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LDQ-98A-G High Pressure Electromagnetic liquid Flow Meter

High Pressure Electromagnetic Flow Meter LDQ-98A-G

High Pressure Electromagnetic Flow Meter LDQ-98A-G is a product specifically developed for high-pressure flow measurement of various liquids in oilfields. It is designed to measure pulsating flows of liquids containing molecules and polymers, such as polymer master solutions. This product features stable measurement, high accuracy, and long service life. It is widely used in petrochemical, petroleum, water supply and drainage, water injection, and chemical dosing systems.

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The LDQ-98A Series Electromagnetic Flow Meter is a velocity-type instrument based on Faraday’s Law of Electromagnetic Induction, designed to measure the volumetric flow rate of conductive media in pipelines. It consists of two main components: an electromagnetic flow sensor and a converter. This series is capable of measuring clean water, wastewater, corrosive media (e.g., acids, alkalis, and salts), and slurry-type conductive liquids.

The converter employs microcontroller-based embedded technology to achieves digital excitation and provides real-time parameters display (including instantaneous flow, cumulative flow, flow velocity, and flow percentage). Additionally, it supports multiple signal outputs such as frequency, current, and wired/wireless communication, enabling remote monitoring and measurement of flow data.

This product series features stable measurement, high accuracy, and long service life, making it widely applicable in petrochemical, petroleum, water supply and drainage, water injection, and chemical dosing systems.

Measurement Principle:Faraday’s Law of Electromagnetic Induction.

When a conductive liquid moves through a magnetic field and cuts the magnetic lines of flux, it generates an induced electromotive force (EMF), expressed as:

EMF=KBVD

Where:

K: Instrument constant

B: Magnetic flux density

V: Average flow velocity within the measuring tube

D: Inner diameter of the measuring tube

During flow measurement, the fluid passes through a magnetic field perpendicular to the flow direction. The conductive liquid induces a voltage proportional to the average flow velocity (i.e., volumetric flow rate). Therefore, the measured liquid must have a minimum conductivity (>5μS/cm). The induced voltage signal is detected by two electrodes in direct contact with the liquid, transmitted via cable to an amplifier, and converted into a standardized output signal.

Key Advantages of This Measurement Method:

1.The measurement tube contains no flow-obstructing internals, effectively eliminating ancillary pressure losses.

2.Since the measurement result is independent of physical parameters such as liquid pressure, temperature, density, viscosity, and conductivity (>5μS/cm), and the sensor signal is an electromotive force (EMF) that maintains an exact linear relationship with average flow velocity, the measurement demonstrates high accuracy and reliable operation.

3.Since the signal is generated within the fully magnetized space and represents an average value across the pipe cross-section, the sensor requires relatively short straight pipe sections, specifically 5 times the nominal pipe diameter (5DN).

4.As only the pipeline and electrodes of the electromagnetic flowmeter come into contact with the measured liquid, corrosion and wear resistance requirements can be met by appropriately selecting electrode and pipeline lining materials.

Electromagnetic Flow Meter Selection

Model Coding:

Electromagnetic Flowmeter Model Selection Code Cross-Reference Table
A Product Type 1—LDQ-98A-D
2—LDQ-98A-W
3—LDQ-98A-P
4—LDQ-98A-G
5—LDQ-98A-T
B Installation Method Y—Integrated Installation
F—Split Installation
C Sensor Diameter 10—010 50—050 200—200 500—500 1000—102
15—015 65—065 250—250 600—600 1200—122
20—020 80—080 300—300 700—700 1400—142
25—025 100—100 350—350 800—800 1600—162
32—032 125—125 400—400 900—900 1800—182
40—040 150—150 450—450   2000—202
D Electrode Material A—316L Stainless Steel
B—Hc
C—Hb
D—Ti
E—Ta
F—Pt
E Lining Material A—Polytetrafluoroethylene (PTFE, F4)
B—Fluorinated Ethylene Propylene (FEP, F46)
C—Ceramic
D—Chloroprene Rubber (CR)
E—Polyurethane (PU)
F—Fluoroplastic (FS)
F Medium Temperature 1—≤100℃
2—≤120℃
3—≤180℃
4—≤65℃
5—≤80℃
6—≤60℃
G Power Supply 1—220VAC
2—24VDC
3—3.6VDC
H Ambient Temperature 1—-10℃~45℃
2—-20℃~55℃
3—-30℃~80℃
I Converter Installation Orientation A—Type A
B—Type B
C—Type C
J Output Signal 1—Frequency 5000Hz  4~20mA(+HRAT)
2—Frequency 5000Hz  4~20mA
RS485/MODBUS
3—Frequency 5000Hz  4~20mA Other communication standards can be agreed upon
K Grounding Ring 0—No Grounding Ring
1—Grounding Ring
2—Wrapped Grounding Ring
L Ingress Protection 1—IP 54
2—IP 65
3—IP 67
4—IP 68
M Ex-protected design O—Standard Type
E—Explosion-proof Type
N Nominal Pressure(MPa) Directly enter the Nominal Pressure value
O Flow Range Directly enter the minimum and maximum values
A—Horizontal B—Vertical Left C—Vertical Right

 

Technical Parameters

Overview:

High Pressure Electromagnetic Flow Meter LDQ-98A-G is a product specifically developed for high-pressure flow measurement of various liquids in oilfields. It is designed to measure pulsating flows of liquids containing molecules and polymers, such as polymer master solutions. This product features stable measurement, high accuracy, and long service life. It is widely used in petrochemical, petroleum, water supply and drainage, water injection, and chemical dosing systems.

