Course Details:

Fundamentals and CFD of Aeroacoustics – Live Workshop
Master the fundamentals and computational methods of Aeroacoustics in this 6-day live online workshop, designed for students, researchers, and industry professionals.

Course Overview:
This workshop blends theoretical understanding with hands-on practical sessions to cover the Fundamentals of Aeroacoustics and its CFD-based modeling techniques. Learn directly from the authors of the book “Computational Aerodynamics and Aeroacoustics” and gain insights from industry experts in CFD applications.

Course Fee:

Fee: $150 (₹ 14400 incl. Tax)

Key features

Missed the live workshop? You can still enroll now to watch the full recordings, learn from the experts, and receive your certificate of completion.

Instructors:

  • Prof. Tapan Sengupta
    Retired Professor, IIT Kanpur
    PhD: Georgia Institute of Technology, USA

  • Prof. Yogesh Bhumkar
    Professor, IIT Bhubaneswar
    PhD: IIT Kanpur

  • Dr. Sidharth Sharma
    Engineering Lead, Anzen, UK
    PhD: University of Huddersfield, UK; PostDoc: University of Nottingham, UK

  • Dr. Sandeep Mouvanal
    Founder & CEO, Flowthermolab
    MS, PhD, IIT Madras, Postdoc from University of Nottingham, UK
     
Course content in detail

Fundamentals of Aeroacoustics

  • Fundamentals of sound waves and their propagation
  • Importance of high-accuracy DRP schemes in CAA and spectral analysis of numerical methods
  • Error dynamics and characteristics of signal propagation
  • Simulation of sound propagation problems using high-accuracy schemes
  • DNS studies of laminar flow problems in computational aeroacoustics
  • Dispersive and dissipative characteristics of sound propagation in air
  • Advanced topics and numerical analyses in CAA simulations

CFD of Aeroacoustics

  • Modelling of Aeroacoustics using ANSYS Fluent
  • System-level thinking for acoustic problems
  • Understanding CAA and FW-H Model
  • Modelling and solution decisions critical to flow-acoustics: Various scales of flow/noise propagation, boundary conditions (NRBCs, sponge layers…), CFL number, time-step size, mesh size, choice of turbulence formulation, FW-H surface, LEE domain, pressure probes etc.
  • Post-processing of pressure data, FFT, chirp etc

CFD Tutorials and Case Studies

  • Internal flow examples: ducts and turbomachinery
  • External flow: Flow past an array of cylinders and drone noise
  • Post-processing signals and validation
  • Do I get a certificate?
    Yes, once you attend the sessions and complete the assessment
  • What if I don’t understand some portion or need to clarify some doubts?
    You can ask all your questions directly to the instructors during the workshop or later through forum discussions 
  • Should I know programming to learn this course? 
    No
  • Is there any prerequisite? 
    The knowledge of basic fluid dynamics and Ansys Fluent will be useful. 
  • Bachelor students (Mechanical, Aerospace, Chemical, Civil Engineering)
  • Researchers, master’s students, PhD students
  • Practicing CFD Engineers who want to specialize in Aero-acoustics
  • Total access to recordings of live sessions: 1 year
  • Computer requirement: Minimum 4 GB RAM and i3 processor 
  • Software: ANSYS Fluent. You can download and install the free student version of ANSYS Fluent on your laptop, or provided by ANSYS for educational purposes.
Not Enrolled

Course Includes

  • 8 Lessons

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