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Nuclear Reactor Design
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Related lectures (43)
Nuclear Reactor Accidents: TMI2 and Chernobyl
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Explores the TMI2 and Chernobyl nuclear reactor accidents, safety features, and Generation IV reactors.
Introduction to Nuclear Engineering
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Explores nuclear engineering topics such as reactor technology, safety principles, and emergency core cooling systems.
Neutron Physics: Reactor Behavior
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Covers neutron physics in nuclear reactors, including criticality, fission, and neutron distribution.
Introduction to Nuclear Engineering
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Introduces nuclear engineering principles, safety systems, reactor design, and accident management procedures.
Introduction to Nuclear Engineering
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Covers reactor technology, safety functions, accident scenarios, and emergency systems in nuclear engineering.
Introduction to Nuclear Engineering
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Covers the basics of nuclear engineering, reactor technology, safety barriers, reactor types, and thermodynamics of pressurized water reactors.
Nuclear Reactions: Basics and Applications
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Explores nuclear reactions, radioactivity, energy release, and decay heat removal in reactors.
Nuclear Engineering: Fukushima and Beyond
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Covers various topics in nuclear engineering, including Fukushima event analysis, Chernobyl accident, and reactor safety measures.
Nuclear Reactor Physics
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Covers exercises on nuclear reactor physics, including mass calculations, heat evacuation, radioactive equilibrium, and critical parameters.
Dispersion Models: Understanding Axial Dispersion Coefficient
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Explores dispersion models and the axial dispersion coefficient in fluid systems.
Continuous Oscillatory Baffled Reactors: Features and Applications
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Covers the features and applications of Continuous Oscillatory Baffled Reactors (COBR) in enhancing mixing and various chemical processes.
Miniaturization: Impact on Chemical Reactions and Mixing
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Covers miniaturization in chemical engineering, focusing on mixing effects on reactions and process efficiency.
Batch vs Continuous Reactors
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Compares batch and continuous reactors, focusing on advantages, limitations, and high pressure processing for implementing continuous processing.
Nuclear Conversion: Basics and Reactors
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Covers the basics of nuclear physics and the operation of nuclear power plants.
Process Intensification: Mixing and Reactions
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Discusses the influence of mixing on chemical reactions and the importance of segregation intensity for reactor performance.
Spinning Disc Reactors: Performance and Applications
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Covers the specifics, performance, and flow structure of Rotating Disc-Spinning Disc Reactors (RS-SDR), as well as the Continuous Oscillatory Baffled Reactors (COBR) principles and applications.
Nuclear Energy: Basics and Impact
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Covers the basics of nuclear reactions, the history of nuclear energy, and its pros and cons.
Fractional Factorial Designs: Generation and Resolution
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Explores the methodology of fractional factorial designs in experimental setups.
Nuclear Demands: Uranium Reserves, Consumption, and Power Plants
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Explores uranium demands, global energy systems, nuclear power plant distribution, and electricity costs.
Fluid Segregation in Chemical Reactors
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Explores fluid segregation in chemical reactors, discussing its impact on conversion rates and reactor performance.
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