Allocation in Hybrid Power Production and Chemical Potentials in Thermodynamics - Lecture 11

Allocation in Hybrid Power Production and Chemical Potentials in Thermodynamics - Lecture 11

MIT OpenCourseWare via YouTube Direct link

- Review: Flame-Based Fuel-to-Power Conversion

4 of 15

4 of 15

- Review: Flame-Based Fuel-to-Power Conversion

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Classroom Contents

Allocation in Hybrid Power Production and Chemical Potentials in Thermodynamics - Lecture 11

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  1. 1 - Introduction
  2. 2 - Review: Exergy in Heating and Cooling Bulk Flows
  3. 3 - Review: Minimum Exergy for Low Temperature Heating
  4. 4 - Review: Flame-Based Fuel-to-Power Conversion
  5. 5 - Review: Inherent Irreversibility of Flames
  6. 6 - Efficient and Inefficient Uses of Fossil Fuels
  7. 7 - Review: Allocation Problem in Cogeneration CHP
  8. 8 - Review: Allocation Problem in Hybrid Facilities
  9. 9 - Introduction to Part II: Chemical Potentials etc
  10. 10 - Stable-Equilibrium Properties of Mixtures
  11. 11 - Small Systems: Specific Properties Depend on “n”
  12. 12 - Large “n” Limit: Simple-System Approximation
  13. 13 - Partial Pressures to Measure Chemical Potentials
  14. 14 - Partial Properties from the Chemical Potentials
  15. 15 - Mixture Properties from the Partial Properties

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