KLINGER SH250 Variable Area Flowmeter User Manual
- June 3, 2024
- KLINGER
Table of Contents
SH250 Variable Area Flowmeter
User Manual
GENERAL INFORMATION
This manual will assist you in installing, using and maintaining
Electromagnetic Flow meter. It is your responsibility to make sure that all
operators have access to adequate instructions about safe operating and
maintenance procedure.
Warning
For your safety. review the major warnings and cautions below before
operating your equipment.
- Use only fluids that are compatible with the housing material and wetted components of your Electromagnetic Flow Meter.
- When handling hazardous liquids. always exercise appropriate safety precautions.
- When measuring flammable liquids, observe precautions against fire or explosion.
- When working in hazardous environments. always exercise appropriate safety precautions
- Handle the sensor carefully. Even small scratches or nicks can affect accuracy.
- For best results, calibrate the meter at least 1 time per year.
- Do not purge the flow meter with compressed air.
- During Electromagnetic Flow Meter removal, liquid may spill.Follow the manufacturer’s safety precautions for clean up of minor spills
1.2 Unpacking and inspection
Upon receipt. examine your meter for visible damage. The meter is a precision
measuring instrument and handled carefully. Remove the protective plugs and
caps for a thorough inspection. If any items are damaged or missing. contact
us.
Make sure the flow meter model meets your specific needs. For your future
reference, it might be useful to record this information on nameplate in the
manual in case it becomes unreadable on the meter.
Transportation and Handling
Do not lift the detector from the Converter housing. the junction box or the
connecting cable. Use lifting lugs for larger sizes is recommended. Very large
meter sizes are packed and crated with the meter laying on its side for
shipping safety and stability reasons. In order to lift the meter in vertical
position. its recommended to use a sling rigged method as shown below.
Warning: NEVER introduce the forklift, chains, wire slings or any other
sharp object inside the flow tube for lifting or handling purpose. This could
permanently damage the isolating liner and could render the meter inoperable.
If using a forklift, do not lift the detector from its body between the
flanges. The housing could be accidentally dented and permanent damage could
be caused to the internal coil assemblies.
TECHNICAL DATA
Measuring range | Water (20°C): 1-200000 Uh |
---|
Air(20°C. 0.1013 MPa): 0.03- 6000m3/h
Range ratio| 10:1; special 20:1
Accuracy| 1.5% of rate
Pressure| DN15- DN50 s 4.0 MPA; DN80- DN200s 1.6 MPa (common)
DN15- DN50s 32MPa; DN80- DN200s 16 MPa (special)
Pressure loss| 7kPa- 70kPa
Medium Temp.| SS304: -40°C- +100°C
PTFE: 0°C- 100°C
High Temp.: 110°C- 450°C
Viscosity| DN15< 5mPa.s: < 30mPa.s
DN25<250mPa.s
DN50- DN150<300mPa.s
Ambient Temp.| Pointer type: -40oC- +85oC
Remote: +40°C- +85°C (liquid crystal is not damage)
-30°C- +80°C (liquid crystal is able to operate)
Connection| DIN 2501 flanges
Power supply| a. 4-20mA 24V DC (12V DC- 32V DC) 2 wires system
b. Alarm type: 4-20mA 24V DC (18V DC- 28V DC) 4 wires system
c. 85- 265VAC 50Hz
d. Battery: 3.6V007.5 AH (lithium)
Load| Almax= 3000
Alarm output| a. H& L Alarm
b. Switch value(1A@ 30V DC)
c. Relay output (IA@ 30V DC or 0.25A 0 250VAC or 0.50 125V AC)
Protection| I P65
Explosion proof| Exia II CT5Ex
Exd II BT6
INSTALLATION
3.1 Installation instruction
In it: SxDN Up straight pipe
250: Down straight pipe
100: For filterIn it: 5xDN Up straight pipe
250: Down straight pipe
100: For fltet
3.2 Installation consideration
- The pipe is cleared before installation.We recommend to install magnet filter up the instrument.
- You should take out stuffing for fixing pointer.
- The central line of instrument must be straight line with pipe line.The angle between pipe line and central line of instrument is not exceading 20.
- The instrument diameter is the same with pipe diameter and straight pipe H instrument & L instrument should be 5 times meter’s diameter and 250mm.
