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STDS100 portable ultrasonic flowmeter

NegotiableUpdate on 07/15
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Overview

The installation of ultrasonic flow meters is the simplest and most convenient among all flow meters, as long as a suitable measurement point is selected, the pipeline parameters at the measurement point are input into the flow meter, and then the sensor is fixed on the pipeline

Product Details

Select installation point

§ 1.1Working condition requirements

The installation of ultrasonic flow meters is the simplest and most convenient among all flow meters. Simply select a suitable measurement point, input the pipeline parameters at the measurement point into the flow meter, and then fix the sensor on the pipeline.

Choosing the installation point is crucial for accurate measurement, and the following factors must be considered when selecting the installation point: full pipe, steady flow, scaling, temperature, pressure, interference, etc.

1. Full tube: Choose a material filled with fluid that is uniform and dense 2. Steady flow: The installation distance should be chosen to be greater than upstream10times

Pipe sections that are easy to transmit ultrasonic waves, such as vertical pipe sections (fluid oriented) Straight pipe diameter, downstream greater than5There are no bends within the diameter of the double straight pipe

Upward flow) or horizontal pipe segments. The installation point of a uniform straight pipe section with variable diameter should be located away from the valve

Interference sources such as pumps, high-voltage electricity, and frequency converters.

3. Avoid installation at the highest point of the pipeline system or on the self 4. For open or partially filled pipelines, flow meters should

On the vertical channel of the exit (with fluid flowing downwards) Installed onUAt the section of the pipe.

5. The temperature and pressure at the installation point should be within the working range of the sensor.

6. Fully consider the scaling condition on the inner wall of the pipe: even if a pipeline without scaling is selected for installation, if it cannot meet the requirements, scaling can be considered as lining for better measurement accuracy

7. Two sensors must be installed in the horizontal direction of the pipeline axis and at a horizontal position on the axis±45°Install within the range to prevent phenomena such as incomplete pipes, bubbles, or sedimentation in the upper part, which may affect the normal measurement of the sensor. If the installation location is limited by space and cannot be installed horizontally symmetrically, sensors can be installed vertically or at an angle while ensuring that there are no bubbles in the upper part of the pipe.

Example of probe installation point

§ 1.2Construction requirements for installing sensors in instrument wells

If the on-site sensor needs to be installed in the instrument well, there must be a certain installation space for people to work upright, that is, the distance between the pipe wall and the wall must be at least550mmAbove, that is, the widthW>(D+550×2mmCement pipelineW>(D+700×2mmAxial width of instrument wellLD+1200mmWhen installing sensors, avoid flanges, welds, and reducers, and try to install them in a horizontal position along the pipeline axis as much as possible±45°Within the range, then ground the host casing.

Installation measurement

§ 2.1power supply

handheld/The portable ultrasonic flowmeter (energy meter) uses a built-in rechargeable nickel hydrogen battery for operation, which can work continuously after being fully charged15-20About an hour; Continuous measurement can be achieved using an external charger.

The charging method adopts intelligent charging. The operator can insert one end of the equipped power cord into the charging port and connect the other end to a power socket to complete the charging operation.

Indicator light status

Status Description

The red indicator light is always on

Charging

The blue indicator light is constantly on

The battery is fully charged

§ 2.2power on

handheld/After the portable ultrasonic flowmeter (energy meter) is powered on, the self diagnostic process is first run. If there is a fault, the corresponding error message is displayed (see the fault finding section). After diagnosis, the machine will operate according to the parameters entered by the user last time.

If it is the first time using or installing at a new installation point, you need to input the parameters of the new installation point. Any parameter entered by the user is recorded inRAMInternally, power loss will result in loss,If permanent storage is required,Please enter26Number menu selection1Curing parameters.

When the user changes the parameters, the machine will automatically recalculate and adjust according to the new parameters entered by the user. Ultrasonic flow meters are capable of completing all tasks simultaneously, regardless of which display window they are on. Measurement, output, and other tasks continue as usual.

The ultrasonic flowmeter automatically enters the display window it was in before the last power outage after each power on.

