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Industrial Vortex Flowmeter, High Precision Steam Gas Liquid Flow Meter for Pipeline Industrial Working Condition

Regular price $495.00 USD
Regular price Sale price $495.00 USD
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  • sales@nuoying-instru.com
  • +86 18210049286
  • +86 18210049286
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Product introduction

Technical specifications

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Working principle

The Vortex Flowmeter operates based on the Karman Vortex Street principle. When a fluid (gas, liquid, or steam) flows through a bluff body (built-in in the flow meter) in the pipeline, alternating vortices are generated on both sides of the bluff body. These vortices are shed periodically, and the frequency of vortex shedding is directly proportional to the average flow velocity of the fluid within a certain flow range.
The built-in sensor of the flow meter detects the pressure or vibration changes caused by the vortex shedding, converts the vortex frequency into an electrical signal, and then processes the signal through the intelligent circuit to calculate the actual flow rate of the fluid. This working principle ensures stable and accurate measurement without being affected by fluid density, viscosity, or temperature within a certain range, making it suitable for various industrial fluid measurement scenarios.

Design features

1. No Moving Parts Design: Adopts a structure without any moving components, effectively reducing mechanical wear, blockage and failure risks, ensuring long-term stable operation and low maintenance cost.
2. Robust & Durable Construction: Made of high-quality industrial materials, with strong anti-corrosion, anti-high temperature and anti-interference performance, suitable for harsh industrial working conditions.
3. Compact & Easy Installation: Small in size and light in weight, designed to fit various pipeline sizes, enabling quick and convenient on-site installation without complicated auxiliary tools.
4. Intelligent Optional Design: Equipped with optional digital display, signal output and remote control functions, easy to integrate with industrial control systems for intelligent monitoring and management.
5. Low Pressure Loss Design: Optimized flow channel design minimizes pressure loss during fluid flow, helping to save energy and improve the overall efficiency of the pipeline system.

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