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Comprehensive Product Overview
The ZZYS30 Vortex Flowmeter: A versatile velocity flow instrument ideal for myriad applications.
Perfect for accurately measuring, monitoring, and controlling the flow of liquids, steam, and various gases.
Boasts a robust design that withstands mechanical vibrations, impacts, and contamination effortlessly.
Engineered with no moving parts, ensuring no wear and tear, maintenance-free operation, minimal pressure loss, reliable performance, and superior accuracy.
This user-friendly device is easy to install, with customizable sensor and signal converter matching.
Key Product Features:
Versatile across diverse applications, suitable for steam, gas, and liquid flow measurement.
Outstanding vibration resistance, zero point stability, eliminating external vibration interference.
ZZY30: Offering temperature and pressure integrated options to cut down on installation costs.
Flexible outputs: (0-5) kHz frequency, (4-20) mA, HART communication, or Modbus protocol.
Remote parameter setting via Bluetooth, wear-resistant, dirt-resistant, maintenance-free, long lifespan, explosion-proof for enhanced safety.
Comprehensive Technical Index
Measurement Medium: Versatile for Gas, Liquid, and Steam
Connection Method: Flange Clamp Type, Flange Type, Insertion Type
Caliber Specifications
Flange Clamping Type: Available in 25, 32, 50, 80, 100.
Flange Connection Type: Caliber Options 100, 150, 200
Flow Measurement Range: Normal Flow Velocity Range, Reynolds Number 1.5×104~4×106; Gas: 5~50m/s; Liquid: 0.5~7m/s.
Normal Measurement Flow Range: Liquid,
Gas Flow Measurement Range: Refer to Table 2.
Steam Flow Range: Refer to Table 3.
Measurement Accuracy: Class 1.0, Class 1.5
Measured Medium Temperature:
Room Temperature: -25ºC~100ºC, High Temperature: -25ºC~150ºC, -25ºC~250ºC Output Signal: Pulse Voltage Output, High Level: 8~10V, Low Level: 0.7~1.3V, Duty Cycle: ~50%, Transmission Distance: 100m
Pulse Current Remote Transmission Signal: 4-20 mA, Transmission Distance: 1000m Instrument Use Environment: Temperature: -25ºC~+55ºC, Humidity: 5~90% RH50ºC. Material: Stainless Steel, Aluminum Alloy
Power Supply: DC24V or Lithium Battery 3.6V
Explosion-Proof Grade: Intrinsically Safe iaIIbT3-T6, Protection Level: IP65
PACKING & SHIPPING
We will ensure that your order is delivered at the earliest possible date as per your requirements.Installation Requirements
Piping Condition
The installation of the vortex flowmeter requires a specific straight pipe section before and after the sensor. Here are the common scenarios (D represents the pipe diameter):
1.
Install the sensor on a horizontal, vertical, or inclined pipe (with liquid flowing from bottom to top) with the same diameter as the sensor. Ensure that there is a straight pipe section of 15-20D upstream and 5-10D downstream of the sensor.
2.
Ensure the pipe near the liquid sensor is filled with the liquid to be measured.
3.
Avoid installing the sensor on pipes with strong mechanical vibrations.
4.
The inner diameter of the straight pipe section should match the sensor diameter. If not, use a slightly larger diameter pipe with a deviation of ≤3% and no more than 5mm. Avoid installing the sensor in areas with strong electromagnetic interference, limited space, or where maintenance is difficult..
5.
For horizontal pipelines, which are the most common for flow sensors, if measuring gas flow with some liquid, install the sensor at the highest point. For liquid flow with some gas, install it at the lowest point.
6.
For vertical pipelines, when measuring gas flow, you can install the sensor on a vertical pipe without worrying about flow direction. If the gas contains some liquid, ensure the flow is from bottom to top. For liquid flow, also ensure the flow is from bottom to top to prevent extra weight on the probe.
7.
Side mounting on horizontal pipelines is suitable for all fluids, especially superheated steam, saturated steam, and low-temperature liquids. Side mounting is preferable if conditions allow, as it reduces temperature impact on the amplifier.
8.
Inverted sensor installation on horizontal pipelines is generally not recommended. It is unsuitable for general gases or superheated steam but can be used for saturated steam and high-temperature liquids or where frequent cleaning is required.
9.
For pipelines with insulation layers, when measuring high-temperature steam, ensure the insulation layer does not exceed one-third of the bracket height.
10.
Selecting pressure and temperature measurement points: If required, the pressure measurement point should be 3-5D downstream of the sensor, and the temperature measurement point should be 6-8D downstream.