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BIMBrainAgentic AI in AEC

Agentic-AI Aided Engineering and Design

Better Buildings,
Smarter Cities
& Infrastructure with AI

Supporting Architecture, Engineering and Construction companies to cope with and adopt Agentic AI in their business.
A better way to manage your Agentic Engineers.
From the first design decision to the building in use: AI teams, engineering workflows and a living digital twin.

BIMBrain / the team · workflows · the villa
5 agents · 10 workflows & scripts
3 products
IFC · BCF · glTF
BUILT FOR THE BUILT WORLDHuman direction. Agent execution. Open formats.
Open by designIFCBCFglTFCityJSONGeoJSONAutodesk & Esri integrationsYour models. Your decisions.

01 / How the platform works

Intelligence that moves
the whole project forward.

Give the team intent. Give the process structure. Give the building a memory.

01 / COLLABORATE

BIM Agents Studio

You direct.
Your AI team delivers.

Laila Haddad coordinates Omar in architecture, Rahul in structures and Sara in MEP. They author IFC, report, clash-check and federate each round — then work through the next decision.

  • Direct by voice in English or Egyptian Arabic, WhatsApp and phone.
  • Team Designer: set up the team for each project, sized to its complexity.
  • Every turn versioned, with tokens and cost visible.
Meet your next project team

BIMBrain / Agents Studio

BIM Agents Studio with Laila coordinating a team alongside a building model
The shared workspace, from conversation to model.
BasisDispatchARC · Omar's IFCSTR · Rahul's IFCMEP · Sara's IFCClash + federateReportsRe-dispatchone model, 0 clashesClient decisions ↗EACH AGENT ITS OWN MODEL · THE COORDINATOR FEDERATES
02 / ORCHESTRATE

Agentic Workflow Designer

Let AI propose.
Let engineering decide.

Build with 80+ nodes and typed artifacts. Generative steps propose; deterministic steps measure, check and refuse. Publish the workflow as an app your team can run.

  • Sun, daylight, wind CFD, ventilation and EnergyPlus.
  • Structural FEM, RC design to ACI 318-19, GA and swarm optimisation.
  • Masterplanning, site / OSM, AI reports, renders and video.
Build a repeatable process
Propose · AIMeasure · codeGateGENERATIVEDETERMINISTICPassTyped artifact → publish as appRefuse → reviseCREATIVITY, WITH A CHECKABLE CONTRACT

BIMBrain / Workflow Designer

A readable BIMBrain workflow canvas connecting engineering and generative nodes
Connect the reasoning. Keep the checks explicit.
03 / UNDERSTAND

Agentic Digital Twin

A building that tells you
what needs attention.

Agent-based facility management in a context-aware digital twin. Sensors and analysis sit on an open IFC viewer; agents watch, raise decisions and act within the rules you set.

  • Connect the element to its site, occupancy and design history.
  • Keep people in control of decisions and actions.
Bring the model into operation
From model to operational context
Agent flags zoneContext → decisionAct within your rulesOPEN IFC · SENSORS · ANALYSIS
A signal becomes a decision.

Observe → understand → raise → act

Illustrative agent and sensor interaction

02 / Evidence, not just possibility

Real runs.
Inspectable results.

Measured project runs, with their scope kept visible. These are recorded results, not promises for every project.

FIELD NOTES / DUBAI VILLA
hard clashes

Independently confirmed

Dubai villa run
tool calls
elements in the federated model

Workflow engine

Repeatable by construction.

Exact agreement with an independent takeoff across 6 models, from 40 to 6,098 elements.

node pipeline
step run, reproducible from a frozen snapshot

Field notes / Dubai villa, G+1

Agents that do engineering work,
and grow with your projects.

Four agents took a four-bedroom villa from a brief to coordinated architectural, structural and MEP models in one run. Afterwards the coordinator wrote down what it learned, and the whole team carries it into the next project.

BIMBrain / Viewer · ARC model on its Al Manara plot

The villa placed on its plot among the neighbouring buildings from OpenStreetMap, with the pool, garden and fence
In context: the plot, the street and the neighbours around it

Agents Studio / Trades · ARC 532 · STR 251 · MEP 2,681

The federated villa coloured by discipline: architecture in blue, structure in orange, MEP in green
Every discipline in one federated model, coloured by who made it

BIMBrain / Viewer · MEP model, 13 systems

The villa's MEP model on its own: ducts, pipes, cable trays, equipment and site services, coloured by system
The MEP engineer at work: 13 systems, 2,681 elements, sleeves scheduled
→ clashes at the peak, then none: the coordinator ran the check every round until the federated model was clean
MEP penetrations of walls and slabs found and scheduled with sleeves; 87 structural voids cut
RFIs · revisionsquestions raised between disciplines, each answered and closed against a numbered revision of the shared basis
lessons → skillswritten by the coordinator after the run, given to the team, and carried into every project since
rounds · from the brief to a clash-free federated model; by the coordinator's own estimate a second run takes about half
physical elements across 3 storeys: 574 architectural, 251 structural, 2,681 services, plus 107 pieces of furniture

What the team learned, as skills it now carries

  • bim-task-disciplinetime-boxing, status files and clean handovers on every task
  • bim-ifc-export-qaa pre-delivery check before any IFC is reported
  • bim-clash-workflowhow to run and react to clash detection, joints excluded
  • bim-coordination-basiswriting and revising the shared basis the disciplines build on
  • mep-routing-rulesrouting services around shafts, ceilings and structure

Field notes / Space truss, 24 × 30 m bolted-ball glass roof

From the brief to fabrication drawings,
at LOD 400.

