燃料电池之理论与实务

Graduate Course Outline and ScheduleDepartment of Aeronautics and AstronauticsNational Cheng Kung Un

GraduateCourseOutlineandSchedule DepartmentofAeronauticsandAstronautics NationalChengKungUniversity Instructor:Chin-HsiangCheng Semester:Spring,Fall □■ Coursename: Coursetype:Lecture48hrs,Practi__6 Credits:3 (Chinese) 燃料電池之理論與實務 hrs (English)TheoryandPracti__ofFuel__ll Graduat:__ster,Ph.D. e■■ Required,Elective □■ CourseNo:P474400 Prerequisites: RelationbetweenProgramOutcomes/Asses__entand CourseO__ectives: AC2004+ofIEET Applicationoffuel__llsrangesfromcomputers, Totallecturehrs:54,Totalpracti__hrs:108 communicationsystems,vehicles,domesticpower generator,tocommunitypowersystems.Fuel__llis Lecture Practi_ IEETAccreditationCriteria2004+ apromisingenergydevi__thatconverts,effectively hrs _hrs andcleanly,chemicalenergyofmildoxidationto 30 60 1.Professionalknowledgeinaspecific electricpower.Ascomparedwiththeexisting field. powergenerators,suchasinternalcombustion enginesorgasturbines,thefuel__llspossess 8 16 2.Abilitytoorganizeandimplementa advantagesoflowemission,highefficiencyand researchproject. simplicity.Therefore,theyareexpectedtotakethe pla__oftheexistingpower__chinesinthenear 4 8 3.Abilitytoconductprofessionaljournal future.Thiscourseisintendedto__keintroduction writing. tothebasicelementsofthefuel__lltechnology. Thecourseemphasizesthefundamentalsof thermodynamicandelectrochemicaltheoriesaswell 8 16 4.Abilityforinnovativethinkingand asthepracti__softhefuel__lltechnology. independentproblemsolving. Meanwhile,currentstatusandfuturetrendofthe applicationsoffuel__llswillbeaddressedto 2 4 5.Abilitytocollaboratewithpeoplein initiatethestudentsintothedevelopmentoffuel aninterdisciplinarysetting. __lltechnology. 6.Soundinternationalscopeofview. CourseOutline: Fundamentalsoffuel__lls;Thermodynamicand electrochemicaltheoriesoffuel__ll;Bipolarplate 7.Abilitytolead,__nage,andplan. designandwaterandther__l__nagement;Fuel__ll perfor__n__test;Systemintegration;Fuel__ll modelingandnumericalsimulation;,Hydrogen production,refor__tion,andstorage;Microfuel__lls. 2 4 8.Abilityforlife-longlearning. Schedule Weeks1–2:Fundamentalsoffuel__lls Weeks3–5:Thermodynamicand electrochemicaltheoriesof fuel__ll Weeks6–7:Bipolarplatedesignandwaterand ther__l__nagement Weeks8–9:Fuel__llperfor__n__test Weeks10–11:Systemintegration Weeks12–13:Fuel__llmodelingandnumerical simulation Weeks14–16:Hydrogenproduction,safety,and storage Weeks17–18:Microfuel__lls __the__ticsand Engineering Designand Innovative General Course BasicScien__ Expertise Practi__ Development Education Component 20% 40% 20% 10% 10% Proportion(%) GradingPolicy TextBook(s)(Authors,Title,PublisherandDate) [1]J.LarminieandA.____s,Fuel__llSystems Explained,2ndEd.,Wiley,2003. 1.Homework:40%

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