商品名稱:
規格介紹:
WIKA FLC-HHR-PP
HHR ProPak™ flow meter for oil and gas
規格介紹:WIKA FLC-HHR-PP
HHR ProPak™ flow meter for oil and gas
詳細介紹:
The HHR ProPak™ flow meter has a lower permanent pressure loss than the orifice plate or cone flow meter. This is enabled by an optimised inlet and pressure recovery cone.
Features:
- • No need for straight upstream and downstream pipes
- • Highest accuracy
- • Energy-efficient
- • Flexible installation
- • Wide variety of applications
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WIKA FLC-CO Compact orifice plate
Compact orifice plates can be used without difficulty for the measurement of liquids, gases and vapours. Features: • Compact and robust design per ISO 5167-2 • Installation between existing flanges (ASME/EN) • Complete measuring point consisting of orifice plate, valve manifold and differential pressure transmitter available • Simple installation without differential pressure lines • Accuracy ≤ ±0.5 % of the actual flow rate and a repeatability of the measurement of 0.1 %
WIKA FLC-HHR-FP HHR FlowPak® flow meter
No straight upstream and downstream pipes required It can also be mounted immediately after two 90° pipe elbows without any problems. Features: • Highest accuracy and energy efficiency • No upstream and downstream pipes required • Wide range of applications
WIKA FLC-OP, FLC-FL, FLC-AC Orifice plate, Orifice flange, Annular chamber
Orifice plates are the simplest type of primary flow elements. Suitable orifice plates are available for a wide range of different media. Orifice flanges feature pairs of pressure tappings which are machined directly into the orifice flange. Annular chambers are used to achieve stable measurements under difficult process conditions. Features: • Max. operating temperature and pressure limited by material and flange • Suitable for liquid, gas and steam flow measurement • Accuracy ≤ ±0.5 % of actual flow rate • Repeatability of measurement of 0.1 %
WIKA FLC-MP Multi-hole orifice plate
The model FLC-MP requires only 2 diameters downstream and 2 diameters upstream. This enhances the accuracy of flow measurement and minimises disturbances in flow, offering the orifice plates offer high performance even in short upstream and downstream pipes. Features: • For requirements in short straight up- and downstreampipes • Suitable for liquid, gas and steam flow measurement • Compact version available • Accuracy 1 % ... 2 % depending on beta ratio andReynolds number • Repeatability 0.1 % of flow rate
WIKA FLC-MR Meter run / meter tube
Differential pressure flow meters are used in many industrial applications. Features: • Max. operating temperature and pressure limited by material and rating • Suitable for liquid, gas and steam flow measurement • Accuracy ≤ ±1.0 % of actual flow rate • Repeatability of measurement 0.1 %
WIKA FLC-FN-PIP, FLC-FN-FLN, FLC-FN-VN Venturi nozzle, Flow nozzle
It can be used in a wide variety of applications that include steam, air, water, vapour, gas, chemical substances and high temperatures. For applications with erosive media a hardened internal surface is available. Features: • Suitable for liquid, gas and steam flow measurement • Optimum solution for measuring the flow of steam • Accuracy ≤ ±0.1 % of actual flow rate • Repeatability of measurement 0.1 % • Lowest pressure loss in the family of primary flow elements
WIKA FLC-VT-BAR, FLC-VT-WS Venturi tube
The main advantages of a Venturi tube over other differential pressure flow meters are the higher pressure recovery and the lower upstream and downstream pipe requirements. Features: • Suitable for liquid, gas and steam flow measurement • Accuracy ≤ ±0.5 % of actual flow rate • Repeatability of measurement 0.1 % • Lowest pressure loss in the family of primary flow elements • Calibration may be performed if required
WIKA FLC-APT-E, FLC-APT-F Pitot tube
The pitot tube is suitable for the measurement of one-phase media which completely fill the cross-section of the pipe. The nominal sizes range from 50 ... 1,800 mm (2" ... 72"), the pipe schedule is specified by the customer. Features: • Suitable for liquid, gas and steam flow measurement • Accuracy ≤ ±2 % of actual flow rate • Repeatability of measurement 0.1 % • Ensure the lowest pressure loss in the family of primary flow elements (approx. < 1 %)



