PRECISION ENGINEERING CAPABILITIES

Computational Engineering & High-Fidelity Simulation

Discover our core physics domains. We combine mathematical modeling, continuum mechanics, and high-performance computing to accelerate your product development lifecycle.

NAVIER-STOKES SOLVER

Computational Fluid Dynamics (CFD)

High-resolution fluid mechanics, aerodynamics, multi-phase flow, conjugate heat transfer, and turbomachinery analysis.

Governing Physics & Solvers:

Navier-Stokes (RANS/LES/DES) Conjugate Heat Transfer (CHT) Multiphase & Cavitation Supersonic & Transonic Aerodynamics
View Full CFD Simulation Scope →

Numerical Solver Benchmarks:

Solver Resolution: Up to 120M+ Polyhedral Cells
Turbulence Closure: k-omega SST, Spalart-Allmaras, LES
Phase Modeling: VOF, Eulerian-Eulerian, DPM
Verification Standard: ASME V&V 20 / AIAA G-077

Primary Applications:

  • • Automotive external aerodynamics & drag coefficient (Cd) minimization
  • • Electric vehicle battery pack liquid cold plate & thermal runaway mitigation
  • • Turbomachinery rotor-stator flow & stage efficiency optimization
  • • Industrial ventilation, cleanroom airflow, and HVAC thermal comfort
STRUCTURAL MECHANICS

Finite Element Analysis (FEA)

Linear and non-linear structural analysis, multi-body dynamics, high-cycle fatigue, vibration, shock, and crashworthiness.

Governing Physics & Solvers:

Non-Linear Elasto-Plasticity Dynamic Modal & Harmonic Response Low/High Cycle Fatigue Life (S-N / E-N) Contact Mechanics & Friction
View Full FEA & Mechanics Scope →

Numerical Solver Benchmarks:

Element Formulations: Hex8, Tet10, Shell, Cohesive Elements
Non-Linearities: Geometric, Material & Contact Non-linearities
Fatigue Assessment: Morrow, Goodman, Gerber, Strain-Life
Safety Standard: ASME Section VIII, Eurocode 3, DIN 18800

Primary Applications:

  • • Aerospace bracket and airframe structural stress qualification
  • • Heavy equipment chassis durability and cyclic load fatigue prediction
  • • Drop testing and impact shock absorption for consumer electronics
  • • Bolted joint pre-tensioning and flange sealing integrity under thermal cycles
MAXWELL FIELD SOLVER

Electromagnetics & High-Frequency Simulation

Electric motor design, parasitic inductance, antenna radiation, EMI/EMC shielding compliance, and high-frequency wave propagation.

Governing Physics & Solvers:

Time-Harmonic Maxwell Equations Transient Magnetic & Core Loss Eddy Currents & Skin Effect S-Parameters & Radiated Emissions
View Full Electromagnetics Scope →

Numerical Solver Benchmarks:

Frequency Spectrum: DC to 60 GHz High-Frequency Band
Motor Typologies: PMSM, IPM, BLDC, Induction Motors
EMC Standard: CISPR 25, ISO 11452, IEC 61000
Coupling: Electro-Thermal & Magneto-Acoustic Coupling

Primary Applications:

  • • Traction motor torque ripple minimization and flux barrier optimization
  • • Wireless power transfer efficiency and SAR safety verification
  • • PCB transmission line impedance matching and crosstalk reduction
  • • Transformer core loss, magnetostriction noise, and thermal dissipation
TOPOLOGY & SHAPE

Generative CAE & Topology Optimization

Material redistribution algorithms, multi-disciplinary optimization (MDO), lattice generation, and additive manufacturing readiness.

Governing Physics & Solvers:

SIMP Density Redistribution Level-Set Topology Algorithms Lattice Unit Cell Homogenization Multi-Objective Pareto Frontiers
View Full Design Optimization Scope →

Numerical Solver Benchmarks:

Mass Reduction: Average 22% – 45% Structural Mass Cut
Stiffness Retention: Maximization of Compliance Matrix
Tooling Constraints: Milling, Casting, 3D Print Overhang Angles
Convergence Tol: Residual < 1e-4 across 150+ Design Iterations

Primary Applications:

  • • Suspension uprights and knuckles optimized for minimum unsprung weight
  • • Aerospace mounting brackets designed for selective laser melting (SLM)
  • • Thermal heatsink fin topology for enhanced natural convection
  • • Internal conformal cooling channels in injection molds
NEURAL SURROGATES

AI-Driven Physics & Surrogate Modeling

Physics-Informed Neural Networks (PINNs), reduced-order models (ROMs), and fast predictive engineering surrogates.

Governing Physics & Solvers:

Loss Formulations with PDE Residuals Proper Orthogonal Decomposition (POD) Kriging & Gaussian Process Regressors Real-time Digital Twin Inference
View Full AI/ML Simulation Scope →

Numerical Solver Benchmarks:

Inference Acceleration: 1000x – 10,000x Speedup vs. Full 3D CFD/FEA
Residual L2 Error: < 1.5% Across Validated Parameter Space
Model Footprint: Embedded Edge Execution (< 50MB Binary)
Training Efficiency: Sparse Sampling via Latin Hypercube DOE

Primary Applications:

  • • Sub-second aerodynamic prediction for generative styling studios
  • • Real-time industrial boiler thermal monitoring via digital twins
  • • Predictive maintenance remaining useful life (RUL) estimation
  • • Battery degradation prognosis under stochastic duty cycles

Need a Multi-Disciplinary Simulation Scope?

Many complex problems require coupled multi-physics (e.g. Conjugate Heat Transfer coupled with thermal stress FEA). Our engineers will define the exact coupling matrix for your project.