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LMS Virtual.Lab Acoustics   LMS Virtual.Lab Acoustics   LMS Virtual.Lab Acoustics
 

LMS Virtual.Lab Acoustics

Make Sound Engineering Decisions Faster -

Do your customers expect ever-quieter products? Are your competitors using sound quality as a differentiating advantage? Will ever-tighter noise emission legislation have an impact on your product sales? Only a couple of years ago, predicting the sound fields of even the simplest product used to take weeks, while something like an engine run-up took months. Even for an expert, parametric analysis and design refinement was simply not feasible given the cost and time constraints - the only option was to apply expensive treatments late in the development when all design flexibility had been lost.

From challenges…

Imagine that you are able to perform acoustic meshing in a couple of hours, predict an engine run-up within a day and remodel design changes within minutes. With the breakthroughs embedded in our acoustic solutions, it is all possible. Imagine making well-informed decisions at the concept stage, and systematically improving, refining, and optimizing your product’s acoustic performance from the initial design to completion in a coherent way.

…to real opportunities

From its pioneering acoustic FEM and BEM technologies over a decade ago, LMS SYSNOISE has been validated by thousands of users, spread over a wide range of industries. Recent technology breakthroughs made the acoustic simulation faster than ever before – in many cases over a 100 times! The LMS acoustic solutions cover routine applications, such as structural noise radiation and cavity field simulations, and address specific acoustic engineering issues, such as engine run-ups, flow-induced noise or random acoustic loading. By integrating the SYSNOISE technologies into LMS Virtual.Lab, LMS created the world’s first end-to-end environment for acoustic performance engineering, from concept development, through design refinement using virtual models, to test-based validation.

  • Gain full insight into acoustic problems
  • Accurately and quickly predict the effect of design changes
  • Minimize the cost and weight of sound treatment
  • Reduce noise levels and build-in desirable sound before prototype testing
 
Process Overview
Industry Applications



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