Brazil Split remote transmission intelligent valve positioner

The TORLEO tubeless installation smart valve positioner is used with pneumatic control valves (such as diaphragm control valves, ball valves, butterfly valves, etc.), and is widely used in the precise control of flow and other parameters in the production processes of the petroleum, chemical, metallurgical, power, and papermaking industries.

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Product Description

Hall-type intelligent valve positioner

  

  The TORLEO tubeless smart valve positioner is used with pneumatic control valves (such as diaphragm control valves, ball valves, butterfly valves, etc.), and is widely used in the precise control of flow rate in the production processes of industries such as petroleum, chemical engineering, metallurgy, power, and papermaking.

 

Hall-type intelligent valve positioner

 

  The technical principle of the TORLEO intelligent valve positioner is to use an electrical balance (digital balance) principle to replace the traditional force balance principle, converting the electrical control command into a pneumatic positioning increment to achieve valve position control; using digital on/off signals to drive the pneumatic actuator; the valve position feedback signal is directly transmitted through a high-precision position sensor, realizing the electro-pneumatic conversion function. The microprocessor in the intelligent valve positioner receives a 4-20mA setpoint signal and compares it with the actual valve position value fed back by the valve position sensor. If a deviation is detected, it immediately outputs an electrical control command (PWM digital method) to the nozzle flapper I/P control unit according to the magnitude and direction of the deviation, thereby adjusting the airflow entering the actuator air chamber, that is, the control valve converts the control command into pneumatic displacement increment. When the deviation between the actual valve position and the setpoint is large (high-speed zone), the positioner outputs a continuous signal; if the deviation is not large (low-speed zone), the positioner will output a pulse signal; when the deviation is very small (adaptive or adjustable dead zone state), there is no positioner output, at this time, the actual valve position reaches the setpoint, and the mechanism reaches a balanced state, that is, a certain set current corresponds to a certain valve position.

 

Hall-type intelligent valve positioner

 

Figure 1 TORLEO intelligent valve positioner schematic diagram

 

Hall-type intelligent valve positioner

 

  Following the German Samson, Swiss ABB, American Fisher, French Foxboro, Japanese Azbil, and South Korean YTC, the TORLEO intelligent valve positioner is the first domestic nozzle-flapper type intelligent valve positioner with independent intellectual property rights. It is technologically advanced and fills the gap in domestic products in this area.
  
  Product features:
  ■ Nozzle flapper 3/3 slide valve type I/P, strong resistance to dust, moisture, and oil stains on site, low requirements for compressed air quality;
  ■ The product has a built-in keyboard and a large LCD screen, making it easy for users to determine the working status of the positioner and access information on site;
  ■ A HART communication module can be added to facilitate users in obtaining or modifying the working information of the positioner and valve online;
  ■ A valve position output module can be added to facilitate users in feeding back the valve opening;
  ■ The valve linearity, quick opening, equal percentage, and user-defined flow characteristics can be arbitrarily set, which is convenient for valve control;
  ■ Self-invented patented fast one-button self-tuning method to meet the needs of users for quick installation and fool-proof debugging;
  ■ Innovative use of grey prediction-integral-differential PID composite control algorithm to achieve 0.1-0.3% control accuracy;
  ■ Special data backup function to solve the problem of on-site application of intelligent positioners and maintenance and replacement during online production.
 
  Comparison with imported similar products:
 

Serial Number

Performance Indicators

TORLEO (China)

ABB (Switzerland)

SAMSON (Germany)

Azbil (Japan)

Comparison Description

1

Pneumatic component characteristics

Digital I/P converter

Pneumatic 3/3 slide valve

Analog I/P converter

Pneumatic 3/3 slide valve

I/P converter

Pneumatic amplifier

I/P converter

Pneumatic amplifier

Superior to imported products

2

I/P drive method

Digital (PWM)

Analog (voltage)

Analog (voltage)

Analog (voltage)

Superior to imported products

3

I/P power consumption

0.8mw

1.6mw

5mw

18mw

Superior to imported products

4

Vibration resistance index

20g

20g

10g

10g

Reaches imported standards

5

Fault interlock

Yes (built-in function)

Yes (built-in function)

