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In this tutorial, we perform a *step-by-step ANSYS thermal analysis* to validate a textbook heat transfer problem involving a **cryogenic liquid oxygen storage tank with hemispherical ends**. The primary objective of this study is to determine the rate of heat transfer (heat leak) into the tank and verify the insulation performance required to limit the boil-off of liquid oxygen under steady-state conditions. The model considers a cylindrical tank with hemispherical ends, 70 mm insulation thickness, and realistic temperature boundary conditions. In this video, you will learn: • How to build a 2D cryogenic tank geometry in ANSYS • Material setup and insulation modelling • Boundary condition definition for steady-state heat transfer • Meshing strategy for accurate thermal results • Heat loss and temperature distribution analysis • Validation of simulation results with textbook calculations This tutorial is useful for engineers and students working in: Cryogenic storage, LNG and LPG systems, thermal insulation design, energy systems, and pressure vessel engineering. If you are interested in **CFD, heat transfer, pressure vessels, and multiphase systems**, make sure to subscribe and follow for more advanced tutorials. 🔗 Connect with me on LinkedIn for collaborations and professional discussions. 🔗 Watch more ANSYS tutorials on my channel. 🎵 Music Credit: Song: Reflections Artist: Owl Nest Music by: CreatorMix.com Video: • Lofi Vlog Music No Copyright 2022 | Reflec... #ANSYS #HeatTransfer #Cryogenic #PressureVessel #ThermalAnalysis #Engineering #CFD #Simulation