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How to Read a P&ID
For
Risk
Analysis
P&ID is a Piping and
Instrumentation Diagram
To identify risk from a set of
P&ID you must have clear
understanding of three
things…
#1

Understand the
process
#2
Understand the
failures
#3

Understand the
consequence
Lines are used for showing
piping, equipment and
instrumentation
connections…
…so people can
communicate the process
sequence and the
relationship of different
equipment
Equipment and
instrumentation are
connected by lines
Here are some common
connections
Pipe




       Common Failure Modes:
       - Collapse
       - Burst/Rupture
       - Erosion
       - Corrosion
Electrical Signal




           Common Failure Modes:
           - Open connection
           - Electrical shorting
           - Electromagnetic interference
Pneumatic Signal




           Common Failure Modes:
           - Leakage of internal fluid
           - High components friction level
           - Loss of pressure
Data Signal




              Common Failure Modes:
              - Radio interference
              - Signal filtering
              - Packets Loss
              - Loss of signal
Flexible Pipe




           Common Failure Modes:
           - Compressive failure
           - Tensile failure
           - Over bending
           - Rupture
Symbols are used to
simplify drawings



              >>>
              >>>
              >>>




  From this         To this
Some equipment are
used to add or reduce
energy in the material
Blower




         Common Failure Modes:
         - Fail to operate on demand
         - Loss of pressure
Furnace




          Common Failure Modes:
          - Flame out
Pump




       Common Failure Modes:
       - Fail to operate on demand
       - Loss of pressure
       - Over pressure
Compressor




         Common Failure Modes:
         - Fail to start
         - Damage due to liquid
         - Over pressure
         - Excessive vibration
Heat exchanger




           Common Failure Modes:
           - Leakage
           - Corrosion
           - Plugged
Plate Heat Exchanger




           Common Failure Modes:
           - Leakage
           - Corrosion
           - Plugged
Aerial Fan




             Common Failure Modes:
             - Loss of air circulation
Some equipment are
used for material
storage
Floating Storage Tank




           Common Failure Modes:
           - Overflow
           - Leakage
Sphere Tank




          Common Failure Modes:
          - Overpressure
Pressurized Vessel




           Common Failure Modes:
           - Overpressure
Some equipment are
used to separate
material
Horizontal Separator




          Common Failure Modes:
          - Overpressure
Vertical Separator




          Common Failure Modes:
          - Overpressure
Fluid Contacting Column




            Common Failure Modes:
            - Overpressure
            - Corrosion
            - Plugged
Tray Column




          Common Failure Modes:
          - Overpressure
          - Contamination
Valves are used to
control the flow of
material
Manual Valve




          Common Failure Modes:
          - External leakage
          - Internal leakage
          - Inadvertent position
Control Valve




          Common Failure Modes:
          - Fail to close on demand
          - Fail to open on demand
          - Spurious operation
          - Leakage
Solenoid
Valve
   S



           Common Failure Modes:
           - Structural failure
           - Seat Leakage
           - Seal Leakage
           - Loss of actuator
Motor-operated
Valve

  M



          Common Failure Modes:
          - Motor failure
          - Fail to stroke
Butterfly Valve




            Common Failure Modes:
            - Fail to close on demand
            - Fail to open on demand
            - Spurious operation
Globe Valve




          Common Failure Modes:
          - Fail to close on demand
          - Fail to open on demand
          - Spurious operation
          - Leakage
Needle Valve




           Common Failure Modes:
           - Fail to close on demand
           - Fail to open on demand
           - Spurious operation
           - Leakage
Ball Valve




             Common Failure Modes:
             - Fail to close on demand
             - Fail to open on demand
             - Spurious operation
             - Leakage
Check valve




              Common Failure Modes:
              - Leakage
              - Stuck at open position
Some equipment are
used to relief pressure
in the process
Relief Valve




           Common Failure Modes:
           - Fail to open
Curved Gas Vent




           Common Failure Modes:
           - Plugged
Rupture Disk




           Common Failure Modes:
           - Corrosion
Control system are used
to manage the behaviour
of the process
Programmable Logic
Control




          Common Failure Modes:
          - Software error
          - Execution error
Shared display, shared
Control




            Common Failure Modes:
            - Software error
            - Execution error
Sensors are used to
measure the physical
properties of the process
and convert it into a signal
Flow Transmitter


  FT


          Common Failure Modes:
          - Spurious measurement
          - Loss of measurement
Pressure Transmitter


  PT


          Common Failure Modes:
          - Spurious measurement
          - Loss of measurement
Level Transmitter


  LT


           Common Failure Modes:
           - Spurious measurement
           - Loss of measurement
Now lets identify the risk
of this process…
D-101 Re-boiler Condensate Pot

                                                         PSV      Size ½
                                                         111      SET @ 700kPag
                                                                            To atmosphere at safe
                                                                            location
Steam
 Drawing Ref.                   D-101
                                                       LT
          3/4”          2”                             253
                                                  3”


                             HLL=2550 mm
                  LG
                  253
                             NLL=1650 mm
                             LLL=250 mm                               LC
                        2”
                                                  3”                 253


           3/4”
                                                                                        6”
                                                                      LY           LV
                                                                     253          253


                                                                                               Condensate
                                             6”              6”                   6”
                                                                                                    Drawing Ref.




