YOKOGAWA Vortex Flowmeter VY Series

Vortex Flowmeter VY Series

Vortex flowmeters are highly versatile flowmeters that can measure liquids, gases, and steam over a wide range of temperatures and pressures. The advantages offered by this type of flowmeter make them better suited than other types to measuring steam flow.

Steam is the most commonly used high-temperature, high-pressure heat medium across a wide range of industries. For example, it is used for heating, distillation, and concentration in chemical plants; sterilization, disinfection, and cleaning in biotechnology, food, and pharmaceutical plants; and air conditioning in semiconductor plants and district heating/cooling plants, among many other applications. There are two types of steam: saturated steam and superheated steam. Saturated steam is a fluid with good thermal efficiency, but it is difficult to maintain saturation due to the pressure loss and heat radiation associated with steam transportation, so it is sometimes supplied in a superheated state at higher temperature and pressure. Vortex flowmeters are chosen as the best steam flowmeter for steam flow measurement at many facilities because they can measure the flow rate of even high-temperature, high-pressure steam, including superheated steam.

Product Lineup

VY Series Common Specifications

Vortex Flowmeter VY Series can measure the flow rates of liquids, gases, saturated steam, and superheated steam, and has self-diagnostic and remote maintenance functions. A choice of materials is available for the wetted parts, stainless steel including duplex stainless steel or nickel alloys. The series complies with a wide range of standards, including explosion-proof and SIL2. The external input (analog input function for HART7 with analog input option or input via MAO function block for FOUNDATION Fieldbus) supports more accurate calculation capabilities* than ever before, including mass flow rate and energy flow rate of liquids, gases, and steam.
*Saturated and superheated steam tables built in

[Common Specification]

ModelVY □ □ □ (Integral Flowmeter, Remote Sensor), VY4A (Remote Transmitter)
Measurement FluidLiquid, Gas, Saturated Steam, Superheated Steam
(Avoid multiphase flow and sticky or corrosive fluids)
Communication and Input/OutputHART 7 communication, 4 to 20 mA DC, Pulse / Status output, Analog input
FOUNDATION Fieldbus communication
Modbus RTU communication, Pulse / Status output
Explosion Protected TypeIECEx Ex db / Ex ia, ATEX Ex db / Ex ia, FM Ex db / Ex ia, FMc Ex db / Ex ia, Japan Ex db, NEPSI Ex db / Ex ia, Korea Ex db / Ex ia, INMETRO (Brazil) Ex db / Ex ia
Conformity StandardsEMC, PED, EU RoHS, CE marking, NACE, Functional Safety (SIL2), NAMUR (NE21 / NE107), Marine Certificate (ABS, DNV)

Refer to the General Specification sheet located under the Downloads tab for detailed specifications.


General Type

The general type is the basic model of the VY series.
The lineup includes connection size from 15 to 400 mm, process temperatures from -40°C to 250°C, and process pressures up to ASME Class 900.

[Specific Specification of General Type]

Type of BodyGeneral Type
Type of Shedder BarGeneral Type, Long Neck Type
AccuracyLiquid± 0.75 % of reading (depends on Reynolds number)
Gas, Steam± 1.0 % of reading (depends on the flow velocity)
Process Temperature-40 °C to 250 °C
Max Process PressureASME Class 900, EN PN100, JIS 40K
Ambient Temperature-40 ( / -50 ) °C to 85 °C
Connection SizeWafer15 to 100 mm
Flange15 to 400 mm
Degree of ProtectionIP66 / IP67

Refer to the General Specification sheet located under the Downloads tab for detailed specifications.


Built-in Temperature Sensor Type

The built-in temperature sensor type has a temperature sensor (Pt1000) built into the shedder bar (vortex shedder bar), allowing simultaneous measurement of the process fluid temperature.
These flowmeters are compatible with connection size from 25 to 300 mm, and can also be used in conjunction with high-temperature type and reduced bore type models, allowing them to handle a wide range of fluids. Compensation calculations are performed at temperatures close to that at the center of the pipe, enabling more accurate measurement of flow rates. Signals from an external pressure gauge can be captured and used in compensation calculations with the external input (analog input function with HART7 with analog input option or input via MAO function block for FOUNDATION Fieldbus) to support even more accurate flow measurement.

[Specific Specification of Built-in Temperature Sensor Type]

Type of BodyGeneral Type
[Combinationable Body] Reduced Bore Type (1 or 2 size reduction)
Type of Shedder BarGeneral Type with Temperature Sensor, Long Neck Type with Temperature Sensor
[Combinationable Shedder bar] Hight Temperature Type with Temperature Sensor
AccuracyLiquid± 0.75 % of reading (depends on Reynolds number)
Gas, Steam± 1.0 % of reading (depends on the flow velocity)
Process Temperature-40 °C to 250 °C (For General Type and Long Neck Type)
-40 °C to 400 °C (For High Temperature Type)
Max Process PressureASME Class 900, EN PN100, JIS 40K
Ambient Temperature-40 ( / -50 ) °C to 85 °C
Connection SizeWafer25 to 100 mm
Flange25 to 300 mm
Degree of ProtectionIP66 / IP67

Refer to the General Specification sheet located under the Downloads tab for detailed specifications.

