Introducing: More Cost-effective ADCP Technology from China Sonar

China Sonar has launched a series of titanium alloy ADCPs. At their respective frequencies, they are the smallest, lightest, and most cost-effective. The PandaADCP series includes PandaADCP-DR-600K, PandaADCP-SC-600K, PandaADCP-DR-300K, PandaADCP-SC-300K, PandaADCP-DR-75K-phased, PandaADCP-SC-75K-phased  etc. . They are cable-powered real-time systems. These ADCPs are integrated into capsules suitable for depths ranging from 200 meters to 6000 meters and operate at different frequencies.

1.Product Highlights

More Reliable Material

All series are standardly equipped with titanium alloy, ensuring durability and stability in various underwater environments.

Substitute for Similar Products

Benchmarked against industry-leading ADCP products, the PandaADCP series can be directly substituted, providing comparable quality and performance.

High Precision

The precision of these ADCPs is comparable to that of industry-leading products, enabling accurate measurements.

High Reliability

With a continuous working time of not less than 180 days, they can operate reliably for a long time.

Small Size

The volume of the PandaADCP series is much smaller than that of similar products with the same performance.

Small Blind Area

They can be easily applied to various suddenly changing underwater environments.

Strong Compatibility

Compatible with the communication protocol of similar products, facilitating seamless integration.

Convenient Operation

They can work when powered on and can also run automatically in set mode, which is more convenient.

High Cost Performance

They are inexpensive and easy to use, and these ADCPs have extremely high cost performance.

Including Water Profile, Bottom Track, and Water Track

Comprehensive measurement capabilities ensure accurate data collection.


2. Applications

2.1 OCEANOGRAPHIC

Ocean Observations

Ocean observations use various techniques to understand the marine environment and are crucial for scientific research, environmental management, and industrial activities.

It includes monitoring currents, waves, temperature, salinity, and other parameters for a comprehensive approach.

Deep and Mid-Water Depth Moorings

Deep and mid-water moorings are essential for oceanographic research, measuring ocean currents over long periods.

Moored ADCPs provide data on seasonal, annual, and decadal variability for studying ocean circulation.

Oceanographic Research Vessels

Oceanographic research vessels play a vital role in exploring the oceans with advanced instruments.

They measure ocean currents and biomass motility, and enable experiments and sample collection.

Autonomous Underwater Vehicles (AUVs) and Gliders  

AUVs and gliders are used for oceanographic research and monitoring, collecting data over extended ranges.

They can operate in challenging environments and provide valuable information for various applications.

Academic Coastal Oceanography 

Academic coastal oceanography focuses on coastal processes and uses current and wave measurements.

It helps inform coastal management strategies and protect coastal ecosystems.

2.2 COASTAL 

Biological  Oceanographic

Biological oceanography examines the relationship between the ocean and marine life.

Wave and current measurements are used for data collection and analysis of coastal biological conditions.

Coastal and Ocean Engineering

Coastal and ocean engineering involves designing structures interacting with the marine environment.

Current and wave measurements are essential for design and monitoring of coastal projects.

Environmental Management

Environmental management in fisheries and aquaculture requires understanding the ocean environment.

Current and wave data are used for monitoring and ensuring sustainable development.

Fisheries and Aquaculture

Fisheries and aquaculture use current and wave data for site assessment and monitoring.

It ensures sustainable industry development.

Navigation Safety

Navigation safety depends on oceanographic knowledge and uses current and wave measurements.

It helps mariners avoid hazards.

2.3 ENERGY

Deepwater Oil & Gas

Deepwater oil and gas uses current and wave measurement for operations and detecting phenomena.

Real-time measurement is crucial for decision making.

Renewable Energy

Renewable energy sources use current and wave measurement for selection, design, and monitoring.

Environmental studies are necessary for sustainability.

Cable and Pipe Laying Vessel

Cable and pipe laying vessels need current profiles for operations and accurate installation.

Real-time measurement is essential.

Networks

Networks provide comprehensive ocean observations with sensors and platforms.

They enable monitoring and data sharing for early warning.

in News
Jack Law October 24, 2024
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