Uploaded March 2026 | Updated September 2026, 3 weeks ago
BOSpulse 6.0 introduces native support for Flow-Induced Pulsation (FIP) analysis, giving engineers a powerful tool to simulate vortex shedding at pipe junctions and assess acoustic resonance risk.
In this video, we demonstrate how BOSpulse automatically inserts pressure sources at junctions, calculates excitation frequencies based on mean flow velocity and geometry, and identifies whether those frequencies align with the system's acoustic natural modes.
Key highlights:
✅ Simulate vortex shedding across arbitrary piping configurations
✅ Identify acoustic resonance modes and natural frequencies
✅ Calculate pressure pulsations and shaking forces per scenario
✅ Apply and verify allowable limits directly within the analysis
Walk through a live demo comparing two flow velocity scenarios and see how different resonance modes are excited at 63 Hz, 189 Hz, and 196 Hz.
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#BOSpulse #FlowInducedPulsation #AcousticResonance #VortexShedding #PipeFlow #PulsationAnalysis #PipingEngineering #FIP
BOSpulse 6.0 introduces native support for Flow-Induced Pulsation (FIP) analysis, giving engineers a powerful tool to simulate vortex shedding at pipe junctions and assess acoustic resonance risk.
In this video, we demonstrate how BOSpulse automatically inserts pressure sources at junctions, calculates excitation frequencies based on mean flow velocity and geometry, and identifies whether those frequencies align with the system's acoustic natural modes.
Key highlights:
✅ Simulate vortex shedding across arbitrary piping configurations
✅ Identify acoustic resonance modes and natural frequencies
✅ Calculate pressure pulsations and shaking forces per scenario
✅ Apply and verify allowable limits directly within the analysis
Walk through a live demo comparing two flow velocity scenarios and see how different resonance modes are excited at 63 Hz, 189 Hz, and 196 Hz.
🔔 Subscribe for more BOSpulse tutorials.
#BOSpulse #FlowInducedPulsation #AcousticResonance #VortexShedding #PipeFlow #PulsationAnalysis #PipingEngineering #FIP










