Uploaded April 2025 | Updated September 2026, 3 weeks ago
In our most advanced analysis, we incorporate an approximate of the stiffness of the tubes to simulate a nearly complete fluid-structure interaction (FSI) scenario. Utilizing moving mesh techniques in a 2D framework, this simulation captures the dynamic response of the tubes under realistic operating conditions. The approach enables us to assess the impact of tube flexibility on the interaction between fluid forces and structural integrity, offering deeper insights into potential fatigue mechanisms.
Read full project here: dynaflow.com/consulting/projects/flow-induced-vibration-analysis-in-heat-exchanger-tube-bundles
Check out our services: dynaflow.com/consulting
For more information and projects, follow us on our website and social media channels:
LinkedIn: linkedin.com/company/dynaflow-research-group
LinkedIn Newsletter: linkedin.com/build-relation/newsletter-follow?entityUrn=6975057061512364033
Website: dynaflow.com/consulting/expertise
In our most advanced analysis, we incorporate an approximate of the stiffness of the tubes to simulate a nearly complete fluid-structure interaction (FSI) scenario. Utilizing moving mesh techniques in a 2D framework, this simulation captures the dynamic response of the tubes under realistic operating conditions. The approach enables us to assess the impact of tube flexibility on the interaction between fluid forces and structural integrity, offering deeper insights into potential fatigue mechanisms.
Read full project here: dynaflow.com/consulting/projects/flow-induced-vibration-analysis-in-heat-exchanger-tube-bundles
Check out our services: dynaflow.com/consulting
For more information and projects, follow us on our website and social media channels:
LinkedIn: linkedin.com/company/dynaflow-research-group
LinkedIn Newsletter: linkedin.com/build-relation/newsletter-follow?entityUrn=6975057061512364033
Website: dynaflow.com/consulting/expertise