                                                                     6”
Step 1: Understand the process
•   There is low pressure steam
    flowing into the vessel
•   The steam cools and forms
    condensate in the condensate pot
•   The level of the condensate liquid is
    controlled by a level control loop
•   Condensate is drained out the
    bottom of the vessel
Start                      D-101 Re-boiler Condensate Pot

                                                         PSV      Size ½
                                                         111      SET @ 700kPag
                                                                            To atmosphere at safe
                                                                            location
Steam
 Drawing Ref.                   D-101
                                                       LT
          3/4”          2”                             253
                                                  3”


                             HLL=2550 mm
                  LG
                  253
                             NLL=1650 mm
                             LLL=250 mm                               LC
                        2”
                                                  3”                 253


           3/4”
                                                                                        6”
                                                                      LY           LV
                                                                     253          253


                                                                                               Condensate
                                             6”              6”                   6”
                                                                                                    Drawing Ref.




                                                                     6”
Step 2: Identify possible
failures

The control loop can
malfunction causing the
valve LV253 to fail in the
closed position
D-101 Re-boiler Condensate Pot

                                                         PSV      Size ½
                                                         111      SET @ 700kPag
                                                                            To atmosphere at safe
                                                                            location
Steam
 Drawing Ref.                   D-101
                                                       LT
          3/4”          2”                             253
                                                  3”


                             HLL=2550 mm
                  PG
                  253
                             NLL=1650 mm
                             LLL=250 mm                               LC
                        2”
                                                  3”                 253


           3/4”
                                                                                        6”
                                                                      LY           LV
                                                                     253          253


                                                                                               Condensate
                                             6”              6”                   6”
                                                                                                    Drawing Ref.




                                                                     6”
Step 3: Assess the consequence

•   The level control valve fails in the
    closed position blocking the drain
    line
•   Hazard is high level and high
    pressure in the tank
•   Potential consequence of loss of
    containment and equipment damage
    with $$$$ losses
Now you have identified
the cause of the
overpressure hazard, can
you identify the
safeguard?
The pressure relief with
a set point of 700 kPa
will open and reduce but
not eliminate the risk of
rupture
D-101 Re-boiler Condensate Pot

                                                         PSV      Size ½
                                                         111      SET @ 700kPag
                                                                            To atmosphere at safe
                                                                            location
Steam
 Drawing Ref.                   D-101
                                                       LT
          3/4”          2”                             253
                                                  3”


                             HLL=2550 mm
                  LG
                  253
                             NLL=1650 mm
                             LLL=250 mm                               LC
                        2”
                                                  3”                 253


           3/4”
                                                                                        6”
                                                                      LY           LV
                                                                     253          253


                                                                                               Condensate
                                             6”              6”                   6”
                                                                                                    Drawing Ref.




                                                                     6”
By understanding the P&ID
you can clearly assess
risk in your operation and
make good decisions
Any Questions?
Risk. Inspired.




For more lessons go to
www.icarus-orm.com

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How to read a P&ID for Risk Analysis