- There are not any stealmagnet materials around the meter.
- We recommend install a valve at output flow for gas measurement.
- When there is stress. you should add supporter at front and behind instrument.
- When installing instrument lining PTFE, the press force should not overlight.
- LCD display should avoid straight light.
- When low temperature.need steam jacket.
DIMENSION & WEIGHT
4.1
dimention & weight Al & pressure loss
DN/Size| A1| A2| G1| P
DN15| 220| 241| 3.7| 14
DN25| 230| 260| 5.2| 19
DN50| 255| 300| 8.7| 23
DN80| 270| 330| 14.2| 33
DN100| 280| 350| 15.2| 42
DN150| 320| 405| 33.7| 60
DN200| 350| 460| 48.7| 70
In it: G, instrument weight4kg Pp+a)press loss.
dimention & weight
DN/Size| C| G2
DN15| 100| 6.5
DN25| 110| 10.5
DN50| 120| 14
DN80| 140| 20
DN100| 150| 21
DN150| 185| 26
DN200| 210| 30
Note: G2 (kg) weight of instrument
Dimension & weight (lining PTFE)
dimention & weight|
---|---
DN/Size| A1| A2| G3
DN15| 220| 135| 6
DN25| 230| 155| 7.5
DN50| 255| 195| 11
DN80| 270| 225| 16.5
DN100| 280| 250| 17.5
Note: G2 weight: **P: pressure loss (kPa)
Lining PTFE measuring tube**
hygiene type dimension & weight
dimention & weight
DN/Size| A1| G2| P
DN15| 190| 2.4| 14
DN25| 200| 3.5| 19
DN50| 215| 4.8| 23
DN80| 230| 7.2| 33
DN100| 240| 8.1| 42
Note: G2 weight: ****P: pressure loss (kPa)
DN | H(mm) | L(mm) | A(mm) | G5 | P |
---|---|---|---|---|---|
DN15 | 350 | 250 | 120 | 7 | 18 |
DN25 | 350 | 250 | 120 | 8 | 22 |
DN50 | 600 | 250 | 120 | 15 | 28 |
DN80 | 700 | 250 | 150 | 25 | 35 |
DN100 | 700 | 250 | 150 | 29 | 45 |
DN150 | 760 | 300 | 180 | 53 | 58 |
DN200 | 800 | 350 | 200 | 61 | 70 |
Note: G2 weight: ****P: pressure loss (kPa)
dimention & pressure loss
DN| H(mm)| H1(mm)| C| L(mm)| D(mm)| G6|
P
DN15| 370| 550| 100| 250| 120| 5| 20
DN25| 370| 550| 110| 250| 120| 8| 28
DN50| | 560| 120| 250| 120| 14| 36
DN80| | 565| 140| 300| 150| 31| 45
DN100| | 570| 150| 300| 150| 50| 58
DN150| | 570| 185| 350| 180| 67| 63
DN200| | 620| 210| 400| 200| 81| 70
Note: G2 weight: ****P: pressure loss (kPa)
dimention & pressure loss
DN| H(mm)| H1(mm)| L(mm)| C| G7(kg)| P|
G7/T(kg)
DN15| 350| 520| 250| 143| 6.5| 30| 8
DN25| 370| 530| 250| 150| 10.5| 35| 12.5
DN50| | 560| 250| 170| 21| 40| 24
DN80| | 580| 400| 190| 32| 45| 35
DN100| | 610| 400| 210| 48| 50| 53
DN150| | 630| 400| 238| 58| 55| 64
DN200| | 650| 400| 290| 69| 60| 76
Note: G2 weight: ****P: pressure loss (kPa)
DN/Size | A | B | G8 | P |
---|---|---|---|---|
DN15 | 74 | 241 | 3.7 | 14 |
DN25 | 83 | 260 | 5.2 | 19 |
DN50 | 98 | 300 | 8.7 | 23 |
DN80 | 100 | 330 | 14.2 | 33 |
DN100 | 120 | 350 | 15.2 | 42 |
DN150 | 140 | 405 | 33.7 | 60 |
DN200 | 160 | 460 | 48.7 | 70 |
