Flow meter Liquid Controls LC M10-1 Size 2″ – jual meteran solar 2 inch
Flow meter LC M10
Specifikasi:
Flow Meter LC M10
Size : : 2 inch
Accuracy : ± 0.2%
Repeatability : ≤ 0.05 %
Standar Measurement : Unit Liter / US Gallon / imperial Gallon
Max Working Temperature : – 40 to 160ºF (-40 to 71ºC)
Meter Body : Aluminium , Cast iron , Steel , Stainless steel available
Connections : ANSI Flanged , NPT , BSPT , Slip Woled Available
Capacity : 550 L/Min ( 150 GPM )
Max.Pressure : 10.5Bar/150 PSI
Type : Direct Reading
Flow meter LC M10

Meter minyak solar lcm10 liquid control
Flow meter LC M10
Specifikasi:
Flow Meter LC M10
Size : : 2 inch
Accuracy : ± 0.2%
Repeatability : ≤ 0.05 %
Standar Measurement : Unit Liter / US Gallon / imperial Gallon
Max Working Temperature : – 40 to 160ºF (-40 to 71ºC)
Meter Body : Aluminium , Cast iron , Steel , Stainless steel available
Connections : ANSI Flanged , NPT , BSPT , Slip Woled Available
Capacity : 550 L/Min ( 150 GPM )
Max.Pressure : 10.5Bar/150 PSI
Type : Direct Reading
Cara kerja
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They are designed for liquid measurement in both custody-transfer and process-control applications and can be installed in pump or gravity flow systems. Because of their simple design, they are easy to maintain, and easy to adapt to a variety of systems.
The meter housing (1) is designed with three cylindrical bores (2). Three rotors, the blocking rotor (3) and two displacement rotors (4 & 5), turn in synchronized relationship within the bores. The three rotors are supported by bearing plates (6 & 7). The ends of the rotors protrude through the bearing plates where the blocking rotor gear (8) is placed on the end of the blocking rotor and the displacement rotor gears (9 & 10) are placed on the ends of the displacement rotors. These gears create the synchronized timed relationship between the three rotors.
As fluid moves through the meter housing, the rotor assembly turns and the liquid is divided into uniform sections by the turning rotors. While measured fluid is displaced by additional fluid entering the meter, the new portion of the fluid is partitioned and measured, and the fluid ahead of it is displaced out of the meter.  Since the volume of the bores is known and the same amount of fluid passes through the meter during each revolution of the blocking rotor, the exact volume of liquid that has passed through the meter can be determined with a high degree of accuracy.
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