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In just ten key steps, this brief introduction to Simcenter 3D Acoustics shows you how to model acoustic pressure propagation in 3 minutes. Step 1 [0:15]: Switch to the vibro-acoustic environment Step 2 [0:23]: mesh the cavity Step 3 [0:38]: Define the material Step 4 [0:55]: Add mesh to microphone Step 5 [1:31]: Define the solution with SOL108 Step 6 [1:46]: Define the frequencies and create output request Step 7 [2:20]: Add Monopole Step 8 [2:37]: Add second boundary condition Step 9 [2:57]: Solve Step 10 [3:10]: Plot the acoustic pressure propagation #HowToSimcenter3D #simcenter3D #acoustics Links: Case study - Using a multi-tool simulation workflow to support joint development of ICEs and electric powertrains https://sie.ag/5ZFjEs On-demand webinar - Unveiling advanced techniques for vehicle HVAC noise simulation https://sie.ag/6PHpME Blog - Discover the latest acoustics modeling technique: HVAC noise propagation with porous and absorbing materials https://sie.ag/3YLvYr Blog – Why are power transformers so noisy? https://sie.ag/26Ripu About Simcenter: Simcenter software uniquely combines system simulation, 3D CAE and test to help you predict performance across all critical attributes earlier and throughout the entire product lifecycle. By combining physics-based simulations with insights gained from data analytics, Simcenter helps you optimize design and deliver innovations faster and with greater confidence