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LMS Virtual.Lab Numerical Engine Acoustics   LMS Virtual.Lab Numerical Engine Acoustics   LMS Virtual.Lab Numerical Engine Acoustics
 

LMS Virtual.Lab Numerical Engine Acoustics

LMS Virtual.Lab Numerical Engine Acoustics is an efficient tool for predicting the noise radiated throughout a full engine run-up, and for gaining insight into the causes of noise problems. With this comprehensive solution, engineers can simulate and optimize the engine design for acoustic performance.

LMS Virtual.Lab Numerical Engine Acoustics uses excitation forces obtained from dynamic multi-body analyses using Virtual.Lab Motion, from external calculations or from measurements. With this dynamic load data and the structural modes (calculated by standard FE codes), the surface vibrations are evaluated for multi-regime conditions from which the acoustic radiation is predicted.

With LMS Virtual.Lab Numerical Engine Acoustics, engineers can create acoustic meshes very quickly. The distinctive acoustic meshing is based on wrapping an acoustic mesh around the structural mesh. The BEM (Boundary Element Method) acoustic mesh automatically adapts to the analysis frequency. The result is an accurate acoustic mesh generated in hours instead of weeks.

The solution’s solver uses the unique and efficient ATV (Acoustic Transfer Vector) technology, which performs very fast multiple rpm runs and accelerates a rerun of the calculation when analyzing alternative designs. Based on the surface vibrations, the total radiated noise and the sound pressure levels in predefined locations are predicted, reducing the total engine noise radiation process from months to a day.

Based on the results, the engineer can analyze the total radiated power through ISO 3744 meshes and the acoustic sensitivities with regard to the excitation forces, and use a broad set of clear visualization tools to investigate the obtained sound pressure levels.                        

Features

  • Boundary Element Method
  • Creation of acoustic BEM mesh based on structural mesh
  • ATV-based calculation (Acoustic Transfer Vector)
  • Integrated structural Forced Response Solver
  • Structural excitation from measurement or multi-body simulation - multi-load case (multi rpm) and order analysis
  • Acoustic Pressure / Structural Force sensitivity
  • Plotting and 3D imaging: SPL, ISO 3744 Sound Power, RMS, dB weighting, (1/3) octave

Benefits

  • Predict the radiated noise in time for every design loop
  • Verify noise levels according to specifications, find possible causes of noise and suggest design improvements in the specified timeframe
  • Gain more insight into the acoustics problem, facilitating design improvements

Solution Pack Content

  • Desktop
  • Acoustic Analysis
  • Acoustic Harmonic BEM Solver
  • ATV BEM Solver
  • ATV Based Response
  • Analysis Solvers (incl Hybrid)
  • Mesh Based Design
  • Mesh Coarsening

Solution Pack Options

  • Path and Modal Contribution Analysis
  • Panel Contribution Analysis
  • Modification Prediction
  • High Speed Harmonic BEM Solver
  • Load Identification Analysis
  • Mesh Editing
  • Mesh Morphing
  • CAE Interface (ABAQUS, ANSYS, I-DEAS Universal File, Nastran, PERMAS)
  • Nastran Analysis Driver
  • ANSYS Analysis Driver
  • Motion for Loads Predictions
  • Optimization
 
Download the LMS Virtual.Lab Acoustics Brochure



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