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valve symbols p&id

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valve symbols on p&id

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Piping and instrumentation diagrams (P&IDs) are conceptualized during the development and design stages of chemical, physical, electrical and mechanical processes. 

What is a Piping & Instrumentation Diagram (P&ID)?

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A P&ID is a detailed, visual representation of a process system. P&IDs include standard symbols that explain:

  • Component identification
  • How instruments are connected
  • Where instruments are located
  • The instruments’ function within a process

The symbols for these components aren’t drawn to scale and aren’t intended to be dimensionally accurate. Symbols can also be marked with words, letters and numbers for more detail.

Below is an example of a P&ID for a heat exchange process:


How Are P&IDs Used?

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The purpose of a P&ID is to illustrate a system’s process. P&IDs are used for the design and maintenance of the manufacturing processes they represent, and are imperative for troubleshooting and process monitoring.

Since they aren’t drawn to scale, P&IDs should not be used as a map or floor plan of the system.

P&IDs vs. PFDs

P&IDs are often confused with process flow diagrams (PFD). However, a PFD is more of a high-level depiction of a process and doesn’t include as much detail as a P&ID.

Standardization

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The International Society of Automation (ISA) created the ANSI/ISA-5.1-2009 standard that defines the proper ways to use symbols in a P&ID. Although these standards are in place, there may be variations of certain symbols used across industries or companies. But, since all components in a P&ID use text or numbers for further identification, having a basic understanding of the symbols should not be an issue.

Symbol Categories

P&IDs use basic symbols to define the function of each component in the process.

These include the following categories:

Valves
Actuators
Failsafe Positions
End Connections
Process Lines
Signal Lines
Vessels
Pumps, Fans & Compressors
Sensors, Transmitters & Meters
Tag Numbers

valve symbols on p&id

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2-Way Valves
A 2-way, on/off valve is symbolized by two equilateral triangles that point toward each other. These valves use varying types of lines to represent different types of valves. The direction of the flow is shown by an arrowhead at the end of the line.


The most commonly depicted 2-way valves include:

  • Ball Valve
  • Butterfly Valve
  • Plug Valve
  • Gate Valve
  • Globe Valve
  • Pinch Valve
  • Needle Valve
  • Diaphragm Valve

3-Way & 4-Way Valves

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For multi-port valves, additional triangles are added to the symbol. L-port and T-port valves are depicted by lines within the ball symbol. The flow path is depicted by small arrows by the symbol.


Other Types of Valves

Additional valves are depicted as:

Actuators

The type of actuation is depicted with lines protruding from the center of the valve. A small symbol appears on top of the line for further identification. Electric and hydraulic actuation are shown with letters.

Failsafe Positions

Actuators with failsafe options are depicted by a line and arrow either pointing toward the ball (failsafe closed) or away from the ball (failsafe open). These can also be defined with the letters “FO” or FC.”


End Connections

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The type of connection for a valve (flanged, threaded, welded or socket weld) is displayed using perpendicular lines, circles and squares. For example, the perpendicular lines in a flanged connection show that the valve can be removed without affecting the pipe. Unfilled circles represent temporary threaded connections while permanent welded connections are depicted by filled-in squares. Socket welded connections are displayed using unfilled squares.

Process Lines

Pipes, tubes and hoses are shown by using different styles of lines. Each line is then labeled with a number, which includes defining information about the component’s class, size, insulation and other factors. If pipes cross but aren’t connected, you can keep them separate in the drawing by breaking one of the lines or adding a curve as depicted below:

Signal Lines

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To communicate information between components, P&IDs include symbols for each type of signal.






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