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Project tasks: Simulation and Fluid Selection
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Thermodynamic Cycles: Efficiency and Optimization
Explores thermodynamic cycles, focusing on Rankine cycle efficiency and optimization strategies for mechanical power production.
Thermodynamics: Basics and Power Cycles
Explores thermodynamic basics, power cycles, and renewable energy applications.
Thermodynamics Basics
Introduces the fundamental concepts of thermodynamics, including energy conservation, system definitions, and different forms of work.
Entropy and the Second Law of Thermodynamics
Covers entropy, its definition, and its implications in thermodynamics.
Heat Pumps & Power Cycles
Discusses technical challenges in implementing the Carnot cycle, energy and exergy balances, and the advantages of exergy analysis.
Molecular Dynamics Simulations: Basics and Algorithms
Covers the basics of molecular dynamics simulations, ensemble properties, classical mechanics formulations, numerical integration, energy conservation, and constraint algorithms.
Thermodynamic Functions and Equilibria: Mathematical Tools
Discusses thermodynamic functions, their mathematical tools, and key relationships between state variables in thermodynamics.
Exergy Analysis: Concepts and Applications
Addresses common questions about exergy and its applications in thermodynamics, including calculations and pinch analysis for complex systems.
Thermodynamic Cycles: Carnot Cycle and Heat Pumps
Explores the Carnot cycle, heat pumps, and efficiency in thermodynamic processes.