High-Temperature / Cryogenic Type

The high-temperature and cryogenic models use the materials and sensors required for high-temperature and extremely low-temperature environments.
The high-temperature type handles connection size from 25 to 400 mm and fluid temperatures up to 450°C (up to 400°C with a built-in temperature sensor). The cryogenic type handles connection size from 15 to 100 mm and fluid temperatures of as low as -196°C. From this model, It is possible to select either type as an integral type or remote type.

[Specific Specification of High Temperature Type]

Type of BodyGeneral Type
[Combinationable Body] Reduced Bore Type (1 or 2 size reduction)
Type of Shedder BarHigh Temperature Type
High Temperature Type with Temperature Sensor
AccuracyLiquid± 0.75 % of reading (depends on Reynolds number)
Gas, Steam± 1.0 % of reading (depends on the flow velocity)
Process Temperature-40 °C to 450 °C
Max Process PressureASME Class 900, EN PN100, JIS 40K
Ambient Temperature-40 ( / -50 ) °C to 85 °C
Connection SizeWafer25 to 100 mm
Flange25 to 400 mm
Degree of ProtectionIP66 / IP67

[Specific Specification of Cryogenic Type]

Type of BodyGeneral Type
[Combinationable Body] Reduced Bore Type (1 or 2 size reduction)
Type of Shedder BarCryogenic Type
AccuracyLiquid± 0.75 % of reading (depends on Reynolds number)
Gas, Steam± 1.0 % of reading (depends on the flow velocity)
Process Temperature-196 °C to 250 °C
Max Process PressureASME Class 900, EN PN100, JIS 40K
Ambient Temperature-40 °C to 85 °C
Connection SizeWafer15 to 100 mm
Flange15 to 100 mm
Degree of ProtectionIP66 / IP67

Refer to the General Specification sheet located under the Downloads tab for detailed specifications.

Reduced Bore Type (1 or 2 Size Reduction)

The reduced bore type is a model in which both upstream and downstream sides of the sensor unit are integrated with a reducer (reduction/expansion pipe). As such, it is ideal for lines where flow rates fluctuate widely depending on the season and operating load.
The reduced bore type are available in two types, one-size reduction and two-size reduction, and the flange model accommodates connection size of up to 200 mm. The reduced bore type can be combined with the built-in temperature sensor type and the high-temperature/cryogenic type, allowing measurement of a wide range of fluids.

[Specific Specification of Reduced Bore Type (1 or 2 Size Reduction)]

Type of BodyReduced Bore Type (1 or 2 size reduction)
Type of Shedder BarGeneral Type
[Combinationable Shedder bar] General Type with Temperature Sensor, High Temperature Type
High Temperature Type with Temperature Sensor, Cryogenic Type
AccuracyLiquid± 1.0 % of reading (depends on Reynolds number)
Gas, Steam± 1.0 % of reading (depends on the flow velocity)
Process Temperature-40 °C to 250 °C
Max Process PressureASME Class 300, JIS 20K
Ambient Temperature-40 ( / -50 ) °C to 85 °C
Connection Size
Flange1 size reduction: 25 to 200 mm
2 size reduction: 40 to 200 mm
Degree of ProtectionIP66 / IP67

High-Pressure Type

This is a one-size reduction model with an ASME Class 1500 flange pressure rating. This allows it to provide stable measurement even under harsh high-pressure conditions.
In combination with a general-type sensor, it uses a flange-type connection size 25 to 150 mm.

[Specific Specification of High Pressure Type]

Type of BodyHigh Pressure Reduced Bore Type ( 1 size reduction)
Type of Shedder BarGeneral Type
AccuracyLiquid± 1.0 % of reading (depends on Reynolds number)
Gas, Steam± 1.0 % of reading (depends on the flow velocity)
Process Temperature-40 °C to 250 °C
Max Process PressureASME Class 1500
Ambient Temperature-40 ( / -50 ) °C to 85 °C
Connection Size
Flange25 to 150 mm
Degree of ProtectionIP66 / IP67

Refer to the General Specification sheet located under the Downloads tab for detailed specifications.


Dual-Sensor Type

This type is dual-sensor (welded) type that has a flange pressure rating of up to ASME Class 900. The structure of these two units connected in series is the best choice for applications requiring high reliability.
Size is from 15 mm to 200 mm in combination with several types of sensor.

[Specific Specification of Dual-Sensor Type]

Type of BodyDual-Sensor (Welded) General Type
Type of Shedder Bar*General Type, Long Neck Type
[Combinationable Shedder bar] General Type with temperature sensor, Long Neck Type with temperature sensor, High Temperature Type, High Temperature Type with temperature sensor, Cryogenic Type
AccuracyLiquid± 0.75 % of reading (depends on Reynolds number)
Gas, Steam± 1.0 % of reading (depends on the flow velocity)
Process Temperature-196 °C to 450 °C
Max Process PressureASME Class 900
Ambient Temperature-40 ( / -50 ) °C to 85 °C
Connection Size
Flange15 to 200 mm
Degree of ProtectionIP66 / IP67

* Type of shedder bar is same as upstream and downstream
* Refer to the General Specification sheet located under the Downloads tab for detailed specifications.