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Product Overview
The ZZYS30 vortex flowmeter from Shandong Zhongziyi Intelligent Technology Co., Ltd. is a sophisticated velocity flow instrument, engineered for exceptional versatility across numerous applications.
Designed to accurately measure, monitor, and control the flow of liquids, steam, and most gases, it stands as an indispensable tool for various industries.
Crafted with a revolutionary structure, it exhibits outstanding resistance to mechanical vibrations, impacts, and contamination, ensuring enduring reliability.
Featuring a design devoid of moving parts, it guarantees no wear and tear, eliminates the need for mechanical maintenance, offers low pressure loss, delivers stable performance, and ensures high accuracy.
The simple installation process and customizable sensor and signal converter configurations make it extremely user-friendly.
Product Features:
Broad application spectrum: Perfect for measuring the flow of steam, gas, and liquids.
Superior vibration performance: Zero drift at zero point, effectively mitigating the impact of external vibrations.
The ZZYS30 offers integrated temperature and pressure options, significantly reducing installation costs for users.
Flexible output options include (0-5) kHz frequency output, (4-20) mA output, or advanced HART communication/Modbus protocol communication.
Supports parameter setting via Bluetooth communication. It is wear-resistant, dirt-resistant, requires no mechanical maintenance, boasts a long service life, and is explosion-proof for enhanced safety.
Technical Index
Measurement Medium: Gas, Liquid, Steam
Connection Method: Flange Clamp Type, Flange Type, Insertion Type
Caliber Specifications:
Flange Clamping Type: 25, 32, 50, 80, 100
Flange Connection Type Caliber Selection: 100, 150, 200
Flow Measurement Range: Normal Measurement Flow Velocity Range - Reynolds Number 1.5×104~4×106; Gas: 5~50m/s; Liquid: 0.5~7m/s
Normal Measurement Flow Range for Liquid:
Gas Flow Measurement Range: See Table 2
Steam Flow Range: See Table 3
Measurement Accuracy: 1.0 Class, 1.5 Class
Measured Medium Temperature:
Room Temperature: -25ºC~100ºC; High Temperature: -25ºC~150ºC, -25ºC~250ºC. Output Signal: Pulse Voltage Output Signal, High Level: 8~10V, Low Level: 0.7~1.3V. Pulse Duty Cycle: Approx. 50%, Transmission Distance: 100m
Pulse Current Remote Transmission Signal: 4-20mA, 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: At Shandong Zhongziyi Intelligent Technology Co., Ltd., we take immense care in packing and shipping your High Accuracy Flowmeter for Liquid Gas Steam. Our rigorous packing standards guarantee product integrity, while our efficient shipping ensures timely deliveries, regardless of your location.
We will deliver your ordered product at the earliest date as required: Shandong Zhongziyi Intelligent Technology Co., Ltd. is committed to meeting your deadlines. We prioritize processing and dispatching your High Accuracy Flowmeter for Liquid Gas Steam promptly, ensuring it reaches you as quickly as possible.Installation Requirements
Piping Condition
The installation of the vortex flowmeter necessitates having a specific length of straight pipe section before and after the device. The typical requirements are as follows (D represents the pipe diameter):
1.
For optimal performance, the sensor should be installed on a horizontal, vertical, or inclined pipe (with liquid flowing from bottom to top) that matches the sensor's diameter. Ensure a straight pipe length of 15-20D upstream and 5-10D downstream.
2.
The pipe adjacent to the liquid sensor must be filled with the liquid being measured.
3.
Avoid installing the sensor on pipes with strong mechanical vibrations.
4.
The inner diameter of the straight pipe should closely match the sensor’s diameter. If not identical, use a marginally larger pipe with an error ≤3% and not exceeding 5mm. Avoid areas with strong electromagnetic interference, limited space, or difficult maintenance..
5.
Horizontal pipeline installation is most common. For gas flow with trace liquids, install the sensor at a high point. For liquid flow with trace gases, install the sensor at a low point in the pipeline.
6.
In vertical pipelines, for gas flow, install the sensor with no flow direction restriction. If the gas contains liquids, flow should be upwards. For liquid flow, ensure the liquid flows from bottom to top to avoid additional weight on the probe.
7.
Side installation on horizontal pipelines is suitable for fluids, especially superheated steam, saturated steam, and low-temperature liquids. Side mounting is preferable as it reduces temperature effects on the amplifier.
8.
Inverted sensor installation on horizontal pipelines is generally discouraged and unsuitable for general gases or superheated steam. However, it can be used for saturated steam and high-temperature liquids, and situations requiring frequent pipeline cleaning.
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.
Pressure and temperature measurement points should be strategically located. The pressure point should be 3-5D downstream, and the temperature point 6-8D downstream of the sensor.