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Phone
13805157582
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Address
No. 188 Daguang Road, Jinjiang Lishe
Nanjing Ditaier Instrument Electromechanical Equipment Co., Ltd
13805157582
No. 188 Daguang Road, Jinjiang Lishe
Self operated pressure regulator
The self operated pressure regulator maintains a constant pressure difference through the external needle valve based on the principle of force balance to maintain a constant fluid flow rate through the external needle valve. The self operated pressure regulator is connected to the external needle valve and downstream feedback pipeline to form a closed-loop automatic control system. The constant pressure difference before and after the needle valve is determined by the load spring on the inner membrane of the controller, and the pressure difference above and below the membrane is made equal to the pressure difference before and after the needle valve through the feedback pipeline from behind the needle valve to the membrane.
Self operated pressure regulators (constant current regulators) are used in situations where the medium pressure fluctuates greatly, to control the flow rate of gases and liquids to remain constant, so that flow meters can obtain stable and accurate measurements. They can be widely used for blowing (gas) at various analytical instruments, orifice plates, and other pressure taps. RE type is used to stabilize changes in inlet gas or liquid pressure (also applicable to changes in outlet pressure for liquids). RA type is only used for gas, stabilizing outlet pressure changes.TZLM-01 Self Operated Flow Regulator
A self operated flow regulator is a flow control instrument composed of a regulator and a glass rotor flowmeter. It does not require external kinetic energy and relies on the energy of the fluid itself to stabilize the pressure of the measured fluid, thereby achieving flow control and measurement. It can be widely applied in situations where the measured fluid pressure has significant changes.
1. Main technical parameters
(1) Control and measurement range:
Water (20 ℃) 0.15-160L/h
Air (1.013 × 10 5 Pa, 20 ℃) 3-1600L/h
(2) Range: 10:1
(3) Accuracy level: 2.5; four
(4) Adjustment performance: Input pressure changes by ± 10%, output flow changes by less than ± 1%
(5) Working conditions: temperature 0-60 ℃, relative humidity<80%
2. The model specifications are shown in Table 1
Table 1
model
Measure fluid
Control and measurement
rangeaccuracy
gradeAllow the measured fluid condition size in millimeters
Temperature ℃
Pressure MPa
A
B
C
D
TZLM-01-Q1
gas
0.05 ~ 0.5L/min
0.1 ~ 1L/min
0.15 ~ 1.5L/min
0.2 ~ 2L/min
4
0 ~ 60
0.02 ~ 0.15
26
21
-
-
gas
0.3 ~ 3L/min
0.5 ~ 5L/min
0.7 ~ 7L/min
1 ~ 10L/min
1.5 ~ 15L/min
29
30
TZLM-01-Q2
gas
16 ~ 160L/h
25 ~ 250L/h
40 ~ 400L/h
60 ~ 600L/h
100 ~ 1000L/h
2.5
0.03 ~ 0.25
36
43.5
171
180
160 ~ 1600L/h
250 ~ 2500L/h
0.05 ~ 0.25
43
224
253
TZLM-01-Y1
liquid
2.5 ~ 25ml/min
6 ~ 60ml/min
4
0.03 ~ 0.15
26
21
-
-
TZLM-01-Y2
1 ~ 10L/h
1.6 ~ 16L/h
2.5 ~ 25L/h
4 ~ 40L/h
6 ~ 60L/h
2.5
0.03 ~ 0.25
36
43.5
171
180
10 ~ 100L/h
16 ~ 160L/h
43
244
253
3. The appearance and installation dimensions are shown in the following figure and Table 1
TZLM-01-Q1 TZLM-01-Y1 Self standing Flow Regulator Outline Drawing
Outline drawing of TZLM-01-Q2 TZLM-01-Y2 self-supporting flow regulator
LZCSeries blowing device
1、 Overview
The LZC series blowing device is composed of a metal tube float flowmeter and a constant flow control valve produced, which achieves constant flow output setting, control, and indication in the system. It can be widely used in process control such as blowing and differential pressure liquid level measurement of transmitters in industries such as petroleum refining, chemical industry, ethylene, fertilizer, steel, chemical fiber and textile.
2、 Measurement principle
The constant flow control valve consists of a regulating valve and a balancing control valve. The flow rate of the constant flow control valve depends on the connection
At the position of the valve on the diaphragm, when there is no medium flow, there is no differential pressure before and after the regulating valve. The diaphragm only opens the balance control valve under the force of the spring. When fluid flows through, a differential pressure P1-P2 is generated before and after the regulating valve. This differential pressure simultaneously acts on the diaphragm, opposite to the force of the spring, causing the valve to close appropriately. According to the principle of balance, the elastic force is equal to the pressure difference between the front and rear ends of the regulating valve and the pressure generated by the diaphragm, so that the medium flow rate remains constant. Change the flow setting value by adjusting the valve.
When applied to gases or vapors, due to the compressibility of gases, precise flow control is based on the pressure on the constant flow control valve as a constant value. According to the setting position of the constant flow control valve, there are two types:
The RE type flow controller is set upstream and is suitable for situations where the outlet pressure of the flow controller is a constant value or discharged into the atmosphere when gas or vapor is present.