Requires external accessories

Requires external accessories

Reaches imported standards

6

Temperature drift compensation

With compensation technology

With compensation technology

With compensation technology

Without compensation technology

Reaches imported standards

7

Air source pressure

1.4-6bar

1.4-6bar

1.4-6bar

1.4-7bar

Reaches imported standards

8

Air quality

ISO8573-1 particulate matter class 3,

Oil content less than 1mg/m3,

Dew point less than 10k

ISO8573-1 particulate matter class 3,

Oil content less than 1mg/m3,

Dew point less than 10k

ISO8573-1 particulate matter class 4,

Oil content 3g, dew point 3g

ISO8573-1 particulate matter class 4,

Oil content 3g, dew point 3g

Reaches imported standards

9

Steady-state air consumption

0.056Nm3/h

Irrelevant to air pressure

0.085Nm3/h

Irrelevant to air pressure

0.11Nm3/h

Irrelevant to air pressure

0.24Nm3/h(1.4bar)

0.3Nm3/h(5bar)  

Superior to imported products

10

Control Precision

0.1%-0.3% 

0.1%-0.3% 

0.3%-0.5%  

0.5%-1.0%  

Reaches imported standards

11

Self-tuning

One-button foolproof setting

2-3 minutes 

Multi-step menu setting

3-5 minutes 

Multi-step menu setting

3-5 minutes

Toggle switch setting

8-15 minutes 

Superior to imported products

12

Minimum Operating Current

3.4mA 

3.4mA 

3.5mA  

3.8mA  

Reaches imported standards

13

Explosion-proof Standard

Exia IIC T6 

Exia IIC T6 

Exia IIC T6  

Exia IIC T6  

Reaches imported standards

14

Explosion-proof Standard 

Exd IIC T6

Exd IIC T6

Exd IIC T6 

Exd IIC T6 

Reaches imported standards

15

Backup Function 

Yes

No 

No 

No 

Superior to imported products

16

Price

Moderate 

High 

High 

High 

High Cost Performance 

 

Hall-type intelligent valve positioner

 

Serial Number

Project

Explosion-proof Type

Explosion-proof Type

1

Input Signal

4-20mA, can be set as proportional control input

The proportional range can be set between 20-100%

2

Input Pressure

1.4-6kgf/cm²(0.14-0.6Mpa)

3

Stroke

10-150mm or 0-120º

4

Impedance

Maximum 460Ω/20mA(DC)

5

Air Source Interface

PT (NPT) 1/4

6

Pressure Gauge Interface

PT (NPT) 1/8

7

Power Interface

PF 1/2 (G 1/2)

8

Repeatability

±0.2%F.S.

9

Operating Temperature

-30℃∽85℃

10

Explosion-proof Temperature

-40℃∽40℃

11

Linearity

±0.3%F.S.

12

Hysteresis

±0.2%F.S.

13

Sensitivity

±0.2%F.S.

14

Air Consumption

Less than 0.03kg/h (irrespective of air source pressure)

15

Output Characteristics

Linear, quick-opening, equal percentage, user-defined

16

Self-tuning Method

One-button self-tuning

17

Material Grade

Die-cast Aluminum

Stainless Steel 316

18

Explosion-proof Grade

Exia IIC T4-T6

19

Explosion-proof Grade

Exd IIC T4-T6

20

Weight

2kg

3.6kg


Hall-type intelligent valve positioner

 

Hall-type intelligent valve positioner

 

Hall-type intelligent valve positioner

 

ØAppearance Dimensions

Plan View

 

Hall-type intelligent valve positioner

 

Elevation View

 

Hall-type intelligent valve positioner

 

Figure 2 Positioner External Installation Dimensions Diagram

 

ØActuator Introduction

 

Hall-type intelligent valve positioner

 

Figure 3 Pneumatic Diaphragm Control Valve Actuator

 

ØInstallation Component Introduction

 

Hall-type intelligent valve positioner

 

Figure 4 Components for Positioner Installation

 

ØTools Required
Fork wrench 8mm/10mm/12mm/13mm/14mm, hexagon wrench 4mm, adjustable wrench, sealant tape, signal source, flat-head screwdriver 3mm, Phillips screwdriver 3mm/6mm
ØInstallation and Debugging Steps
1. Install the follow-up guide rod on the actuator, as shown in Figure 5:
 
Hall-type intelligent valve positioner
 
Figure 5 Follow-up guide rod installation diagram
 
2. Install the mounting plate on the actuator, as shown in Figure 6:
 
Hall-type intelligent valve positioner
 
Figure 6 Mounting plate installation diagram
 
3. Connect the lever, feedback pin, and positioner, as shown in Figure 7:
 
Hall-type intelligent valve positioner
 
Figure 7 Mounting plate installation diagram
 
4. Secure the positioner to the mounting plate, as shown in Figure 8:
 
Hall-type intelligent valve positioner
 
Figure 8 Mounting diagram of the mounting plate
 
5. Circuit connection
Connect the 4-20mA command line and valve position feedback line as needed, and set the operating mode to manual.
6. Pneumatic connection
  Wrap the pneumatic fitting with adhesive tape, and screw the fitting onto the IN and OUT1 ports of the positioner's air source. Note the winding method of the adhesive tape (wind 3-5 turns in the direction of the thread, so that the adhesive tape will not be squeezed out when tightening). Connect the air tube.
7. Debugging sequence
 

