CFD Analysis Services

Computer Aided Engineering
20+Years Experience
500+Projects Delivered
  • AI-augmented engineering workflows
  • 24/7 onshore-offshore delivery
  • Quality-first methodology

Service Overview

CFD Analysis Services

AES provides expert CFD analysis services that reduce design risk, accelerate product development, and give your engineering team simulation-ready insights. Our CFD consulting services are backed by 20+ years of experience and 500+ completed projects worldwide. Whether you need turbulent flow characterization, conjugate heat transfer modeling, or full system-level simulation, our team is available 24/7 to meet your deadlines.

Solver Toolkit
ANSYS Fluent OpenFOAM STAR-CCM+ FloEFD

What We Offer

Solutions We Provide

Targeted engineering solutions built around your industry challenges and delivery timelines.

Battery Pack Airflow and Thermal Management

CFD-based airflow simulation and thermal analysis for battery pack cooling system design in HEV, BEV, and PHEV platforms.

EV Charging Station Thermal Analysis

Thermal simulation for EV charging station enclosures, power electronics cooling, and heat dissipation validation.

Crash and Impact Flow Analysis

Fluid-structure interaction and aerodynamic simulation supporting crash test preparation and post-impact airflow behavior.

Automotive Underhood Thermal Management

Full underhood CFD analysis to optimize airflow, cooling fan performance, and thermal load distribution in automotive platforms.

Data Center Airflow Optimization

Room-level and rack-level CFD simulation to reduce cooling costs and improve PUE in data center facilities.

Sector Expertise

Industries We Are Experts In

Automotive and Electric Vehicles (EV)

Battery and Energy Storage

Aerospace and Defense

Electronics and Semiconductor

Data Centers

Industrial and Heavy Engineering

Consumer Electronics

Renewable Energy

What We Deliver

Specialized Capabilities in CFD Analysis Services

Section 01

Fluid Flow Analysis

Single-phase CFD

Fluid flow characterization is the foundation of every reliable CFD analysis. Our engineers model steady-state and transient flow regimes from low-speed laminar pipe flows to high-speed compressible aerodynamic flows. We apply advanced turbulence modeling to capture flow instabilities, pressure drops, velocity profiles, and recirculation zones with the accuracy your design decisions demand.

  • Steady-state and transient flow simulations
  • Laminar and turbulent flow distribution (k-eps, k-omega SST, LES)
  • Incompressible and compressible fluid modeling
  • Internal and external flow analysis
  • Pressure drop and flow resistance characterization
  • Structured, unstructured, and polyhedral mesh generation
Fluid Flow Analysis
Section 02

Conjugate Heat Transfer Simulations

CHT simulations

Thermal failures are among the most costly and preventable engineering problems. Our CFD consulting team runs conjugate heat transfer simulations that couple fluid flow and solid conduction in a single domain, giving you a complete picture of how heat moves through your system. Trusted by aerospace, automotive, and energy clients to validate designs against temperature limits before any prototype is built.

  • Conjugate heat transfer (CHT) simulation
  • Forced and natural convection analysis
  • Electronics and PCB thermal management simulation
  • Heat exchanger and cold plate design validation
  • Radiation heat transfer modeling (surface-to-surface, DO model)
  • Thermal stress coupling with structural analysis
Conjugate Heat Transfer Simulations
Section 03

Free Surface and Phase Change

Interface physics

Phase change and free surface flows are among the most physically complex problems in engineering. Our CFD simulation team applies VOF, Lee model, and mixture-phase-change approaches to accurately predict boiling, condensation, melting, solidification, and liquid sloshing in industrial equipment and thermal energy storage systems.

  • Free surface tracking using VOF and Level-Set methods
  • Melting and solidification (casting, PCM thermal storage)
  • Nucleate and film boiling simulation
  • Condensation and evaporation modeling (Lee, Hertz-Knudsen)
  • Liquid sloshing in tanks and vessels
  • Spray cooling and droplet impingement
Free Surface and Phase Change
Section 04

Multiphase Flow

Eulerian, Lagrangian and VOF

Multiphase flow problems require specialized modeling that goes beyond standard single-phase CFD. As one of the leading CFD simulation companies in this domain, AES has deep expertise in Eulerian-Eulerian, Eulerian-Lagrangian, and VOF methods for gas-liquid, liquid-liquid, and particle-laden flows across oil and gas, spray, and reactor applications.