Note: G2 weight: ****P: pressure loss (kPa) Temperature:c 200°C
No 316L: Ti: He PTFE material
Dimensions and weight 54 to the table with 50 type pressure loss
Note: Temperatures 200°C; No 316L; Ti; He PTFE material
4.7 Flange dimension
4.7.1 Flange standard HG 20592-97
4.7.2 High pressure flange standard HG 2059.97 pressure PN254PA
DN | PN | øD | K | ød | n | øL | bolt |
---|---|---|---|---|---|---|---|
15 | 4.0 | 95 | 65 | 46 | 4 | 14 | M12 |
25 | 4.0 | 115 | 85 | 65 | 4 | 14 | M12 |
50 | 4.0 | 165 | 125 | 99 | 4 | 18 | M16 |
80 | 1.6 | 200 | 160 | 132 | 8 | 18 | M16 |
100 | 1.6 | 220 | 180 | 156 | 8 | 18 | M16 |
150 | 1.6 | 285 | 240 | 211 | 8 | 22 | M20 |
200 | 1.6 | 340 | 295 | 266 | 12 | 22 | M20 |
DN/Size| D| K| d| C| f1| H| n| L|
R| H1| A1| N| S| bolt
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---
DN15| 130| 90| 46| 26| 2| 60| 4| 18| 3| 6| 18| 48| 3.2| M16
DN25| 150| 105| 65| 28| 2| 65| 4| 22| 4| 8| 32| 60| 3.5| M20
DN40| 185| 135| 84| 34| 2| 80| 4| 26| 5| 10| 45| 84| 5| M24
DN50| 200| 150| 99| 38| 2| 85| 8| 26| 5| 10| 57| 95| 6.3| M24
DN80| 255| 200| 132| 46| 2| 12| 8| 30| 6| 12| 102| 136| 11| M27
DN100| 300| 235| 156| 54| 2| 120| 8| 33| 6| 14| 127| 164| 14.2| M30 Χ 2
DN125| 340| 275| 184| 60| 2| 140| 12| 33| 6| 16| 159| 206| 16| M30 Χ 2
DN150| 390| 320| 211| 68| 2| 160| 12| 36| 8| 18| 180| 242| 17.5| M33 Χ 2
DN200| 485| 400| 284| 82| 2| 190| 12| 42| 8| 25| 244.5| 305| 25| M39 Χ 2
48Magnet fitter and straight pipe
DN| PN| D| K| D 4| n Χ ∅d| b|
H1(inlet)| H2(outlet)| weight(kg)| PTFE(kg)
---|---|---|---|---|---|---|---|---|---|---
15| 4.0| 95| 65| 45| 4 Χ 14| 14| 75| 250| 1.59| 1.6
25| 4.0| 115| 85| 68| 4 Χ 14| 16| 125| 250| 2.65| 2.8
50| 4.0| 165| 125| 102| 4 Χ 18| 20| 250| 250| 6.3| 6.6
80| 1.6| 200| 160| 138| 8 Χ 18| 20| 400| 250| 8.29| 8.74
100| 1.6| 220| 180| 162| 8 Χ 18| 22| 500| 250| 10.5| 11.02
150| 1.6| 285| 240| 212| 8 Χ 22| 24| 750| 250| 17.8| 18.95
200| 1.6| 340| 295| 266| 12 Χ 22| 26| 1000| 250| 22.19| 23.1
Note: DN> 100; 150 instead of 100; import length: H2: output length.
WIRING
5.1 2wires system 4-20mA output (with HART)
5.2 Intrinsic- safety
Intrinsic- safety indicator must use safety device for example NPQEX- C31.
NPEXA- C31, NPEXA- C311
5.3 Power supply 24V DC, 220V AC with alarm and pulse output
5.4 With Modbus
5.5 Switch on and switch off value alarm
5.6indicator information
5.6.1indicator M1
A. Pointer axial with pointer turns round as instantaneous flow rate
displaying. If you request, two scales for two kinds of medium can be made.
B. Limit alarm device
The limit alarm device is made from SJ 3.5 initiator and aluminum plate in the
indicator, you may fix alarm value by changing Al plate position.