§ 2.3Quickly complete initial setup

The ultrasonic flowmeter needs to input the following parameters before measurement:

  1. type inM 1 1 enter11Enter the outer diameter of the tube in the window and typeENT Key;

  2. type in - enter12Enter the thickness of the pipe wall in the window and typeENT Key;

  3. type in - enter14Number WindowENT + perhaps - After selecting the pipe material, type inENT Key;

  4. type in - enter16Number WindowENT + perhaps - After selecting the lining material, type inENT Key;

  5. type in - enter18Number WindowENT + perhaps - After entering the thickness of the lining material, type inENT Key;

  6. type in - enter20Number WindowENT + perhaps - After selecting the fluid type, type inENT Key;

  7. type in - enter23Number WindowENT + perhaps - After selecting the sensor type, type inENT Key; (See installing sensors for details)

  8. type in - enter24Number WindowENT + perhaps - After selecting the installation method, type inENT Key;

  9. type in - enter25Number WindowENT Install the sensor according to the displayed installation distance and the installation method selected in the previous step.

  10. M 4 0 Damping coefficient. (Default)10Second, generally no changes are needed)

  11. M 4 1 Low flow rate cutting treatment. (Factory default value)0.03m/sIn general, no changes are required

  12. M 2 6 , enter”26“Window number, + perhaps - select“1Solidify parameters and always use them, then type inENT Key (this operation is very important).

  13.type inM 9 0 enter90Window number, check signal strength and signal quality, minimum60.0Above, the larger the better, below60Unable to guarantee normal operation;

  14. type inM 9 1 enter91Window number, check the signal transmission time ratio. Generally, it is required to100±3Within;

  15. type inM 0 8 enter08Window number, check the machine's working status, display*RThe signal is normal;

16. type inM 0 1 enter01The window displays the measurement results;

§ 2.4Install sensors

Before installation, the dense part of the pipe should be selected for sensor installation. Then, the area outside the pipe where the sensor is to be installed should be cleaned, and rust and paint should be removed. If there is a rust proof layer, it should also be removed. It is best to use an angle grinder to polish it, and then use a clean cloth dipped in acetone or alcohol to wipe off oil and dust. Then, apply enough coupling agent to the pipe wall around the center where the sensor is to be installed. Finally, press the sensor tightly against the pipe wall and follow the instructions24Installation method displayed in the menu(3.2.1.1There is a detailed introduction)reach25The installation distance displayed in the menu should be bundled properly. Be sure not to have air bubbles or gravel between the attached sensor and the pipe wall.

 

 § 2.4.1Sensor Introduction

sensor

measuring range

temperature range

M23Menu probe options

L-1 (Standard small external clip

DN15~DN100mm

0~90℃

8.standardHSSmall bracket sensingimplement

L-2(Standard medium-sized external clamp)

DN50~DN700mm

0~90℃

9.standardHMMid bracket sensor

GL-1 (High temperature small external clamp

DN15~DN100mm

0~160℃

8.standardHSSmall bracket sensor

GL-2(High temperature medium-sized external clamp)

DN50~DN700mm

0~160℃

9.standardHMMid bracket sensor

GZ-1(High temperature small bracket)

DN15~DN100mm

0~160℃

8.standardHSSmall bracket sensor

GZ-2(High temperature medium-sized bracket

DN50~DN700mm

0~160℃

9.standardHMMid bracket sensor

 § 2.4.2Sensor wiring

Handheld/portable ultrasonic flowmeter (energy meter) sensors use different colors to distinguish between upstream and downstream sensors, with red connecting to upstream sensors and blue connecting to downstream sensors. Please note.

 § 2.4.3Sensor installation method

The installation methods of external clamp sensors includeVLaw andZThe law. (See installation diagram for details)

In general, the installation diameter isDN15-DN200mmPriority can be given to selecting within the scopeVThe law, inVWhen the signal cannot be detected by the method or the signal quality is poor, it can be selectedZLaw, the diameter of the pipe isDN200mmWhen measuring cast iron pipes or above, priority should be given to selectingZThe law.

