Course syllabus

010723235-65 การออกแบบกระบวนการอัตโนมัติและระบบวัดคุมนิรภัย (Process Automation Design and Safety Instrument System)

Course Syllabus

Data entry : Asst.Prof. Dr.Wongsakorn Wangsaroj
1. Course number and name

010723235-65 การออกแบบกระบวนการอัตโนมัติและระบบวัดคุมนิรภัย (Process Automation Design and Safety Instrument System)

2. Credits and contact hours

3(3-0-6)

3. Instructor’s or course coordinator’s name

Asst.Prof. Dr.Wongsakorn Wangsaroj

4. Text book, title, author, and year

  1. ANSI/ISA-5.1-2009, Instrumentation Symbols and Identification, ISA- International Society of Automation, 2009
  2. ANSI/ISA-S50.1-1982 (R1992) Compatibility of Analog Signals for Electronic Industrial Process Instruments, ISA International Society of Automation, 1992
  3. Industrial Instrumentation Engineering and Design Part 1: Control system and Basic Information, D.K Today, 2006
  4. วิศวกรรรมการวัดคุม, คณะวิศวกรรมศาสตร์, สถาบันเทคโนโลยีพระจอมเกล้าเจ้าคุณทหารลาดกระบัง, 2549
  5. Basic principles of explosion protection, Bartec, Bad Mergentheim, 2020
  6. Explosion Protection: Guidelines and General Principles, Endress+Hauser, 2020
  7. Industrial Flow Measurement Basics and Practice, ABB Measurement & Analytics, 2011
  8. Pressure Measurement Theory and Application Guide, ABB Measurement & Analytics, 2011
  9. Industrial temperature measurement, Basics and practice, ABB Measurement & Analytics, 2017
  10. Instrumentation for engineering measurements, New York : John Wiley, 1984
  11. Alarm Management / The EEMUA Guidelines in Practice, Measurement and Control, Vol. 36/4, pp 114-119, 2003
  12. Safety instrumented systems: design, analysis, and justification, ISA - The Instrumentation, Systems, and Automation Society, 2006

5. Specific course information

  1. brief description of the content of the course (catalog description)
    Piping and instrumentation diagram, signal flow diagram of instrumentation and control system; basic industrial process automation; hazardous area classification and explosion protection standard; 4-20 mA instrumentation system design; fieldbus instrumentation system design; process instrument specification and selection; control system specification and selection; alarm in process automation; case study of process automation design and safety instrument system.
  2. prerequisites or co-requisites
    010723234-65 Instrumentation and Process Control
  3. indicate whether a required, elective, or selected elective (as per Table 5-1) course in the program
    Required :

6. Specific goals for the course

  1. specific outcomes of instruction (e.g. The student will be able to explain the significance of current research about a particular topic.)
    1. CLO1 Ability to create piping and instrumentation diagrams, signal flow diagrams of instrumentation and control system and related documents
    2. CLO2 Ability to the basic design of 4-20mA Instrumentation and Fieldbus in process automation
    3. CLO3 Understand HAZOP, hazardous area classification, and explosion protection standard, then is able to apply in practical usage
    4. CLO4 Ability to select and define the specification of Instrumentation properly to be compatible with process automation conceptual
    5. CLO5 Understand and have the ability in the safety instrumentation system design
  2. 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.
    • CLO2 Ability to the basic design of 4-20mA Instrumentation and Fieldbus in process automation
    • CLO5 Understand and have the ability in the safety instrumentation system design
    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.
    • CLO1 Ability to create piping and instrumentation diagrams, signal flow diagrams of instrumentation and control system and related documents
    • CLO2 Ability to the basic design of 4-20mA Instrumentation and Fieldbus in process automation
    • CLO3 Understand HAZOP, hazardous area classification, and explosion protection standard, then is able to apply in practical usage
    • CLO4 Ability to select and define the specification of Instrumentation properly to be compatible with process automation conceptual
    • CLO5 Understand and have the ability in the safety instrumentation system design
    SO3 an ability to communicate effectively with a range of audiences.
    • CLO4 Ability to select and define the specification of Instrumentation properly to be compatible with process automation conceptual
    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.
    • CLO5 Understand and have the ability in the safety instrumentation system design
    SO7 an ability to acquire and apply new knowledge as needed, using appropriate learning strategies.
    • CLO3 Understand HAZOP, hazardous area classification, and explosion protection standard, then is able to apply in practical usage

7. Brief list of topics to be covered
  • Introduction
  • Piping and Instrument Diagram (P&ID) and Related Documents
  • Hazard and Operability Analysis (HAZOP)
  • Basic industrial process automation
  • 4-20 mA Instrumentation and Fieldbus basic design
  • Hazardous area classification and explosion protection
  • Flow transmitter selection and specification
  • Pressure transmitter selection and specification
  • Temperature sensor & transmitter selection and specification
  • Introduction of safety instrumentation system
  • Determining Safety Integrity Level (SIL)
  • Safety instrumentation system technology
  • Basic design of safety instrumentation system
8. Course Assessment
Course assessment Weight score (%) Assessment tools Date
Formative1 20 assignment
Summative1 40 midterm examination
Summative2 40 final examination
The grading table
Grading Rank
>= 80% A
75% - 79.99% B+
70% - 74.99% B
60% - 69.99% C+
50% - 59.99% C
45% - 49.99% D+
40% - 44.99% D
0% - 39.99% F

หมายเหตุ - ลำดับเนื้อหาจะมีการปรับเปลี่ยนตามความเหมาะสม