Features:

1.Minimum flow rate can be accurately measured starting from 0.01 m³/h.

2.Capable of measuring media with particles, liquids, slurries, mineral suspensions, and chemical agents.

3.Robust structure, high safety, and aesthetically designed for use in medium- to high-pressure environments.

4.Measurement is unaffected by changes in fluid density, viscosity, temperature, pressure, or conductivity.

5.No moving parts or obstructions in the measurement tube; zero pressure loss; requires minimal straight pipe sections (5DN upstream, 2DN downstream).

6. Excellent corrosion and wear resistance can be achieved by selecting appropriate sensor lining and electrode materials.

7.Superior anti-interference performance: Resists static electricity and lightning surge voltages ≥1500 V.

Specification:

Nominal Diameter DN10~DN150
Nominal Pressure 25MPa~40MPa
Ingress Protection IP68 (Sensor), IP65 (Converter)
Electrode Material 316L Stainless Steel, Hastelloy C, Hastelloy B, Ti, Ta, Pt
Suitable Media Water, Wastewater, Polymers, Acid/Alkali Solutions, Corrosives, Pulp, Slurry
Medium Conductivity >5μS/cm
Turndown Ratio 10:1, 20:1, 30:1
Accuracy ±0.5%, ±1.0%
Lining Material PTFE (F4) FEP (F46)
Applicable Diameter DN10~DN150 DN10~DN150
Medium Temperature ≤100℃ ≤120℃
Converter Model DS08
Ex-protected design Ex d ib mb IIC T5 Gb
Output Signal Pulse/Frequency 5kHz, 4~20mA, 4~20mA+HART, RS485 (Modbus RTU)
Electrical Interface M20×1.5 Internal Thread (M18×1.5 Internal Thread, 1/2NPT Internal Thread, are customizable)
Power Supply Built-in 3.6V Li-battery (3+ years life, local display only, no output), AC220V±10% 50Hz, DC24V±5%
Ambient Temperature -30℃~80℃(requires protective measures below this threshold)
Ambient Humidity 5%~95%

Note: The instrument flanges comply with GB/T 9115-2010. For special requirements, the applicable standard must be specified (ASME B16.5-2009 Pipe Flanges and Flanged Fittings or the Ministry of Chemical Industry standard HG/T 20615-2009 Steel Pipe Flanges (Class Series)).

Installation Size:

 

Nominal Diameter

(mm)

Flow Range

(m³/h)

Nominal Pressure

(MPa)

Overall Dimensions(mm) Flange Dimensions(mm)
L H D1 D D0 n×A Y f C
10 0.05~1
0.1~2
25、32 200 300 98 125 85 4×18 35 4 24
40 200 300 98 125 85 4×18 35 4 28
15 0.1~2
0.2~4
25、32 200 310 120 130 90 4×18 40 4 26
40 200 310 120 145 100 4×22 40 4 30
20 0.2~4
0.35~7
25 220 310 120 135 95 4×18 51 4 28
32 220 310 120 145 100 4×22 51 4 30
25 0.2~4
0.35~7
0.55~11
25 220 310 120 150 105 4×22 58 4 28
32 240 315 130 160 115 4×22 58 4 34
40 240 315 130 180 130 4×26 58 4 38
32 0.35~7
0.55~11
1~20
25 230 320 138 165 120 4×22 66 4 32
32 240 320 138 175 130 4×26 66 4 36
40 240 320 138 200 145 4×26 66 4 43
40 0.35~7
0.55~11
1.5~30
25 230 320 140 185 135 4×26 76 4 34
32 260 320 144 195 145 4×26 76 4 38
40 260 320 146 220 165 4×30 76 4 48
50 0.55~11
1~20
2.5~50
25 250 320 158 200 150 8×26 88 4 38
32 280 320 158 210 160 8×26 88 4 42
40 280 320 158 235 180 8×30 88 4 52
65 4~80 25 280 330 166 230 180 8×26 110 4 42
80 2.5~50 25 280 340 196 255 200 8×30 121 4 46
100 7~140 25 350 350 200 300 235 8×33 150 4.5 54
125 12~240 25 350 363 226 340 275 12×33 176 4.5 60
150 16~320
20~400
25 400 370 240 390 320 12×36 204 4.5 68

 

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