Vlaw

Normally,VFa is a relatively standard installation method that is easy to use and accurate in measurement. During installation, the two sensors are aligned horizontally, with their center line being level with the pipeline axis. The range of measurable pipe diameters is approximatelyDN15-DN200mm.

Zlaw

ZLaw is the most commonly used installation method, characterized by direct transmission of ultrasonic waves in pipelines without reflection (known as single acoustic path), and minimal signal attenuation loss.

ZThe range of measurable pipe diameters is100mm-6000mmWhen installing on site, it is recommended to200mmAll the above pipelines should be selectedZThe signal measured in this way is the largest.

matters needing attention:

1. During installation, the pipeline area where the sensor is to be installed must be cleaned thoroughly to expose the original luster of the metal;

2. The shielding wire of the ultrasonic signal cable can be suspended without connection, and should not be short circuited with the positive and negative poles (brown and blue wires);

3. After the sensor is wired, it must be filled with sealant (silicone) to prevent water from entering;

4. After filling the sensor with sealant and covering it, the shielded cable inlet hole of the sensor must be tightened and locked to prevent water from entering;

5. When bundling sensors, the fixture should be attached(The stainless steel strip is fixed at the center of the sensor to ensure uniform force distribution and prevent sliding;

6. The contact area between the sensor and the pipeline should be coated with sufficient coupling agent or silicone to prevent air, dust, or rust from entering and affecting the transmission of ultrasonic signals.

 § 2.5Check installation

Checking installation refers to checking whether the sensor is installed properly and whether it can receive correct, strong enough ultrasonic signals that can make the machine work normally, in order to ensure the long-term reliable operation of the machine. By checking the received signal strength, total transmission time, time difference, and transmission time ratio, it can be determined whether the installation point is optimal.

The quality of installation directly affects whether the flow value is accurate and whether the flowmeter can operate reliably for a long time. Although in most cases, measuring results can be obtained by simply coating the sensor with coupling agent and attaching it to the outside of the pipe wall, the following checks still need to be performed to ensure the best measurement results and ensure the long-term reliable operation of the flowmeter.

 

§ 2.5.1Signal strength

Signal strength(M90The middle display refers to the strength of the signals received by the probes in both upstream and downstream directions. Use of ultrasonic signal strength00.0~99.9The number represents the relative signal strength.00.0Indicates that no signal is received;99.9Indicates the maximum signal strength.

During installation, try to adjust the position of the sensor and check if the coupling agent is sufficient to ensure maximum signal strength. The condition for the system to function properly is that the signal strength in both directions is greater than60When the signal strength is too low, the installation position, spacing, and pipeline of the sensor should be rechecked for suitability or replacedZLegal installation. In general, the stronger the signal strength and the more stable the measurement value, the more reliable it can operate for a long time.

 

§ 2.5.2Signal quality(QValue)

Signal Quality AbbreviationQValue(M90Middle display refers to the quality of the received signal.MHC-3000Series use00-99The number represents signal quality.00Indicating the worst signal,99The signal is the best, generally requiring it to be within60above.

The reasons for poor signal quality may be high interference, poor sensor installation, or the use of poor quality, non specialized signal cables. In general, the sensor should be repeatedly adjusted to check if the coupling agent is sufficient until the signal quality is maximized.

 § 2.5.3Total transmission time and time difference

WindowM93The displayedTotal transmission time and time differenceIt can display whether the installation is appropriate, because the measurement calculation inside the flowmeter is based on these two parameters, so whentime differenceWhen the reading fluctuates too much, the displayed flow rate and velocity will also jump significantly. This situation indicates poor signal quality, which may be due to poor pipeline conditions, improper sensor installation, or incorrect parameter input. Under normal circumstances, the fluctuation of time difference should be less than±20%However, when the pipe diameter is too small or the flow rate is very low, the fluctuation of time difference may be slightly larger.

 § 2.5.4Transmission time ratio

The transmission time ratio is used to confirm whether the sensor installation spacing is correct. When installed correctly, the transmission ratio should be100±3.The transmission time ratio can beM91View in the middle.