One brief, four agents, one run of 3 h 49 min. The team optimised the grid, designed and detailed every bar end and ball, modelled the roof and its glazing, coordinated the two disciplines and issued 67 review sheets, down to a drilling card for every node.

The space truss model in the BIMBrain IFC viewer
FIELD NOTES / SPACE TRUSS
agents
run time
A1 review sheets
bolted-ball nodes

About of API compute at list prices.

  1. 01BriefA 24 × 30 m glass roof on 18 bearings, with cost and stress targets and a bar-length limit.
  2. 02OptimisationA genetic algorithm over the grid and sections, 40 generations, then an exhaustive check.
  3. 03DesignBar sections and bolted-ball nodes sized for the governing load case, self-weight included.
  4. 04DetailingWelded cones, hex sleeves, M24 / M30 / M39 bolts and a drilling axis for every hole.
  5. 05Modelling4,015 structural and 421 glazing elements authored in IFC, each with its mark.
  6. 06CoordinationGlazing brackets set on the top balls, RFIs raised and closed, the federation clash-checked.
  7. 07Fabrication drawings67 A1 review sheets: plans, elevations, node types, bearings, drilling cards, erection sequence. LOD 400.

Optimised grid → STR-301 erection review · portals → bearings → bottom chord → webs → top chord → glazing

Constructability: the roof assembled in the sequence the structural agent proposed for review

Node N040 · LOD 400 fabrication model

Bolted-ball node N040 with its eight bar ends: welded cones, hex compression sleeves, M24 captured bolts and the glazing ball seat
Ball Ø240, welded cone ends, hex sleeves, M24 10.9 captured bolts, glazing seat

STR-201 · Standard bar ends and node types

Sheet STR-201: sections through the N1 and N2 bar ends into the ball, with the node type and bolt envelope schedules
A1 sheet: bar-end sections, node-type schedule, bolt envelopes

STR-F010 · Individual ball drilling cards

Sheet STR-F010: drilling cards for nodes 037 to 040 with hole azimuth, elevation, face, engagement and depth for every bar
Fabrication sheet: one drilling card per node, every hole with its axis and depth

Optimisation

The search, generation by generation.

The genetic algorithm varied the grid and the bar sections against cost and average stress, with bar-length limits as constraints. It settled after 20 generations at 397,465 AED; the exhaustive check the coordinator ordered afterwards found the 8 × 8 grid at 372,055 AED, which the team adopted for the detailing.

0.40.60.81.0110203040generationsettled · 397,465 AED
Best design so far · gen 40
Grid
8 × 8
Depth
0.87 m
Chord
CHS 139.7×5.0
Web
CHS 114.3×4.5
Avg stress ratio
0.21
Cost
397,465 AED
Plan · 8 × 8
Section · 0.87 m
best mean worst40 generations, 40 feasible designs; the exhaustive check afterwards found a cheaper 8×8 at 372,055 AED, which the coordinator adopted

03 / Levels & pricing

Start with a task.
Grow into a connected practice.

Choose the level of AI adoption that fits your AEC business.

LEVEL 01

Automation Tasks

Single tasks on your models, run on demand or on a trigger

XX

pricing to be announced

  • Model checks, clash detection, quantities and BCF on IFC
  • Autodesk integrations: ACC files and versions, the APS viewer and Design Automation, with your own credentials
  • Environmental analysis: sun, daylight, wind CFD, ventilation and EnergyPlus
  • Structural analysis and reinforced-concrete design to ACI 318-19
  • Reports, renders and exports, published as apps your team can run
LEVEL 03

All Products and Agentic Digital Twin

Everything in Levels 1 and 2, plus agent-based facility management in a context-aware digital twin

XX

pricing to be announced

  • Everything in Automation Tasks and in Agents Studio and Agentic Workflow Designer
  • The building in use on an open IFC viewer, with sensors and analysis overlaid on the elements
  • Agents that watch the twin, raise what needs a decision and act within the rules you set
  • Context: site, weather, occupancy and the design history behind every element
  • Open formats throughout: IFC, BCF, glTF, CityJSON and GeoJSON

04 / Make it your practice

Sign up for AI adoption for your AEC business.

A model check. A coordinated design team. A building in operation. Tell us where you want to start, and let’s shape the right next step.

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I’m interested in

Let’s build better

A conversation
starts the next chapter.

Write to Laila Haddad, our BIM Agent. She reads every message and brings in the right people.

laila.haddad@bimbrain.de

The team behind BIMBrain

Construction informatics, Europe and the Gulf

We bring twelve years of experience in construction informatics from Europe and the Gulf: building BIM software inside contractors and vendors, architecting AEC solutions for the largest platform in the industry, leading digital transformation in Middle East masterplanning, and researching digital twins and brain-computer interfaces at a German technical university.

Company / Impressum

BIMBrain UG (haftungsbeschränkt)

Bismarckstraße 19A, 32756 Detmold, Germany

Amtsgericht Frankfurt am Main, HRB 133740

BIMBrain

Better Buildings, Smarter Cities & Infrastructure with AI

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