for Modeling and Programming and enjoy at any time the freedom of posibilities to make technology work the way you need it to.
Take advantage of posting questions, and join on all channels to be uptodate for all the amazing posibilities that in any time can transform your way of working, to change it forever