When the transmission ratio exceeds100±3When determining the range, it is necessary to check whether the input parameters (pipe outer diameter, wall thickness, pipe material, lining, etc.) are correct, and whether the installation distance of the sensor is consistent withM25The data displayed in is consistent, whether the sensor is installed on the same axis of the pipeline, whether there is too thick scaling, and whether the pipeline at the installation point is elliptical deformed.

 § 2.5.5Precautions during installation

  1)The input pipeline parameters must be correct and consistent with the actual situation, otherwise the flowmeter cannot work properly.

  2)When installing, use enough coupling agent to stick the sensor to the pipeline wall. While checking the signal strength and signal quality values displayed by the host, slowly move the sensor near the installation point until the strongest signal and maximum signal quality value are received. The larger the diameter of the pipeline, the greater the range of sensor movement. Then confirm if the installation distance is consistent withM25Is the installation distance of the given sensors consistent, and are the sensors installed on the same straight line as the pipeline axis. Pay special attention to pipes made of rolled steel plates, as these pipes are irregular. If the signal strength is always00.0The words indicate that the flowmeter did not receive ultrasonic signals. Check whether the parameters (including all parameters related to the pipeline) are entered correctly, whether the installation method of the sensor is selected correctly, whether the pipeline is too old, whether its lining is too thick, whether there is fluid in the pipeline, whether it is too close to the valve elbow, whether there are too many bubbles in the fluid, etc. If it is not for these reasons, the signal cannot be received, so we have to try another measurement point or choose a plug-in sensor.

  3)Confirm whether the flowmeter is working properly and reliably: the higher the signal strength, the better the signal qualityQThe higher the value, the higher the credibility of the displayed flow value, and the more reliable the flow meter can work for a long time. If the environmental electromagnetic interference is too large or the received signal is too low, the reliability of the displayed flow value will be poor, and the possibility of long-term reliable operation will be small.

4)At the end of installation, the instrument should be powered on again and the results checked for accuracy.

§ 2.6Introduction to Handheld Function Wiring

Three Menu List

Traffic volume Accumulated display

00

Display instantaneous flow rate/Net cumulative amount

one position set up place

30

Choose the Public English Unit System

01

Display instantaneous flow rate/Instantaneous velocity

31

Select instantaneous flow unit

02

Display instantaneous flow rate/Positive cumulative quantity

32

Select cumulative traffic unit

03

Display instantaneous flow rate/Negative cumulative quantity

33

Select accumulator multiplier factor

04

Display date and time/Instantaneous flow rate

34

Net accumulator switch

05

Display heat flow rate/calories

35

Positive accumulator switch

06

Display temperature inputT1T2

36

Negative accumulator switch

07

Display analog inputAI3AI4

37

Restore factory parameter settings and reset accumulator to zero

08

Display system error codes

38

Manual (button controlled start stop) accumulator

09

Display today's net cumulative traffic

39

Language selection for operation interface

at the beginning of beginning set up place

10

Enter the outer circumference of the pipeline

3.

Set localLCDDisplay mode

11

Input the outer diameter of the pipeline

select select set up place

40

Input damping coefficient

12

Input pipe wall thickness

41

Enter low flow rate cut-off value

13

Inner diameter of input tube

42

Set static zero point

14

Select pipeline material type

43

Clear zero point setting, restore original value

15

Input the sound velocity of the pipe material

44

Manually setting the zero offset value

16

Select lining material type

45

Instrument coefficient, scale factor

17

Input the sound velocity of the lining material

46

Enter the network identification address code

18

Enter lining thickness

47

Password protection operation

19

Input the absolute roughness of the inner wall

48

Linearity Line Correction Data Input

20

Select fluid type

49

Network online communication tester

21

Input fluid sound velocity

Timing Output

50

Setting of data timed output options

22

Input fluid viscosity

51

Timed output time setting

23

Select sensor type

52

Printing data flow control

24

Select sensor installation method

AI5

set upplace

53

Display analog inputAI5

25

Display sensor installation spacing

54

OCTPulse width setting(6-1000

26

Fixed line parameters and settings

Output output settings

55

Selection of current loop output mode

27

Installation point installation parameter access

56

Current loop4mAperhaps0mAOutput corresponding value

28

Maintain last data when setting signal degradation

57

Current loop20mACorresponding value during output

29

Set the signal strength during air traffic control

58

Current loop output inspection

transport enter transport go out set up place

59

Current output value of the current loop

transport enter transport go out set up place

78

Set collector open circuit(OCT)Output options

60

Date, Time, and Settings

79

Set the relay (orOCT2)Output options

61

Software version number and electronic serial number

80

Select quantitative (batch) controller control signal

62

Set serial port parameters

81

Quantitative flow (batch) controller

63

Communication protocol selection (including compatible protocols)