  • 1. How to Read a P&ID For Risk Analysis
  • 2. P&ID is a Piping and Instrumentation Diagram
  • 3. To identify risk from a set of P&ID you must have clear understanding of three things…
  • 7. Lines are used for showing piping, equipment and instrumentation connections…
  • 8. …so people can communicate the process sequence and the relationship of different equipment
  • 9. Equipment and instrumentation are connected by lines Here are some common connections
  • 10. Pipe Common Failure Modes: - Collapse - Burst/Rupture - Erosion - Corrosion
  • 11. Electrical Signal Common Failure Modes: - Open connection - Electrical shorting - Electromagnetic interference
  • 12. Pneumatic Signal Common Failure Modes: - Leakage of internal fluid - High components friction level - Loss of pressure
  • 13. Data Signal Common Failure Modes: - Radio interference - Signal filtering - Packets Loss - Loss of signal
  • 14. Flexible Pipe Common Failure Modes: - Compressive failure - Tensile failure - Over bending - Rupture
  • 15. Symbols are used to simplify drawings >>> >>> >>> From this To this
  • 16. Some equipment are used to add or reduce energy in the material
  • 17. Blower Common Failure Modes: - Fail to operate on demand - Loss of pressure
  • 18. Furnace Common Failure Modes: - Flame out
  • 19. Pump Common Failure Modes: - Fail to operate on demand - Loss of pressure - Over pressure
  • 20. Compressor Common Failure Modes: - Fail to start - Damage due to liquid - Over pressure - Excessive vibration
  • 21. Heat exchanger Common Failure Modes: - Leakage - Corrosion - Plugged
  • 22. Plate Heat Exchanger Common Failure Modes: - Leakage - Corrosion - Plugged
  • 23. Aerial Fan Common Failure Modes: - Loss of air circulation
  • 24. Some equipment are used for material storage
  • 25. Floating Storage Tank Common Failure Modes: - Overflow - Leakage
  • 26. Sphere Tank Common Failure Modes: - Overpressure
  • 27. Pressurized Vessel Common Failure Modes: - Overpressure
  • 28. Some equipment are used to separate material
  • 29. Horizontal Separator Common Failure Modes: - Overpressure
  • 30. Vertical Separator Common Failure Modes: - Overpressure
  • 31. Fluid Contacting Column Common Failure Modes: - Overpressure - Corrosion - Plugged
  • 32. Tray Column Common Failure Modes: - Overpressure - Contamination
  • 33. Valves are used to control the flow of material
  • 34. Manual Valve Common Failure Modes: - External leakage - Internal leakage - Inadvertent position
  • 35. Control Valve Common Failure Modes: - Fail to close on demand - Fail to open on demand - Spurious operation - Leakage
  • 36. Solenoid Valve S Common Failure Modes: - Structural failure - Seat Leakage - Seal Leakage - Loss of actuator
  • 37. Motor-operated Valve M Common Failure Modes: - Motor failure - Fail to stroke
  • 38. Butterfly Valve Common Failure Modes: - Fail to close on demand - Fail to open on demand - Spurious operation
  • 39. Globe Valve Common Failure Modes: - Fail to close on demand - Fail to open on demand - Spurious operation - Leakage
  • 40. Needle Valve Common Failure Modes: - Fail to close on demand - Fail to open on demand - Spurious operation - Leakage
  • 41. Ball Valve Common Failure Modes: - Fail to close on demand - Fail to open on demand - Spurious operation - Leakage
  • 42. Check valve Common Failure Modes: - Leakage - Stuck at open position
  • 43. Some equipment are used to relief pressure in the process
  • 44. Relief Valve Common Failure Modes: - Fail to open
  • 45. Curved Gas Vent Common Failure Modes: - Plugged
  • 46. Rupture Disk Common Failure Modes: - Corrosion
  • 47. Control system are used to manage the behaviour of the process
  • 48. Programmable Logic Control Common Failure Modes: - Software error - Execution error
  • 49. Shared display, shared Control Common Failure Modes: - Software error - Execution error
  • 50. Sensors are used to measure the physical properties of the process and convert it into a signal
  • 51. Flow Transmitter FT Common Failure Modes: - Spurious measurement - Loss of measurement
  • 52. Pressure Transmitter PT Common Failure Modes: - Spurious measurement - Loss of measurement
  • 53. Level Transmitter LT Common Failure Modes: - Spurious measurement - Loss of measurement
  • 54. Now lets identify the risk of this process…
  • 55. D-101 Re-boiler Condensate Pot PSV Size ½ 111 SET @ 700kPag To atmosphere at safe location Steam Drawing Ref. D-101 LT 3/4” 2” 253 3” HLL=2550 mm LG 253 NLL=1650 mm LLL=250 mm LC 2” 3” 253 3/4” 6” LY LV 253 253 Condensate 6” 6” 6” Drawing Ref. 6”
  • 56. Step 1: Understand the process • There is low pressure steam flowing into the vessel • The steam cools and forms condensate in the condensate pot • The level of the condensate liquid is controlled by a level control loop • Condensate is drained out the bottom of the vessel
  • 57. Start D-101 Re-boiler Condensate Pot PSV Size ½ 111 SET @ 700kPag To atmosphere at safe location Steam Drawing Ref. D-101 LT 3/4” 2” 253 3” HLL=2550 mm LG 253 NLL=1650 mm LLL=250 mm LC 2” 3” 253 3/4” 6” LY LV 253 253 Condensate 6” 6” 6” Drawing Ref. 6”
  • 58. Step 2: Identify possible failures The control loop can malfunction causing the valve LV253 to fail in the closed position
  • 59. D-101 Re-boiler Condensate Pot PSV Size ½ 111 SET @ 700kPag To atmosphere at safe location Steam Drawing Ref. D-101 LT 3/4” 2” 253 3” HLL=2550 mm PG 253 NLL=1650 mm LLL=250 mm LC 2” 3” 253 3/4” 6” LY LV 253 253 Condensate 6” 6” 6” Drawing Ref. 6”
  • 60. Step 3: Assess the consequence • The level control valve fails in the closed position blocking the drain line • Hazard is high level and high pressure in the tank • Potential consequence of loss of containment and equipment damage with $$$$ losses
  • 61. Now you have identified the cause of the overpressure hazard, can you identify the safeguard?
  • 62. The pressure relief with a set point of 700 kPa will open and reduce but not eliminate the risk of rupture
  • 63. D-101 Re-boiler Condensate Pot PSV Size ½ 111 SET @ 700kPag To atmosphere at safe location Steam Drawing Ref. D-101 LT 3/4” 2” 253 3” HLL=2550 mm LG 253 NLL=1650 mm LLL=250 mm LC 2” 3” 253 3/4” 6” LY LV 253 253 Condensate 6” 6” 6” Drawing Ref. 6”
  • 64. By understanding the P&ID you can clearly assess risk in your operation and make good decisions
  • 66. Risk. Inspired. For more lessons go to www.icarus-orm.com