- Aerospace Engineering: AeroAcoustics and VibroAcoustics
- Automotive Industry: AeroAcoustics and VibroAcoustics design
- Hybrid & Electric Vehicles: NVH & Acoustics
- Shipbuilding Acoustics and VibroAcoustics Engineering
- Audio & Consumer Electronic Devices Design
- NVH ( Noise, Vibration, and Harshness ) simulation services
Automotive Industry: AeroAcoustics and VibroAcoustics optimization
FEA & CFD Based Simulation Design Analysis Virtual prototyping MultiObjective Optimization
Whether noise comes from an air conditioning system, a rotating fan, or any other device that creates noise through turbulent flows, the sound generation and propagation mechanisms must be addressed to satisfy the ever-increasing customer quality expectations. Even low noise levels can significantly degrade the comfort for the user. AeroAcoustics help us to predict and understand how to design quiet workplaces, quiet car and aircraft interiors, or silent electronic devices. In the next level, in order to study the interaction of structural vibration with the adjacent fluid, it is necessary to model the acoustic behavior of the involved structural components and VibroAcoustics aspects.

Noise quality is a crucial issue for automotive and heavy machinery manufacturers. From car, trucks or buses OEM to tier-one suppliers, from tyre manufacturers to suppliers of trim components, from exhaust and intake manufacturers to specialized consultants our engineers offers the best available tools and unmatched consulting experience in:
Vibro-acoustic of full vehicles;
Sound package (trim) design;
Sound radiation by powetrain and driveline;
Intake and exhaust noise prediction;
Wind noise assessment;
Tyre noise analysis;
HVAC noise prediction;
Sound propagation in high pressure distribution ducts

Enteknograte offers a Virtual Engineering approach with CFD and FEA tools such as Ansys Fluent, StarCCM+ for flows simulation and FEA based Codes such as ABAQUS, Ansys, Nastran and LS-Dyna, encompassing the accurate prediction of in-service loads, the performance evaluation, and the integrity assessment including the influence of manufacturing the components. Dependent of problem, we use ESI VA-one and MSC Actran as acoustics solver
Simulation-Based Design for better understand and improve the acoustics performance of your designs:
- Sound radiation by vibrating structures: powertrain, engine components (intake manifold and air filter, valve cover, etc.), compressors, electrical motors, loudspeakers.
- Intake and exhaust noise, including complex mufflers and silencers.
- Air conditioning units and distribution systems.
- Sound absorption inside passenger compartment of cars and trains.
- Sound propagation in complex media with mean flow or temperature gradient.
- Audio devices such as telephones, hearing aids or musical instruments.
VibroAcoustics
In order to study the interaction of structural vibration with the fluid, it is necessary to model the acoustic behavior of the involved structural components including the conventional material for acoustic or visco-elastic media, porous or incompressible media, composite materials or active components like piezo-electric ceramics.
Applications:
- Automotive: Noise related problems from powertrains, intakes, exhausts, passenger compartment, trim, seats, hoses, tires, windows and windshields, audio, HVAC.
- Aerospace: Sound transmission through cockpit and fuselage, noise propagation in air distribution system, random dynamic response at take-off.
- Consumer goods: Telephones, headsets, loudspeakers, hearing aid devices, disk drives, washing machines, refrigerators, cameras

Boundary Element Acoustics
Often used for exterior acoustics problems, the boundary element method (BEM) is ideal for problems involving very complex geometry that may be a challenge to model for the FEM method. The BEM method helps simplify exterior acoustics simulation since only the outer surface mesh of the geometry is needed. This simplifies both the modeling process and reduces the degrees of freedom in the simulation model which will result in easier analysis.
Finite Element Acoustics
The finite element method (FEM) for acoustics analysis is ideal for simulating interior acoustics problems. In addition to FEM being the more efficient method in terms of solution speed, FEM acoustics lets you perform coupled vibro-acoustics analyses that take structural modes and soundproofing materials into consideration. FEM acoustics can be used to solve exterior acoustics problems as well, which is often used for noise analysis of air induction systems in powertrain.
NVH based Design and Considerations
The challenge for the NVH specialists is to support the concept and design development process by reliable recommendations just-in-time prior concept or design freeze. Enteknograte’s specialists particularly use advanced methodologies for NVH simulation and optimization:
- FEA based Powertrain
- Structural Optimization
- Optimization of Engine Dynamics based on MBD ( Multi-Body Dynamics Simulation)
- Concurrent optimization of combustion efficiency with NVH considerations
- Vehicle Interior Noise Simulation based on measurement and CAE
- Vehicle Exterior Noise Simulation with couple use of CFD and FEA solvers
- Objective Analysis of Sound Quality
- VTOL, e-VTOL and UAM – Urban Air Mobility systems noise and comfort
Aerospace Engineering: AeroAcoustics and VibroAcoustics Simulation
AeroAcoustics and VibroAcoustics in Automotive Industry
NVH & Acoustics for Hybrid & Electric Vehicles
Structural Dynamics Integrity & Vibro-Acoustics Simulation for Marine & Shipbuilding Industry
Audio Device Design: Acoustic simulation for Sound Quality Analysis in Consumer Electronic Devices
NVH ( Noise, Vibration, and Harshness ) simulation services
Finite Element Analysis of Durability and Fatigue Life
Vibration Fatigue Finite Element Simulation: Time & Frequency Domain
Hydrodynamics & HydroAcoustics simulation for AIV (Acoustic Induced Vibration)
Cavitation in Propulsion Systems
Multibody Dynamics & NVH (Noise, vibration, and harshness)
Noise, Vibration & Harshness – NVH for Electric Motors


Enteknograte offers a Virtual Engineering approach with CFD and FEA tools such as MSC Cradle, Ansys Fluent, StarCCM+ for flows simulation and FEA based Codes such as ABAQUS, Ansys, Nastran and LS-Dyna, encompassing the accurate prediction of in-service loads, the performance evaluation, and the integrity assessment including the influence of manufacturing the components. Dependent of problem, we use ESI VA-one and MSC Actran as acoustics solver
Hydrodynamics CFD simulation, Coupled with FEA for FSI Analysis of Marine and offshore structures
Integrated Artificial Intelligence (AI) & Machine Learning - Deep Learning with CFD & FEA Simulation
Seat Design: Finite Element and CFD Simulation for Static & Dynamic Comfort, Whiplash, Acoustic & Thermal Comfort, Crash Test
1D/3D Coupled Simulation and Co-Simulation: Detailed Chemistry & Multiphase Flow Modeling with 1D Modeling
Aerodynamics Simulation: Coupling CFD with MBD, FEA and 1D-System Simulation
eVTOL (Electric Vertical Take-Off and Landing) & UAM (Urban Air Mobility)
Full Vehicle MultiBody Dynamics Simulation: Car Ride, Driveline, Engine and Tire MBD
Robots Dynamics & Performance Assessment: Coupled MBD & FEA Simulation-Based Design
Heat Transfer and Thermal Analysis: Fluid-Structure Interaction with Coupled CFD and Finite Element Based Simulation
Aerodynamic Noise Simulation
Acoustics and Vibration: FEA and CFD for AeroAcoustics, VibroAcoustics and NVH Analysis
Electromagnetic Multiphysics