The RA type flow controller is installed downstream and is suitable for situations where the outlet pressure of the flow controller is a constant value when using gas or vapor. When used in liquid applications, the two models have the same effect.
3、 Model Naming
LZC A – B / C / D / E
A is equipped with a flow meter
Position of B flow control valve
C User Side Connection Method
1
LZZW type metal tube float flowmeter
RE
Inlet pressure regulator
F
Flange (HG20592)
2
LZZ type metal tube float flowmeter
RA
Export pressure regulator
S
Threaded connection NPT
3
DK800 glass rotor flowmeter
K
Ferrule connection
D Contact medium material
Attachment E
RR1
1Cr18Ni9Ti
P
Equipped with pressure gauge
RRO
316
G
Equipped with a filter
RL
316L
4、 Main technical parameters
model
LZC1
LZC2
measuring range
Water (20 ℃)
0.3-100L/H
2.5-4000L/H
Air (20 ℃ 101325Pa)
5-3400L/H
0.07-110m3/h
Range ratio
10:1
Accuracy class
Level 4
Level 2.5
Flow scale division
Actual flow scale
Small requirement pressure difference
0.05MPa
Large controllable pressure difference
0.5MPa
Great pressure
4.0MPa or according to user requirements
medium temperature
-80+150 ℃
ambient temperature
-25+65 ℃
Contact medium material
304, 316, 316L, and PTFE gaskets
casing
Aluminum casting, epoxy resin spraying
connect
Standard thread
1/4 "NPT or 1/2" NPT female thread
1/2 "NPT or 1" NPT female thread
Standard card sleeve
Φ 6 、φ 8 、φ 10mm
φ 12mm
Standard flange
HG20592-97 DN15, DN25 or according to user requirements
5、 Measurement range
1. LZC1 type blowing device
Cone tube number
water
( 20 ℃ L/H )
air
( 20 ℃ 101325Pa L/H )
High pressure loss (KPa)
W01
--
1.2-12
1.0
W02
--
5-50
1.2
W03
0.3-3
10-100
1.4
W04
0.5-5
15-150
1.5
W05
1-10
40-400
1.8
W06
2.5-25
80-800
3.5
W07
4-40
125-1250
6.5
W08
6-60
200-2000
13.0
W09
8-80
250-2500
23.5
W10
10-100
340-3400
40.0
2. LZC2 type blowing device
Diameter DN (mm)
Flow range
High pressure loss
Air (20 ℃ 101325Pa) m3/h
Water (20 ℃) L/H
Air (KPa)
Water (KPa)
15
0.07-0.7
2.5-25
7.1
6.5
0.11-1.1
4-40
7.2
6.5
0.18-1.8
6-60
7.3
6.6
0.28-2.8
10-100
7.5
6.6
0.40-4.0
16-160
8.0
6.8
0.70-7.0
25-250
10.8
7.2
1.0-10.0
40-400
10
8.6
1.6-16
60-600
14
11.1
25
3-30
100-1000
7.7
7
4.5-45
160-1600
8.8
8
7-70
250-2500
12
10.8
11-110
400-4000
19
15.8
6、 Typical applications
1. Typical applications under changes in gas supply pressure
As shown in the figure on the right, the gas source in the main pipeline can be divided into multiple branches as needed. If the gas flow rate of several branches is closed or adjusted, it will cause a change in the gas supply pressure of the main pipeline. The single channel blowing device installed on the branch can accurately measure the flow rate and maintain its output flow rate constant.
Recommended product model: LZC1/RE
LZC2/RE
2. Typical application under changes in outlet pressure - liquid level measurement
As shown in the figure on the right, when a constant flow rate of gas is input from end A, the gas will be discharged from the medium inserted into the liquid pipeline to form stable bubbles. At this time, the pressure inside the pipeline between A and B is equal to the liquid pressure at port B.
If the pressure at point B is P1 and the atmospheric pressure is P0, then P1-P0=△ P, and P1=γ h+P0, then P1-P0=△ P=△ P.
Therefore, under the condition of known medium density, using a differential pressure transmitter or pressure gauge to measure Δ P, the liquid level h can be measured.
Recommended product model: LZC1/RA
LZC2/RA
3. Typical application under export pressure variation conditions - density measurement
As shown in the figure on the right, if the measured medium liquid level H1 and the reference medium liquid level H2 are known, and the reference medium density γ 2 is known, the difference can be utilized
By measuring the pressure difference with a pressure transmitter, the density of the measured medium, γ 1, can be determined.
Recommended product model: LZC1/RA
LZC2/RA
4. Typical applications of differential pressure transmitters in measuring flow rate
When measuring corrosive or solid particle containing liquids or dust containing gases using orifice plates and differential pressure transmitters, the pressure capillary tube
There is a possibility of blockage. Using a dual circuit blowing device to blow and clean the two pressure holes can ensure that liquids, solid particles, or dust are not blocked
Will enter or block pressure holes or pressure pipes.
Recommended product model: LZC1/RE
LZC2/RE
Attributes [Origin] Chinese Mainland [Flow meter type] rotameter