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🚀 Arch Dam Analysis in ANSYS | Static Structural & Steady-State Thermal Simulation Welcome to Blueprint Bazaar! In this video, we perform a comprehensive arch dam analysis in ANSYS, combining Static Structural and Steady-State Thermal simulations to understand how a large concrete dam behaves under real-world conditions. This tutorial is ideal for engineering students, professionals, and CAD/ANSYS enthusiasts who want to learn practical simulation techniques used in real infrastructure projects. 🔥 What Makes This Video Special: We go beyond basic analysis to show gradient-based loads, temperature effects, and coupled simulations, providing a realistic view of dam performance. 1️⃣ Step-by-Step Dam Modeling -Learn how to create a 3D arch dam geometry in ANSYS. -Set foundation and abutment constraints for accurate load transfer. -Explore how curved geometry efficiently distributes hydrostatic forces. 2️⃣ Hydrostatic Pressure Gradient -Pressure is applied on the water-facing side using a gradient function. -Simulates real reservoir behavior, with pressure increasing from the top to the base. -Helps predict stress concentration and structural response accurately. 3️⃣ Thermal Gradient Analysis -Temperature applied from -1°C at the top to 4°C at the bottom. -Demonstrates how temperature variations affect stress and deformation. -Shows thermal expansion and contraction effects in critical zones. 4️⃣ Coupled Structural-Thermal Analysis -Import thermal results into the static structural module. -Capture combined effects of mechanical and thermal loads. -Identify maximum displacement along the crest and high-stress edges. 5️⃣ Results Interpretation -Examine von-Mises stress, total displacement, and critical structural zones. -Understand how combined loading affects dam safety. -Gain insights into design optimization and long-term performance assessment. 💡 Why Watch This Video: -Learn practical ANSYS techniques used in civil and structural engineering. -Visualize stress, deformation, and thermal effects on a large infrastructure project. -Understand the importance of gradient loads and coupled simulations for realistic results. -Perfect for students, professionals, and simulation enthusiasts. ✅ Key Takeaways: -Accurate dam modeling in ANSYS -Applying gradient-based hydrostatic pressure and temperature loads -Performing coupled static-thermal analysis -Understanding stress distribution and deformation patterns -Learning real-world engineering simulation workflows 📌 Don’t Forget: If you found this video helpful, like, share, and subscribe to Blueprint Bazaar for more engineering tutorials, ANSYS simulations, CAD modeling, and real-world structural analysis. #ANSYS #DamAnalysis #StructuralEngineering #ThermalAnalysis #CivilEngineering #BlueprintBazaar #SimulationTutorial #ArchDamAnalysis #MechanicalEngineering #CAD #FiniteElementAnalysis #HydrostaticPressure #StressAnalysis