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Related lectures (31)
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Heat Recovery Optimization
Explores delta T minimum optimization for efficient heat recovery and cost reduction in industrial processes.
Heat Exchangers: Energy Systems Engineering
Covers the role of energy in process unit operations and heat transfer requirements.
Heat Recovery Principles
Explores heat recovery principles, energy balance, and identifying penalizing heat exchangers for optimizing energy efficiency and cost savings.
Heat Exchanger Network Design
Explores the design of heat exchanger networks, emphasizing investment-energy savings trade-offs and the impact of the pinch point.
Heat Transfer Interfaces: Pinch Point Analysis
Analyzes heat transfer interfaces, pinch points, energy optimization, pressure changes, heat cascades, and heat pump efficiency.
Heat Exchangers: Fundamentals and Applications
Explores the fundamentals of heat exchangers, including conduction, convection, and temperature profiles, with practical examples.
Heat Transfer in Microreactors
Explores heat transfer in microreactors, covering homogeneous and segmented flows, thermal sensitivity, and hot spot reduction.
Heat Recovery Principles: Maximizing Efficiency
Explores maximizing heat recovery potential in industrial processes through the plus and minus principle.
Maximum Heat Recovery: Calculating Real Value
Focuses on calculating the real value for maximum heat recovery and optimizing delta T minimum for economic feasibility.
Energy Conversion Systems: Efficiency and Design
Explores energy efficiency, exergy analysis, utility integration, combustion, boiler efficiency, cogeneration, gas turbines, heat pump, refrigeration, and system design.