H
and L limit alarm, H limit alarm, or L limit alarm are realized by SJ 3.5
initiator transit or relay WE77/ Ex-1 or WE77/ Ex-2. One alarm with an
initiator SJ 3.5 and a transistor relay WE77/ Ex-1. and two alarms with two
initiator SJ 3.5 & a transistors relay WE77/ Ex-2.
C. Technical data for transistor relay WE77 and initiator SJ 3.5
Model | WE77/EX-1 | WE77/EX-2 |
---|---|---|
Power supply | 220V AC.24V DC WE77/EX-2 | |
Power | 3.5VA | |
Operation temp | -25°C- 60°C | |
Open voltage | 8(13.5)V | 8(13.5)V |
Short current | 8(31)mA | 8(62)mA |
Permit inductance | 3(31 )mH | 1(7.6)mH |
Permit capacity | 1(7.6)mH | 160(539)nF |
Model | SJ3.5-N | SJ3.5-SN |
Power supply | 8V DC | 8V DC |
Effective area open | ≥3mA DC | |
Effective area close | ≤1mA DC | ≤1mA DC |
Self inductance | 250 μ H | 100 μ H |
Self capacity | 50nF | 60nF |
Operation temp | -25°C- +70°C | -40°C- 4-100°C |
D. WE77 transistors relay operating way: Open current WE77 operates in close current also by jumping
Model | WE77/Ex-1 | WE77/Ex-2 |
---|---|---|
Operating state | terminal connation wire | |
Close current | 5-Apr | 3-4: 6-7 |
Open current | 4-Mar | 2-3; 7-8 |
E. Wiring of initiator SJ 3.5 and transistor relay WE77/ Ex.
In it:
a. SJ 3.5
b. WE77/ Ex
c. Lamp relay operating lamp
d. Relay output
e. Power supply for WE77/ Ex
f. Instsllation and dimension for WE77/Ex
5.62indicator M2
A. M2 shell is square.
There is a software submenu circuit plate approved ExialICT5 in the shell. M2
indicator has pointer display for instantaneous flow and also has liquid
crystal display for instantaneous flow and accumulative total flow. There are
3 Kays for operating. Its output are 4- 20mA and alarm signal.
B. Alarm way:
M2 Alarm way is different from Ml. M2 alarm way is relay output. by Kay
operation. It has protection. It has protection function of broken power.
logic. you may give alarm output at the software not using jumper. It can
connect with PLC by relay and safety device.
C. Indicator M2 also has following functions:
Multi-data calibration functions setting.
Date store for future use
Date renewing
Protection of broken power
Can select liquid crystal background light not at 2 wire system
D. Battery type
Li lithium battery also provides power supply of M2 & M4, batter supply is
3.6V at 7.5 AH. Batter can operate over when 3 years continue. Its is at
-10°C- +45°C
5.6.3 Indicator M4
Indicator M4 is a display of multi- functions. It includes all of functions of
Ml, M2. M4 three indicators. M4 has an independent pointer system based M4.
Indicator M4 instead of M1. M4 indicators.
DEBUGGING
See the intelligent variable area flow meter software operation instruction Ver-5.0
MAINTENANCE
7.1 Indicator and transducer can at dismount random.
7.2 You should clear instrument and magnet filter regular.
7.3 Steal- magnet matter and liquid can not be come into in instrument and
instrument shell should connect ground.
7.4 You should open slowly valve front instrument.
7.5 Operating and using instrument should be corrected. If not. EEPROM will
damage and data in it will be lost.
7.6 Instrument storage: Temperature: -40°C- +55°C: Humidity: RH 90%
7.7 You should break power supply, when you open shell for Exd instrument
7.8 LCD display will be black when environment temperature c -30°C or > 85°C
LCD will not damage. When the temperature returns to normal temperature range.
FAILURE ANALYSIS AND SOLUTION
8.1 Vibration
8.1.1 Gentle vibration: caused by media fluctuation. can be prevented by
damping.
8.1.2 Middle vibration: caused by media flow status, regarding to the gas,
normally caused by the unstable operation pressure, which can be prevented by
stable pressure or flow control device, or increase the meter damping.
8.1.3 Strong vibration: caused by media pulsation, unstable air pressure, or
the client supplied gas operation pressure, temperature, and flow cannot
comply with real situation on the meter, which is over the measuring scope
under big differential.
