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Focused on heat transfer in stirred tanks, this presentation provides an in-depth review of its characteristics. Richard Cope, Ph.D., leverages his extensive experience in mixing applications and chemical engineering to explain how heat transfer operates within these systems and discusses related challenges. By watching, the presentation will provide valuable knowledge for professionals working with mixing processes in industries like chemicals, pharmaceuticals, and others reliant on stirred tank technologies. It touches on topics including: • The fundamentals and importance of efficient heat transfer in stirred tanks • Practical insights into liquid-liquid dispersion, solid suspension and gas-liquid mixing in the context of heat transfer • Potential methods for scaling processes up or down and the use of computer modeling (e.g., CFD) to optimize system performance QUESTIONS ON THIS TOPIC? Ask Richard your questions on mixing in stirred tanks: https://bit.ly/4fd9gdJ 0:00 Introduction 0:20 SPX FLOW MIXING SOLUTIONS 3:27 Utilizing Heat Transfer in Mixing Vessel Design 5:00 Common Heat Transfer Surfaces in Mixing Vessels 6:06 Available Tank Jacket Types 6:47 Open (Flooded) Jacket Tanks 7:58 Half-Pipe Jacket Tanks 9:59 Dimple Jacket Tanks 10:57 Pillow-Plate, or Laser-Plate Jacket Tanks 13:07 Some General Internal Coil Types 14:45 Geometry for Internal Coils in Mixing Vessels 17:20 Good General Sources for Heat Transfer Correlation 18:11 Collecting Data for Heat Transfer Correlations 29:13 H.T. Coefficient of Process Fluid Inside Tank 32:29 H.T. Coefficient - Process Fluid Side of Harp Coils 34:00 CFD to Assess Internal Coil Location Effects 35:59 CFD Assessment: Viscosity Effects w/ Helical Coils 39:03 Experiments: Plate Coil Orientation vs. Impeller Rotation 40:03 Heat-Up Dependency on Jacket - Impeller Interactions 41:22 Design Considerations: H.T. Observations in Mixing Tanks