Select)

82

Day Month Year Accumulator

64

analog inputAI3Corresponding range of values

83

Automatic power-off flow switch

65

analog inputAI4Corresponding range of values

heat measure measure measure

84

Select heat units

66

analog inputAI5Corresponding range of values

85

Select temperature signal source

67

Set the frequency output signal frequency range

86

Thermal capacity

68

Set the frequency signal output lower limit flow rate

87

Heat accumulator switch

69

Set the frequency signal output upper limit flow rate

88

Heat accumulation multiplication factor

70

Display backlight control

89

Display current temperature difference and set temperature sensitivity

71

Display contrast control

Diagnosis break

90

Display signal strength and signal quality

72

Work timer (can be reset to zero)

91

Display signal transmission time ratio

73

set up#1Alarm lower limit flow rate

92

Display the calculated fluid sound velocity

74

set up#1Alarm upper limit flow

93display

Display the total transmission time/time difference

75

set up#2Alarm lower limit flow rate

94

Display Reynolds number and its pipeline coefficient

76

set up#2Alarm upper limit flow

95

Display the accumulation of positive and negative heat and activate the cycle display function

77

Buzzer setting options

Four measurement data processing

§ 4.1Processing methods for measurement data

There are multiple ways to process the data measured by handheld/portable ultrasonic flow meters (energy meters), which can be used forM52Set the data flow control in the menu.

name call

Handheld ultrasonic flowmeter

(Energy meter)

Portable ultrasonic flowmeter

(Energy meter)

Output data flow controlM52

Output to internal serial bus

ExternalSDCard memory

24Column Character Thermal Printer

Output to serial port(RS232/RS485)

RS485Interface upload

RS485Interface upload

Note:judgeSDThe working status of the card data storage device

Indicator light status

SDCard working status

Not lit

not haveSDCard, orSDCard not recognized

Light

SDCard not recognized orSDCard not formatted

Shiny

SDThe card is working properly and data is being written

§ 4.2Printing of measurement data

Handheld ultrasonic flowmeter (energy meter) is randomly equippedSDCard storage function, portable ultrasonic flowmeter (energy meter) equipped with thermal printer, whenM52Select '0 output to internal serial bus' from the menu, and the data will be automatically printed toSDCard or thermal printing paper. There are two printing methods, one is instant printing and the other is timed printing.

1. Instant printing

useM99The menu allows for instant printing of the screen, which means printing whatever is displayed on the screen.

Ø M96Menu: Before removing the printing paper, please follow this operation for paper feeding;

Ø M97Menu: Print initial settings, includingM11~M25The content of the calculation setting is used to verify whether the initial parameters are set correctly

Indeed;

Ø M98Menu: Print measurement self diagnosis content, includingM90~M94The content set in is used to detect whether the installation and measurement are correct

correct.

2. Timed printing

The operation of timed printing is divided into two steps, first inM50Open the timed print output option in the menu, and then proceed toM51Set the scheduled printing time in the menu.

Ø Timed Print Output Options: InM50In the menu, set the timed print output option to on(ON), press ENT You can enter to play

Printing option settings, in total22In the timed printing content, select 'On'(ON)The options can be listed

Enter the printed content; Select Close(OFF)The content will not be printed.

Ø Timed printing time setting:M51In the menu, pressENT You can enter the printing time setting, where the printing time is measured in hours, minutes

Seconds, three parameters need to be set: start time, interval time, and print count.

