The Rosemount 8800 MultiVariable Vortex Flow Meter combines temperature and flow devices into a single, highly accurate instrument, eliminating the costly installation of two or more separate devices. The integrated, removable temperature sensor provides an accurate process temperature measurement and is isolated from the process and separate from the Vortex flow sensor. With the input from an external HART® pressure transmitter, it also provides temperature and pressure compensation, enabling compensated mass flow and corrected volume in steam and liquid applications.
The Rosemount™ 8800 MultiVariable Vortex Flow Meter provides industry-leading accuracy in steam mass flow measurement. Real-time temperature and pressure compensation capability provides the confidence needed for producing accurate billing statements, balancing energy consumption, and achieving better control in steam applications.
Steam operations rely on safe, reliable instrumentation to withstand demanding high-pressure and temperature conditions. With no moving parts and no need for impulse lines, the Rosemount 8800 MultiVariable Vortex Flow Meter reduces maintenance and maximizes uptime by eliminating the risks of leaks, clogs, and plugs.
This flow meter offers world-class reliability with an all-welded, all-cast meter body design that eliminates leak points, reducing personnel exposure to hazardous steam conditions.
With rising energy costs, tracking steam usage is critical for effective energy management. Steam applications require flow meters with wide rangeability, high accuracy, and proven reliability. The Rosemount 8800 MultiVariable Vortex delivers on all fronts – helping improve efficiency and reduce costs.
Due to easy distribution, uniform heating, precise control, and high usable heat content, steam is widely used to deliver energy across a variety of industries and applications, included.
± 0.70% of mass flow rate in water using 8800 MultiVariable (MTA option)
± 2% of mass flow in steam using 8800 MultiVariable (MTA option)
± 1.3% of rate at 30 psia through 2,000 psia in steam using 8800 MultiVariable (MPA option)
± 1.2% of rate at 150 psia in steam using 8800 MultiVariable (MCA option)
± 1.3% of rate at 300 psia in steam using 8800 MultiVariable (MCA option)
± 1.6% of rate at 800 psia in steam using 8800 MultiVariable (MCA option)
± 2.5% of rate at 2,000 psia in steam using 8800 MultiVariable (MCA option)
± 0.65% of volumetric rate for liquids (uncompensated)
± 1% of volumetric rate for gas and steam (uncompensated)
38:1
4-20 mA with HART 5 or 7 (MTA/MPA/MCA option)
4-20 mA with HART 5 or 7 and scalable pulse output (MTA/MPA/MCA option)
FOUNDATION fieldbus ITK6 with 2 Analog Input blocks, 1 Backup Link Active Scheduler function block, 1 Integrator function block, and 1 PID function block(MTA option)
Modbus RS-485 with device status and 4 variables (MTA option)
Stainless Steel; 316 / 316L and CF3M
Nickel Alloy; C-22 and CW2M
High Temp Carbon Steel; A105 and WCB
Low Temp Carbon Steel; LF2 and LCC
Duplex; UNS S32760 and 6A
Consult factory for other wetted material
ANSI Class 150 to 1500
DIN PN 10 to PN 160
JIS 10K to 40K
Flanges are available in a variety of facings
Consult factory for additional flange ratings
-330°F to 800°F (-200°C to 427°C)
± 2.2°F (1.2°C)
-40 to 800°F (-40 to 427°C)