8.2 Pointer stop at some position without movement
Main reason is the float blocked. During the normal operation. the valve open
too fast. which caused the float quickly move up and strike the movement
controller, and the movement controller will be out of shape and then block
the float. The float oriented lever may also be not concentric with the
movement control ring. and block the float. To solve this. first shall take
apart the meter, and take away the movement controller to make the shape back
to original, then check the if it is concentric with the oriental lever,
assembly the float and to make it move up and down. smoothly, meanwhile the
meter shall be assembly vertically or horizontally, otherwise meter will be
blocked and has measurement error.
8.3 Large measuring error
8.3.1 Assembly procedure cannot comply with the requirement
A: Regarding the vertical installed meter. it shall be vertical assembly and
the incline shall not be more than 2.
B: Regarding the horizontal installed meter, it shall be horizontally assembly
and the incline angel shall not be more than 2.
C: No magnetic subject is allowed within area of 100mm from the meter.
D: The assembly position shall be away from the valve diameter changing port.
pump outlet. non- direct pipe line port, to meet the requirement of 5d ahead
and 250mm behind of the direct pipe line.
8.3.2 Big media density change is also on reason of the bigger measurement
error. Before calibration, all the media density will be converted according
to client supplied media density, it will be calibrated based on water flow
under standard status, if the media density has big media density in the
formula. convert to the error revised factor, then the real flow rate will be
the measured flow rate times with the factor.
8.3.3 Gas media will be effected by the temperature and pressure. suggest to
use the pressure and temperature compensation method to get the real flow
rate.
8.3.4 With long time usage and pipe vibration, the meter sensor magnetic
steel. pointer. weight. and rotating magnetic steel parts will be less
crowded, which will make bigger measure-ment error. The solution: to test it
by move the pointer manually. to make the pointer in the position of RP. check
it the output is 4mA and flow rate is 0%. and then test by the degree. if not
comply with the requirement, then to calibrate the parts on the position. It
is requirement that the professional technician to make the calibration.
otherwise it will make the position lose and shall be back to the manufacture
for calibration.
8.4 No current output
8.4.1 Check if the wire connection is correct.
8.4.2 No liquid crystal display, if there are display but no output. may the
output tube damaged the circuit board need to be replaced.
8.4.3 Lose the calibration value.The meter calibration value lose due to the
E2PROM failure, it can caused no current output. but the current value is not
changed. Solution to recover the operation by data recovery. if not succeed,
first set the data of code 2000. then set the data of code 2008. the method is
calibrating the data from RP- 100% by push the pointer manually.
8.5 No site display
8.5.1 Check if the wire connection is correct.
8.5.2 Check if the power supply is correct.
8.5.3 Reinstall the liquid crystal module, and check if the connection point
is solid.
8.6 The site liquid is 0 of full scope
8.6.1 Set the scope and zero data by checking the 2000 code. it is required
that the ZERO value is lower than Span value, the two values are not equal.
8.6.2 Check the sample data, push the pointer manually to check the change of
the sample value, if there are no changes, then it will be sample circuit
failure, it is necessary to replace with the circuit board.
8.7 No correct alarm
8.7.1 Check the error set value D cannot be too higher.
8.7.2 In the function of FUN, check if the logic function is correct. HA-A
means up limit of positive logic. LA-A means low limit of positive logic.
8.7.3 Check alarm set value of SU.
8.7.4 Check if the liquid crystal tap display is correct, there are output but
no movement, check the outside power supply and if the negative pole of the
outside power supply is correct connected.
8.7.5 Circuit board failure. replace with new.
8.8 Accumulated pulse output is not correct
8.8.1 Check the alarm of the accumulated pulse output is set on ZERO.
8.8.2 Circuit board failure. replace with new.
ACCESSORIES
The meters have packed when they left the factory and the accessories are as
following:
a. Specification
b. Certificate of Quality
c. Packing List
d. Other attachments (e.g.: companion flange. fastener. etc.) will be
displayed in the contract.
https://www.klinger.dk/media/xc1jphlg/sh250-display-menu.pdf
KLINGER Denmark A/S
Nyager 12-14 | DK-2605 Brøndby
+45 43 64 66 11
salesinstrumentation@klinger.dk
www.klinger.dk
References
Read User Manual Online (PDF format)
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