ADCP Current Profiler | Real-Time Flow & Discharge Monitoring,
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| Item | FS-ADCP-001 | FS-ADCP-002 | FS-ADCP-003 |
| Acoustic (Broadband Technology) | |||
| Number of Horizontal Transducers | 2 | 2 | 2 |
| Horizontal Transducer Beam Angle | 1 . 1° | 1 . 1° | 2° |
| Number of Vertical Altitude Measurement Transducers | 1 | 1 | 1 |
| Vertical Transducer Beam Angle | 5° | 5° | 5° |
| Velocity Profile Range | 0.5~35 m | 1~120m | 1~350m |
| Velocity Accuracy | ±[0.5% of reading ±2mm/s] | ±[0.5% of reading ±2mm/s] | ±[0.5% of reading ±2mm/s] |
| Velocity Measurement Range | ±5m/s( Default ),±20m/s( Maximum ) | ||
|
Resolution |
1mm/s | 1mm/s | 1mm/s |
| Number of Velocity Measurement Cells | 1~256 | 1~256 | 1~256 |
|
Measurement Cell Size |
0.25~4m | 0.5~4m | 1~8m |
The Horizontal Acoustic Doppler Current Profiler (HADCP) uses advanced acoustic Doppler technology to accurately measure horizontal water velocity profiles, providing reliable flow data for rivers, channels, and water resource monitoring.
With multiple acoustic beams and advanced signal processing algorithms, the system can measure flow velocity distribution over long distances, making it suitable for wide rivers and complex flow environments.
The HADCP enables continuous observation of flow velocity changes, supporting real-time hydrological monitoring, flow analysis, and water resource management.
Using ultrasonic Doppler measurement principles, the system performs flow monitoring without the need for mechanical contact with moving water, reducing maintenance requirements and improving measurement reliability.
Advanced digital signal processing technology provides stable measurements under changing water levels, sediment conditions, and variable flow environments.
Supports integration with RTU terminals, telemetry systems, and cloud platforms for automatic data collection, remote monitoring, and intelligent water management.
Used in natural rivers, streams, and watershed monitoring networks to measure flow velocity distribution and support hydrological analysis.
Applied in irrigation canals, water diversion channels, and drainage systems for continuous flow monitoring and water allocation management.
Provides real-time flow information for flood risk assessment, flood forecasting, and emergency response systems.
Supports smart water management by providing accurate flow data for reservoir operation, water distribution, and resource planning.
Used in bridges, dams, hydropower facilities, and other hydraulic structures for flow assessment and engineering analysis.
Provides reliable flow data for river ecology studies, environmental flow assessment, sediment transport research, and academic investigations.
Applied in urban rivers, drainage channels, and stormwater systems to monitor flow conditions and improve water management efficiency.
The ADCP Series Horizontal Acoustic Doppler Current Profiler is an online flow velocity and discharge monitoring instrument engineered for continuous operation in a wide range of water management and environmental applications. This product page provides an overview of the ADCP Series, its measurement principle, key capabilities, and the value it brings to organizations responsible for flood early warning, water transfer projects, water environment monitoring, smart agriculture, and smart water management systems.
What is an ADCP?
ADCP stands for Acoustic Doppler Current Profiler. It is a widely used technology for measuring water flow velocity in rivers, canals, pipelines, and other open or closed water bodies. The Frankstar ADCP Series is a horizontal profiler, meaning it is designed to measure velocity across a horizontal slice of the water column, making it particularly suitable for fixed, online installations where continuous monitoring is required.
How the ADCP Series Works
The ADCP Series adopts broadband signal processing technology and applies the Acoustic Doppler principle to detect the movement velocity of suspended particles in water. Small particles, sediment, and other matter naturally present in the water reflect acoustic pulses emitted by the instrument. By measuring the frequency shift of the returning echoes, the system calculates the velocity of those particles. Because the particles move with the water, this velocity represents the flow velocity of the water body itself.
This approach allows the instrument to provide accurate, real-time measurements without intruding into the flow or requiring frequent manual intervention. The broadband signal processing enhances data quality by reducing noise and improving resolution under a variety of field conditions.
Key Measurement Outputs
The ADCP Series is designed to deliver a complete set of hydrological data in real time. The instrument provides continuous online output of flow velocity, flow discharge, water level, and temperature. These four parameters are essential for understanding the state of a water body and for making informed operational decisions.
Flow velocity data is fundamental for assessing how fast water is moving at the measurement cross-section. Flow discharge, calculated from velocity and the known geometry of the channel, represents the volume of water passing a point per unit time. Water level measurement provides context on how the depth of the water body changes over time. Temperature data, while often overlooked, is useful for understanding water density, environmental conditions, and for cross-calibrating other sensors.