Give16mAinstructions, setMAN-SENSmode

Air source: Adjust the air source to the required pressure (e.g., 0.4 MPa), and check the airtightness of the fitting 

Set actuator type: Set P1-1 to LINE, and select YES in P1_6SAVE to save

Move the valve up and down to see if the angle between the lever and the horizontal is within-30degrees to+30degrees 

Check if the valve is stuck: In MAN-SENS mode, long-press the increase or decrease button to see if the valve runs smoothly 

Set the upper and lower limits of the valve: This valve only needs to set the upper limit value in P3_2

One-button auto-tuning: In AUTO_RDT, long-press the increase button for 5 seconds until the countdown ends, then release the button to Enter auto-tuning. After auto-tuning is complete, it will automatically Enter AUTO_RDT operation. The tuning time is about 2-3 minutes

Check if the valve position and instruction are consistent: If they are opposite, change the value of P2_4 and save

Check if the display and position are consistent: If they are opposite, change the value of P4_3 and save

Check if the feedback current and valve position are consistent. If they are opposite, change the value of P7_3 and save 

Check the control effect 

End 

 

8. Troubleshooting
Problems and solutions that may occur during debugging are listed below in chronological order: 
 

Serial Number

Problem

Solution

1

 The LCD screen does not light up when current is applied

1) Check if the command line is reversed

2) Check if the current reaches the terminals of the board

3) Unplug the plug connected to the main board. If it still does not light up, the main board is faulty; if it recovers, the unplugged component is faulty

2

 There is an air leak sound outside the positioner after air is applied

1) Check the fitting

2) Check the air tube

3) Check the actuator

3

 There is a significant air leak sound inside the positioner after air is applied

1) Check between the pressure gauge block and the positioner body. If so, tighten it. If it still leaks, reinstall the gasket

2) Check if the fixing screws of the IP are tightened, and check the gasket under the IP

3) The IP may be leaking

4

 Exhaust is always present when the actuator is inflated

1) It is recommended to replaceIP

5

 Inflation is always applied after air is applied, but no instructions are givenOUT1Inflation

1) Manually press and hold the increase and decrease buttons repeatedly in manual mode

2) Replace IP

6

 The valve does not move and the pressure does not increase in manual mode

1) Check for external air leaks

2) Try restoring factory settings

3) Replace the positioner

7

 The display position does not change when the manual valve moves

1) Check if the feedback rod is moving

2) Check if the potentiometer plug is inserted correctly

3) Check if the potentiometer rotates with the gear

8

 CALC_ERR

1) Check if the valve is stuck

2) Check if the feedback rod is moving

9

 ZERO_ERR

1) Determine the zero position of the positioner. At this time, is the horizontal deviation of the feedback rod too large?

10

 NO_SCALL

1) Check if the up and down times are sufficient

2) Check if the feedback rod is loose

11

 Tuning inSD6does not move

1) Check if the installation is reasonable

2) Check if the feedback rod angle is less than 60°. If it is less than 60°, increase it

3) Retune

12

 Poor control effect

First determine whether the upward control is poor or the downward control is poor, and modify the corresponding parameters to improve it. Generally, inflation corresponds to P5_1, P5_3, and  P5_5, and exhaust corresponds to P5_2, P5_4, and P5_6

1) Overshoot: If it is inflation overshoot, first reduce P5_1, if it cannot be satisfied, then appropriately reduce P5_3, otherwise modify the other corresponding parameter group, modify about 50 each time

2) Undershoot: If it is inflation undershoot, then appropriately increase P5_3, otherwise modify the other corresponding parameter group

3) Small amplitude oscillation: Reduce P5_5 and P5_6 by one third each, if it doesn't work, reduce P5_3 and P5_4

4) If it still cannot be solved, try readjusting it

13

 Control Deviation

1) Check the instruction display accuracy; if the deviation is large, EnterP8Menu Recalibration

 

For other uncommon problems, please refer to the instruction manual.
  
