Piping and instrumentation diagram


A piping and instrumentation diagram is a detailed diagram in the process industry which shows the piping and process equipment together with the instrumentation and control devices.
Superordinate to the P&ID is the process flow diagram which indicates the more general flow of plant processes and the relationship between major equipment of a plant facility.

Contents and function

A piping and instrumentation diagram is defined as follows:
  1. A diagram which shows the interconnection of process equipment and the instrumentation used to control the process. In the process industry, a standard set of symbols is used to prepare drawings of processes. The instrument symbols used in these drawings are generally based on International Society of Automation Standard S5.1
  2. The primary schematic drawing used for laying out a process control installation.
They usually contain the following information:
P&IDs are originally drawn up at the design stage from a combination of process flow sheet data, the mechanical process equipment design, and the instrumentation engineering design. During the design stage, the diagram also provides the basis for the development of system control schemes, allowing for further safety and operational investigations, such as a Hazard and operability study. To do this, it is critical to demonstrate the physical sequence of equipment and systems, as well as how these systems connect.
P&IDs also play a significant role in the maintenance and modification of the process after initial build. Modifications are red-penned onto the diagrams and are vital records of the current plant design.
They are also vital in enabling development of;
P&IDs form the basis for the live mimic diagrams displayed on graphical user interfaces of large industrial control systems such as SCADA and distributed control systems.

Identification and reference designation

Based on STANDARD ANSI/ISA S5.1 and ISO 14617-6, the P&ID is used for the identification of measurements within the process. The identifications consist of up to 5 letters. The first identification letter is for the measured value, the second is a modifier, 3rd indicates passive/readout function, 4th - active/output function, and the 5th is the function modifier. This is followed by loop number, which is unique to that loop. For instance FIC045 means it is the Flow Indicating Controller in control loop 045. This is also known as the "tag" identifier of the field device, which is normally given to the location and function of the instrument. The same loop may have FT045 - which is the flow transmitter in the same loop.
LetterColumn 1 Column 2 Column 3 Column 4 Column 5
AAnalysisAlarm
BBurner, combustionUser choiceUser choiceUser choice
CUser's choice ControlClose
DUser's choice DifferenceDeviation
EVoltageSensor
FFlow rateRatio
GUser's choice GasGlass/gauge/viewing
HHandHigh
ICurrentIndicate
JPowerScan
KTime, time scheduleTime rate of changeControl station
LLevelLightLow
MUser's choiceMiddle / intermediate
NUser's choice User choiceUser choiceUser choice
OUser's choiceOrificeOpen
PPressurePoint/test connection
QQuantityTotalize/integrateTotalize/integrate
RRadiationRecordRun
SSpeed, frequencySafety SwitchStop
TTemperatureTransmit
UMultivariableMultifunctionMultifunction
VVibration, mechanical analysisValve or damper
WWeight, forceWell or probe
XUser's choice X-axisAccessory devices, unclassifiedUnclassifiedUnclassified
YEvent, state, presenceY-axisAuxiliary devices
ZPosition, dimensionZ-axis or Safety Instrumented SystemActuator, driver or unclassified final control element

For reference designation of any equipment in industrial systems the standard IEC 61346 can be applied. For the function Measurement the reference designator B is used, followed by the above listed letter for the measured variable.
For reference designation of any equipment in a power station the KKS Power Plant Classification System can be applied.

Symbols of chemical apparatus and equipment

Below are listed some symbols of chemical apparatus and equipment normally used in a P&ID, according to ISO 10628 and ISO 14617.
PipeThermally insulated pipeJacketed pipeCooled or heated pipe
Flexible connectionHydraulic pumpPumpVacuum pump or compressor
FanAxial fan, MK,Radial fan
Jacketed mixing vessel Half pipe mixing vesselPressurized horizontal vesselPressurized vertical vessel
Packed columnPlate columnFurnaceCooling tower
Heat exchangerCoil heat exchangerCoolerPlate & frame heat exchanger
Double pipe heat exchangerFixed straight tubes heat exchangerU shaped tubes heat exchangerSpiral heat exchanger
Covered gas ventCurved gas vent filterFunnel or tundish
Steam trapViewing glassPressure reducing valveValve
Gate valveControl valveManual valveCheck valve
Needle valveButterfly valveDiaphragm valveBall valve
Check valveBack draft damperBagGas bottle