The ability to obtain all these readings from a single, integrated instrument simplifies system design and reduces the total cost of ownership for monitoring stations.
Designed for Stable, Reliable Performance
The Frankstar ADCP Series is characterized by its stable and reliable measurement performance. It is described as a new-generation product designed for specialized applications, indicating a focus on durability and consistency. For online monitoring systems that operate day and night, often in remote or harsh environments, this stability is critical. Users need to trust that the data stream will continue without drift or interruption, especially during flood events or emergency response situations.
The horizontal configuration makes the instrument easier to mount on riverbanks, bridge pillars, or channel walls, allowing measurement across the channel without obstructing boating traffic or debris flow. This is a notable advantage over in-stream sensors that can be damaged by high flow or become blocked by vegetation and litter.
Applications of the ADCP Series
The ADCP Series is built for a variety of specialized applications, each with distinct data requirements.
Flood early warning systems rely on accurate, real-time flow and water level information to predict rising water and issue alerts. The continuous online nature of this ADCP makes it a suitable core sensor for such systems.
Water transfer projects, such as inter-basin diversions or large municipal supply canals, need precise discharge monitoring to balance supply and demand. The ADCP helps operators track how much water is moving through key sections, supporting equitable and efficient allocation.
Water environment monitoring programs often need to characterize how pollutants or nutrients are transported. Velocity and discharge data, combined with water quality sensors, help create a fuller picture of the aquatic environment.
In smart agriculture, water is a critical input. Monitoring flow in irrigation channels with an ADCP allows farmers and water districts to schedule irrigation more accurately, reduce waste, and manage water rights.
Smart water management initiatives generally integrate real-time sensors, data platforms, and automation. The ADCP Series provides a reliable physical measurement layer that feeds accurate data into supervisory control and data acquisition systems, databases, and decision-support tools.
Why Choose Frankstar Technology
Frankstar Technology is an ocean technology company focused on practical, robust instrumentation for water professionals. The ADCP Series is one component of a broader product line aimed at supporting environmental research, industrial monitoring, and marine operations. For buyers and distributors, choosing a single partner who understands the physical realities of field deployment is essential.
This ADCP is designed with the needs of researchers, offshore operators, environmental monitoring teams, and technical buyers in mind. It is not a laboratory benchtop instrument but a field-ready solution built for horizontal, online measurement. Its real-time data output means it can be integrated into telemetry systems and dashboards without complex post-processing.
Technical buyers evaluating suppliers should consider data quality, long-term stability, and ease of installation. The Frankstar ADCP Series addresses these priorities through its broadband digital design and horizontal profiling approach. For more specific engineering details, drawings, and performance tables, direct consultation with the manufacturer is recommended.
International buyers and distributors looking for reliable current profiling technology will find the Frankstar ADCP Series a credible choice. Frankstar supports global end-users with product documentation and responsive inquiries. Whether the project involves flood forecasting, precise water dispatch, or automated irrigation control, this instrument provides the core velocity and discharge data needed.
Buyer Considerations
When selecting an ADCP for a specific site, factors such as channel width, depth, expected flow range, and water turbidity will influence the ideal configuration. While the ADCP Series handles a broad range of conditions, no single profiler can suit every location perfectly. It is important to work with the manufacturer or a local distributor to verify sensor specifications against your exact requirements.
Also consider the data logging and telemetry interfaces. The ADCP must be compatible with your existing logger, RTU, SCADA, or cloud platform. Frankstar’s engineering team can provide guidance on integration, ensuring that your online monitoring station runs smoothly.
Finally, plan for periodic maintenance and inspection. Any submerged sensor requires routine cleaning and performance verification. The horizontal design reduces debris impact but does not eliminate all maintenance needs. Reliable products come with good support documentation and service plans.
Summary
The Frankstar ADCP Series Horizontal Acoustic Doppler Current Profiler offers a practical solution for continuous, online measurement of flow velocity, discharge, water level, and temperature. Its use of acoustic Doppler broadband technology allows it to measure suspended particle movement and translate that into accurate water velocity readings. Designed for stability and specialized use, this series supports essential applications such as flood early warning, water transfer, environmental monitoring, smart agriculture, and smart water management.
For organizations upgrading their monitoring capabilities or building new hydrological stations, this ADCP presents a dependable, data-rich component that can operate in demanding field conditions. By combining velocity, discharge, level, and temperature in one product, the ADCP Series simplifies installation, reduces total hardware costs, and enables more responsive real-time operational decisions.
If you are evaluating ADCP options for a project, contact Frankstar Technology to discuss your specific application and site requirements. The Frankstar team can provide detailed specifications, installation guidance, and pricing for both end-users and distributors. Begin the conversation today to put reliable, accurate flow data at the center of your water monitoring strategy.