Simulation Services

CFD, Design Optimization, and UQ for Product Engineering

We turn complex flow, thermal, multiphase, and uncertainty problems into structured simulation workflows that support product design decisions.

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What We Solve

Engineering questions before tooling and testing

We focus on questions that affect product performance, tooling decisions, and development cost: how much drag a design creates, where airflow separates, whether a channel creates excessive pressure drop, how droplets or particles move through a compact device, and how uncertain inputs affect final performance.

Applications

Simulation application areas

1 / 6

01 / Media slot

Aircraft CFD render, streamline video, pressure contour, or geometry-variant comparison.

Aircraft Aerodynamic Design and Optimization

For aircraft teams, simulation is most useful when it connects aerodynamic behavior to endurance, payload, stability, and manufacturable geometry. We evaluate airframe drag, lift-to-drag ratio, wing-body interaction, propeller-airframe interference, flow separation, pressure distribution, and design-variant performance.

Lift-to-drag ratioPressure distributionWake structureEndurance impact

Good fit

  • Concept airframe comparison
  • Drag reduction
  • Sensor pod or fairing impact
  • VTOL transition-region flow diagnosis
  • Wing, tail, fuselage, and propeller interaction
Open aircraft details

Deliverables

Simulation output built for decisions

A typical project may include CAD cleanup, simulation-ready geometry, mesh strategy, boundary-condition definition, baseline simulation, design-variant comparison, flow visualization, metric tables, sensitivity analysis, and engineering recommendations.

Simulation-ready geometry

Boundary-condition and assumption summary

Baseline result report

Variant comparison table

Pressure, velocity, temperature, or particle-field visualization

Key metric extraction

Risk and sensitivity interpretation

Design recommendation list

Workflow

A practical path from geometry to recommendation

01

Define the engineering question

02

Prepare CAD and assumptions

03

Run baseline simulation

04

Compare design variants

05

Extract metrics and risks

06

Deliver recommendations

Project Intake

Have a design that needs simulation review?

Send us the geometry, target metric, operating condition, and design question. We will help define a practical simulation workflow.

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