Course syllabus
010113133-60 วิศวกรรมไฟฟ้าแรงสูง 2 (High Voltage Engineering II)
Course Syllabus
Data entry : Assoc.Prof.Chaiyan Suwancheewasiri
1. Course number and name
010113133-60 วิศวกรรมไฟฟ้าแรงสูง 2 (High Voltage Engineering II)
2. Credits and contact hours
3(3-0-6)
3. Instructor’s or course coordinator’s name
Assoc.Prof.Chaiyan Suwancheewasiri
4. Text book, title, author, and year
- Assoc. Prof. Srawut Kleesuwan ,“High Voltage Engineering II”, KMUTNB, 2013.
5. Specific course information
- brief description of the content of the course (catalog description)
Breakdown of gas, liquid and solid dielectric, High voltage testing techniques; High voltage equipments testing techniques, Insulation coordination, High voltage equipments, Lightning and protection. - prerequisites or co-requisites
010113132-60 High Voltage Engineering I - indicate whether a required, elective, or selected elective (as per Table 5-1) course in the program
Required :
6. Specific goals for the course
- specific outcomes of instruction (e.g. The student will be able to explain the significance of current research about a particular topic.)
- CLO1 Analyze breakdown mechanisms in gases.
- CLO2 Solve engineering problems related to breakdown in liquid, and solid insulation.
- CLO3 Analyze high voltage testing techniques and interpret test results.
- CLO4 Apply engineering analysis to lightning overvoltage, protection and insulation coordination.
- explicitly indicate which of the student outcomes listed in Criterion 3 or any other outcomes are addressed by the course.
ABET Student Outcome (SO) Listed in Criterion 3 Course learning outcome (CLO) SO1 an ability to identify, formulate, and solve complex engineering problems by applying principles of engineering, science, and mathematics. - CLO1 Analyze breakdown mechanisms in gases.
- CLO2 Solve engineering problems related to breakdown in liquid, and solid insulation.
SO2 an ability to apply engineering design to produce solutions that meet specified needs with consideration of public health, safety, and welfare, as well as global, cultural, social, environmental, and economic factors. - CLO3 Analyze high voltage testing techniques and interpret test results.
SO4 an ability to recognize ethical and professional responsibilities in engineering situations and make informed judgments, which must consider the impact of engineering solutions in global, economic, environmental, and societal contexts. - CLO4 Apply engineering analysis to lightning overvoltage, protection and insulation coordination.
7. Brief list of topics to be covered
- Gas Discharge, Definition of Discharge and Breakdown
- Ionization process, Clausius’s law of traveling distance, First Townsend ionization coefficient, Electron avalanche
- Second Townsend ionization, Gas Breakdown Mechanism, Townsend Model
- Paschen’s law, Streamer Model
- Streamer Integral, SF6
- Breakdown in Liquid Dielectric, Conductivity, Permittivity, Dissipation factor
- Dielectric Strength, Polarization Mechanism
- Liquid Breakdown Mechanism, Breakdown in Solid Dielectric
- Electrical Breakdown, Thermal Breakdown, Erosion Breakdown
- High Voltage Testing Techniques, Schering-Bridge
- PD Measurement, Lightning Overvoltage
- Traveling Wave, Bewley’s Method
- Bergeron Method, Lightning Overvoltage Protection
- Rolling Sphere Method, Insulation Coordination
- Overvoltage Protective Devices, Discharger, Surge Arrester, Protection Margin
8. Course Assessment
| Course assessment | Weight score (%) | Assessment tools | Date |
|---|---|---|---|
| Formative | 40 | midterm examination | 25 Aug 2026 |
| Summative | 60 | final examination | 02 Nov 2026 |
The grading table
| Grading | Rank |
|---|---|
| >= 75% | A |
| 67% - 74.99% | B+ |
| 58% - 66.99% | B |
| 51% - 57.99% | C+ |
| 42% - 50.99% | C |
| 34% - 41.99% | D+ |
| 26% - 33.99% | D |
| 0% - 25.99% | F |
หมายเหตุ - ลำดับเนื้อหาจะมีการปรับเปลี่ยนตามความเหมาะสม