CANKIRI KARATEKIN UNIVERSITY Bologna Information System


  • Course Information
  • Course Title Code Semester Laboratory+Practice (Hour) Pool Type ECTS
    Mathematical Modelling in Chemical Engineering KMÜ302 SPRING 3+0 C 5
    Learning Outcomes
    1-To be able to manage total mass and energy equations.
    2-To be able to determine initial and boundary conditions for these equations and solve them with mathematical methods
    3-To be able to make modelling of some of chemical process units in the extent of chemical engineering
    Prerequisites -
    Language of Instruction Turkish
    Responsible Prof. Dr. Ahmet YARTAŞI
    Instructors -
    Assistants -
    Resources R1- Luyben, William L., (1999), Process Modelling, Simulation and Control for Chemical Engineers, Second Edition, McGraw-Hill. R2- Rice, R. G. and Do, D. D., (1995), Applied Mathematics and Modeling for Chemical Engineers, John Wiley & Sons, Inc., Canada. R3- Çalımlı, A., Oğuz, H., Demirel, B., Şimşek, E. H., Alıcı S.,(1996), Kimya Mühendisliği Matematiği, A.Ü.F.F. Döner Sermaye İşletmesi Yayınları, No:37, Ankara. R4- Octave Levenspiel, (1999), Chemical Reaction Engineering, Third Ed. John Wiley & Sons., USA. R5- Güler, Ç.,(1991), Kimyacılar için Matematik, Ege Üniv. İzmir.
    Supplementary Book -
    Goals To be able to express chemical events and processes mathematically. To teach mathematical equations and methods in order to review and analysis chemical processes in the extent of Chemical Engineering.
    Content Introduction to mathematical modeling, Usage of mathematical models, fundamental laws, mass balance, energy equations, transport equations, equilibrium and phase equations, Principles of mathematical modeling and formulation, mass and energy balances, modelling of some chemical process units, Modeling of some chemical process units in chemical engineering, Modelling of an evaporator and a batch reactor, Modelling of a Plug-flow reactor, Modelling of a isothermal continuous stirred tank reactor with fixed and variable volumes, Modelling of a reactor with mass transfer, Microscopic equations, continuity equation, Some examples of the mathematical modeling in chemical engineering, Differential equations used in chemical reaction engineering and their solutions.
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