  • Eulerian multiphase and mixture model simulations
  • Multi-component and multi-phase flow modeling
  • Lagrangian particle tracking (DPM) and spray modeling
  • Erosion and deposition prediction
  • Bubble column and fluidized bed reactor simulation
  • Liquid-liquid extraction and separation modeling
Multiphase Flow
Section 05

Aerodynamics and Aero-Acoustics

RANS, LES and DES

Our CFD simulation services for aerodynamics use RANS, LES, and hybrid DES turbulence approaches validated against wind tunnel benchmarks. We extend beyond flow prediction to resolve noise sources from turbulent boundary layers, wakes, and cavity resonances using Ffowcs Williams-Hawkings acoustic models, making AES one of the few providers offering a fully integrated aero-structural-acoustic workflow.

  • External aerodynamics: drag, lift, and downforce optimization
  • Internal aerodynamics: ducting, inlet, and diffuser performance
  • Aero-structural load mapping for composite design
  • Aero-thermal: nacelle cooling and heat shield analysis
  • Aero-acoustics: tonal and broadband noise prediction (FWH)
  • Race car, UAV, and wind turbine blade aerodynamics
Aerodynamics and Aero-Acoustics
Section 06

Rotor Dynamics and Turbomachinery

MRF and sliding mesh

Rotating machinery operates under demanding fluid-dynamic conditions where small inefficiencies translate directly into energy loss and downtime. Our CFD consulting services for turbomachinery cover pumps, compressors, turbines, fans, and blowers using MRF, sliding mesh, and rotor-stator interaction models to resolve blade loading, pressure rise, and efficiency maps across the full operating range.

  • Axial and centrifugal pump, compressor, and turbine CFD
  • Blower and cooling fan performance mapping
  • Swirling and rotating flow analysis (MRF, sliding mesh)
  • Cavitation onset and bubble dynamics prediction
  • Lateral and torsional rotor vibration analysis
  • Root cause investigation for machinery failures
Rotor Dynamics and Turbomachinery

Fluid-Structure Interaction (FSI)

One-way and two-way coupling

When fluid loads deform a structure and that deformation changes the flow field, standard CFD is not sufficient. Our CFD consulting services for FSI couple high-fidelity simulation with finite element structural analysis to capture aeroelastic flutter, pressure vessel dynamics, and offshore riser behavior. We handle both one-way pressure mapping and fully coupled two-way FSI.

  • One-way FSI: pressure and thermal load mapping to structural solvers
  • Two-way coupled FSI with dynamic mesh (ALE method)
  • Aeroelastic flutter and buffeting analysis
  • Cardiovascular and biomedical flow-structure modeling
  • Flow through deformable porous media
  • Offshore structure and riser vortex-induced vibration (VIV)
Fluid-Structure Interaction (FSI)

CFD-Driven Design Optimization

DOE, adjoint and surrogate workflows

This is the most advanced layer of our CFD analysis services. We integrate parametric CFD studies with design of experiments (DOE) and adjoint-based shape optimization to systematically improve product performance. Engineering teams that work with our CFD consulting team reach the optimal design faster because we pair simulation expertise with engineering judgment to prioritize the variables that deliver the most impact.

  • Parametric CFD sweep studies (geometry and operating conditions)
  • Adjoint-based shape optimization
  • HVAC airflow and energy efficiency optimization
  • Underhood and powertrain thermal management optimization
  • Heat exchanger and cold plate geometry optimization
  • Design of Experiments (DOE) and surrogate model CFD workflows

For structural validation alongside your fluid simulation, explore our Finite Element Analysis Services. We also provide dedicated Thermal Analysis Services for heat-critical engineering systems.

CFD-Driven Design Optimization

Get Started

Need a trusted CFD Analysis Services partner for your next engineering project?

Talk to our senior engineering team about your project scope, timelines, and technical requirements. We respond shortly.

20+ Years
500+ Projects
100+ Engineers
<24h Response

Sarnath R

Director of NPI & CAE

Sarnath is a NPI and CAE professional with 25+ years of experience in providing wide range of solutions to sectors like Automotive, Semiconductor, product development, Fenestration and Heavy engineering. A multifaceted personality who steers operations including Admin, HR, Proposal Engineering, Project management for AES India and USA. He is responsible for delivering projects in Product development and CAE and validating the same. Handled team sizes of 20 members constituting a combination of Design, FEA, CFD and product Engineers/managers. Manages Proposal engineering and overall operations. Coordinates seamlessly with the Client, Team, Vendors and Management to provide quick, organized and quality solutions. Innovative thinker who provides solutions at very critical phases of design to minimize losses that occur after realization of product.

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