ØTORLEO Intelligent Valve Positioner Failure Lock (Three-Break Safety Position) Installation Guide
  
  The implementation principle of the TORLEO intelligent valve positioner failure lock function is: the positioner receives the valve position specified signal sent by the DCS central control room, and completes the valve positioning control within 1-3 seconds. When the valve position enters the tolerance band (such as 0.3%), the output current of the positioner used to drive the I/P electrical conversion module is 0. At this time, the I/P electrical conversion module also works in the off state, which is equivalent to closing the valve's air inlet. At this time, in case of power failure (or signal interruption), the air passage is still closed, and the gas in the valve cylinder has no leakage channel, so the valve remains in the position before power failure. It realizes the two-break safety position function without adding power failure comparison and solenoid valve, easily. Special note: For two-wire intelligent valve positioners, power failure or signal interruption is the same concept.
  
  The implementation method of air pressure retention is the same as the traditional method, using an air lock valve. The operating pressure of the air lock valve is adjustable (e.g., set to 3KG). When the air is cut off, the supply pressure will slowly decrease. When it drops to 3KG, the air lock valve switch will operate, closing the air inlet channel connected to the valve cylinder, thus achieving air pressure retention.
 
Hall-type intelligent valve positioner
 
Figure 9 Single-acting failure lock installation diagram
 
Hall-type intelligent valve positioner
 
Figure 10 Double-acting failure lock installation diagram
 
 
  
  In some applications, in order to speed up the operation speed of the actuator, we need to add a pneumatic amplifier in the positioner output loop. The following figure shows an application example of a double-acting actuator air pressure protection with an added pneumatic amplifier.
 
Hall-type intelligent valve positioner
 
Figure 11 Single-acting straight-stroke actuator installation example
 
 
Hall-type intelligent valve positioner
 
Figure 12 Double-acting straight-stroke actuator installation example
  
  Appendix: Working principle of air lock valve
  Generally, air lock valves can be divided into single-acting and double-acting types. The following figure shows a double-acting air lock valve with two air inlets, two air outlets, and one main air source interface.
  The air lock valve uses the main air source as the signal pressure. When the signal pressure is lower than the set pressure of the air lock valve, it cuts off the internal air passage of the lock valve to prevent the air from flowing. The main application is to install it on the control valve. When the main air source pressure of the factory drops below the set pressure due to power failure, leakage, etc., it automatically closes the air passage from the positioner to the actuator, maintaining the current valve opening. Its working principle is that when the signal pressure is greater than the set pressure, the signal pressure pushes the upper diaphragm upwards, and finally the inlet pressure.
 
Hall-type intelligent valve positioner
 
Figure 13 Schematic diagram of the working principle of the air lock valve
  
  The air is discharged from the outlet through the inside of the air lock valve, that is, the inlet and outlet are connected. Conversely, if the signal pressure is lower than the set pressure, the upper diaphragm moves downwards, the passage to the lower diaphragm is cut off, a gap is created between the steel ball and the upper diaphragm, and the air pressure in the upper air chamber of the lower diaphragm is discharged through the gap. As the pressure in the upper air chamber of the lower diaphragm decreases, the push rod connected to the lower diaphragm will also rise, eventually cutting off the passage between the inlet and outlet. The general set pressure is 3kgf/cm?. Adjust according to the actual needs of the site. If the set pressure is too high, please reduce the set pressure.
 
Hall-type intelligent valve positioner
 
1. Flexible and fast ordering service
All customers can obtain the company's product samples free of charge to understand the product performance and make a satisfactory selection;
All customers can order through a 400 toll-free hotline, telex, email, etc. For products with special technical requirements, the company will provide product selection and technical support solutions in the shortest possible time.
2. Timely and efficient in-sales service
The company uses standardized packaging and convenient transportation methods to deliver goods to the user's designated location;
If the user needs, the company has professional personnel to guide the installation and commissioning on site.
3. Lifetime warranty after-sales service
Free three guarantees within the warranty period;
Paid service is provided for life outside the warranty period. The main board, feedback board, HART board, and pneumatic IP module of the product can be repaired or replaced separately to reduce the user's maintenance cost.
4. Regular and careful return visit system
Customers are always God, always the company's friends;
Customer satisfaction is the company's highest interest.
 
Hall-type intelligent valve positioner
 
 
Figure 14 Bingqi Group Xinjiang Jiayu Heng Energy Refining Project Application Site
  
  The 100,000 tons/year BS bright oil project of Xinjiang Jiayu Heng Energy Technology Co., Ltd. is located in the 55th Industrial Park of the Seventh Division of the Xinjiang Production and Construction Corps. The actual investment is 1.08 million yuan. In 2015, Xinjiang Corps Surveying and Design Institute (Group) Co., Ltd. undertook the environmental impact assessment work. During the project implementation, 60 sets of TORLEO intrinsically safe single-acting intelligent valve positioners were ordered, and our company's technical engineers participated in the installation and commissioning of the products throughout the process.