Start time setting:If timing starts from now, press . Set hours, minutes, and seconds. if needed

Starting from the set time for printing, simply enter the start time. (Note that entering the start time,

It must be done after the current time, so when using this feature, it is necessary toM60Time calibration in the menu

Yes, to avoid unsuccessful timed printing. )

Interval time setting:The units are hours, minutes, and seconds, and the minimum interval should not be less than5Second, to avoid hitting

The printer cannot keep up.

Print at this time setting: 0~9999If this option is selected, the printer will stop working when the set number of printing times is reached

Make it.

Five fault analysis

Ultrasonic flowmeter/The heat meter is designed with a comprehensive self diagnostic function. Display the discovered issues in the form of code in chronological orderLCDThe upper right corner of the monitor.M08The menu can display all existing fault problems in sequence.

Ultrasonic flowmeter/A heat meter is usually checked for hardware faults every time it is powered on, and some hardware faults can be detected during normal operation. The displayed errors are divided into two categories:One type is circuit hardware error information. The possible problems and solutions are shown in the table1As shown. If a problem is found during the power on self-test, after entering the measurement mode, the upper left corner of the display will show“* F”You can power on again, check the displayed information, and take specific measures according to the table below. If the problem persists, you can contact the company.

The other type is about measurement error information, as shown in the table2.

The problems and solutions are given in the following two tables.

outside1 Hardware power on self-test information and countermeasures

LCDdisplay information

primary follow

separate decide do law

programROMThe checksum is incorrect

systemROMIllegal or incorrect

Contact the manufacturer

Data storage read and write errors

Memory parameter data is incorrect

Power on again/Contact the manufacturer

System data storage error

System storage data area error

Power on again/Contact the manufacturer

Measurement circuit hardware error

sonCPUCircuit fatal error

Power on again/Contact the manufacturer

Frequency error! Check the crystal oscillator

The system clock is incorrect

Power on again/Contact the manufacturer

Date and time error

The system date and time are incorrect

Reset date and time

Strange phenomena such as the monitor not displaying, displaying randomly, or working abnormally.

Poor contact of the cable connecting the panel

Check if the cable connecting the panel is in good contact. This state does not affect normal measurement

Button unresponsive

Poor contact of connectors

ditto

2 Reasons and solutions for error codes during work

code

M08Menu corresponding display

primary follow

separate decide do law

*R

The system is working normally

* The system is normal

*J

Measurement circuit hardware error

* hardware failure

* Contact the company

*I

No received signal detected

* no service

* The sensor is tightly attached to the pipeline,Adequate coupling agent

* Poor contact between sensor and pipeline or insufficient coupling agent

* The surface of the pipeline is clean and free of rust,No paint,Non corrosive eyes

* Inappropriate installation of sensors

* Check if the initial parameters are set correctly.

* Excessive scaling on the inner wall

* Remove scaling or replace test points

* New lining replacement

* Wait for the lining to solidify and saturate before testing.

*H

Low received signal strength and poor quality

* Signal low

* The signal quality is too poor

* The solution is as above.

*E

The current loop current is greater than20milliampere

(It does not affect normal measurement. If current output is not used, it can be ignored.)

* 4-20mACurrent loop output overflow exceeds100%.

* The output setting of the current loop is incorrect.

* Recheck the settings or confirm if the actual traffic is too high.

*Q

Frequency output higher than the set value (does not affect normal measurement),If frequency output is not used, it can be ignored. )

* Frequency output overflow120%,

* The frequency output setting is incorrect or the actual flow rate is too high.

* Recheck the frequency output (seeM66- M69Window usage instructions: Set or confirm if the actual traffic is too large.

*F

see table1As shown

* Problem discovered during power on self-test

* Permanent hardware malfunction

* Try powering on again and observe the information displayed on the monitor. Follow the instructions in the previous table.

*G

Adjusting gain is in progress>S1

Adjusting gain is in progress>S2

Adjusting gain is in progress>S3

Adjusting gain is in progress>S4

*If the machine stopsS1perhapsS2Up or only onS1S2Switching between them indicates that the received signal is too low or the waveform is poor.

*K

Pipeline empty, M29Menu settings

There is no fluid in the pipeline or the settings are incorrect

If there is indeed fluid in the pipeline, thenM29Enter a value of 0 in the menu