Parametric Modelling & Generative Design

Parametric Modelling & Generative Design optimizes BIM models through algorithmic parameters and AI-driven exploration for innovative, efficient designs. This service under BIM Automation & Digital Engineering enables rapid iterations, performance optimization, and automated form-finding for complex AEC projects.

What is Parametric Modelling & Generative Design?

Parametric modeling uses dynamic parameters and constraints in Revit or Dynamo to create adaptive 3D forms that adjust automatically based on input changes. Generative design leverages AI algorithms to explore thousands of design options, evaluating factors like cost, materials, energy use, and structural performance. Together, they transform traditional design into data-driven, optimized outcomes for architecture, structures, and MEP systems.

How Does It Work?

Users define parameters, rules, and goals in tools like Revit Generative Design or Dynamo scripts. Algorithms generate multiple iterations, ranking them by objectives such as minimal material use or maximal daylight. Designers refine top options, integrating them into BIM workflows for fabrication and analysis.

How Conserve Can Help

Conserve Solutions develops parametric families and generative design workflows using Revit, Dynamo, Grasshopper, and Project Refinery. We create custom scripts for facades, structural grids, and MEP layouts, delivering optimized models with embedded intelligence. Our services include training and integration with simulation tools for real-time performance feedback.

Applications

We assist architects, engineers, and fabricators with

Key Benefits

Frequently Asked Questions

FAQ's

Parametric modeling builds BIM elements with editable parameters that update geometry and data automatically.

It uses AI to automatically generate and evaluate design alternatives based on set goals and constraints.

Revit Generative Design, Dynamo, Grasshopper, and Rhino for parametric workflows.

Goals, constraints, parameters like area, cost, or loads, and base geometry.

Optimized Revit models (RVT), iteration reports (Excel/PDF), and scripts (.dyn).

1-3 weeks, depending on complexity and iteration volume.

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