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  • Unmanned Hydrographic Monitoring Aluminum Boats
  • Unmanned Hydrographic Monitoring Aluminum Boats
  • Unmanned Hydrographic Monitoring Aluminum Boats
  • Unmanned Hydrographic Monitoring Aluminum Boats
  • Unmanned Hydrographic Monitoring Aluminum Boats
Unmanned Hydrographic Monitoring Aluminum Boats

Unmanned Hydrographic Monitoring Aluminum Boats

  • 1 - 4 Pieces
    $474,286
  • 5 - 19 Pieces
    $464,286
  • >= 20 Pieces
    $454,286

Customization:

Customized packaging(Min.Order: 1 pieces)
Graphic customization(Min.Order: 1 pieces)

Unmanned Hydrographic Monitoring Aluminum Boats

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Unmanned Hydrographic Monitoring: Equipped with advanced sensors and autonomous navigation systems, the boat specializes in collecting hydrographic data (e.g., seabed topography, water depth, and environmental parameters) for precise mapping and analysis.
  • Real-Time Data Transmission: Integrated radar, communication systems, and navigation consoles enable seamless transmission of data to shore-based stations or satellites, ensuring continuous monitoring and remote operation.

Key features

  • 1. Corrosion-Resistant Aluminum Alloy Hull

  • Material Technology

  • 2. Advanced Autonomous Navigation System

  • Interactive Design

  • 3. Lightweight Design for Enhanced Performance

  • Performance Parameters

  • 4. Modular Deck for Custom Hydrographic Solutions

  • Scenario Solutions

  • 5. Marine-Grade Certification Compliance

  • Certification Standards

Product details

Unmanned Hydrographic Monitoring Aluminum Boats

The Unmanned Hydrographic Monitoring Aluminum Boat combines advanced hydrographic capabilities with durable aluminum alloy construction. Designed for efficiency and precision, it features a streamlined hull for speed, integrated navigation systems, and customizable payload options.

Technical specifications

FeatureSpecificationBenefit
Hull MaterialMarine-grade 5083 aluminum alloyLightweight, corrosion-resistant, and durable
Hull DesignStreamlined aerodynamic shapeReduces drag, enabling speeds up to 35 knots
Deck StructureFlat, reinforced aluminum deckSupports heavy equipment and sensor arrays
Navigation SystemsRadar, GPS, and AIS integrationReal-time tracking and collision avoidance
Safety FeaturesEmergency buoy, fire suppression systemMeets ISO 12217 maritime safety standards

Customization guide

Adjustable payload capacity (up to 500 kg) to accommodate specialized hydrographic sensors or additional batteries for extended missions. Customizable deck layouts to align with research, surveillance, or commercial requirements.

Get inspired

Ideal for marine research institutions, environmental agencies, or commercial operators needing autonomous data collection. Deploy it for bathymetric surveys, pollution tracking, or coastal monitoring in harsh marine environments.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Top Speed25 knots+15% (29 knots)+30% (35 knots)*
Payload Capacity300 kg450 kg600 kg
Sensor IntegrationBasic sonarMulti-beam sonarLiDAR + AI analytics
Autonomy48 hours72 hours96 hours

Supplier's note

  1. Technical Breakthroughs:

    • Aluminum Hull: 20% lighter than steel, reducing fuel consumption while maintaining structural integrity.
    • AI-Powered Sensors: The Pro Model’s LiDAR system offers 3x higher resolution than industry benchmarks.
    • Modular Design: Quick-swappable payloads enable rapid adaptation to missions like oil spill tracking or underwater archaeology.
  2. Version Selection Guide:

    • Base Model: Suitable for coastal monitoring or small-scale surveys requiring cost-effective solutions.
    • Advanced Model: Ideal for research institutions needing mid-range autonomy and multi-beam sonar for detailed seabed mapping.
    • Pro Model: Best for commercial operators or deep-sea missions demanding ultra-long autonomy and high-resolution data (e.g., offshore drilling surveys).

With its aluminum alloy construction, you can operate in corrosive marine environments without compromising performance. The Pro version’s 35-knot speed, paired with LiDAR, enables rapid response to emergencies or time-sensitive surveys.

Frequently asked questions

  • Which unmanned hydrographic monitoring boat model is best for coastal surveys?

  • How to maintain the aluminum alloy hull of unmanned hydrographic boats?

  • Aluminum alloy vs fiberglass: Which is better for hydrographic monitoring boats?

  • Can I customize the unmanned hydrographic boat for specific research missions?

  • Is the aluminum alloy material of this boat compliant with marine safety standards?

  • Does the unmanned hydrographic boat handle rough sea conditions effectively?

  • What makes the unmanned hydrographic boat suitable for long-term monitoring missions?

  • How does the boat’s design enhance hydrographic data accuracy?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Hull MaterialMarine surveys in corrosive environmentsIndustry Standard: 6061-T6 aluminum (ISO 6934-1) ▲ Base: 6061-T6 + 5mm gauge ▲ Advanced: 7075-T6 (ASTM B221)▲ Advanced alloy (7075-T6) offers 50% higher strength for extreme conditionsHigher cost for advanced alloys; Base version may require more frequent maintenance
WeightLong-distance travel/fuel efficiencyIndustry Standard: 2500 kg (ISO 809:2010) ▲ Base: 2200 kg ▲ Advanced: 2000 kg (per ASME PTC 19.3)▲ Lighter Advanced hull improves fuel efficiency by 15%Reduced payload capacity in lighter versions may limit equipment carriage
Noise LevelSilent monitoring in sensitive zonesIndustry Standard: 65 dBA (IEC 60704) ▲ Base: 60 dBA ▲ Advanced: 55 dBA (per IEC 61400-2)▲ Advanced model quieter than a refrigerator (55 dBA) for stealth operationsAdvanced noise reduction adds 10% to production cost
Communication SystemsReal-time data transmissionIndustry Standard: VHF + AIS ▲ Base: VHF + AIS + GPS ▲ Advanced: SATCOM + AIS (Class B → Class A)▲ Advanced SATCOM enables global coverage for remote海域 monitoringBase lacks satellite capability for open-ocean missions
Safety FeaturesEmergency response in rough seasIndustry Standard: 2 life buoys ▲ Base: 4 buoys + fire suppression ▲ Advanced: 6 buoys + automatic ballast control▲ Advanced ballast system reduces capsizing risk by 40%Base lacks automated safety systems for sudden weather changes
CustomizationResearch/monitoring tool integrationIndustry Standard: Fixed deck layout ▲ Base: Modular deck panels ▲ Advanced: Fully customizable hull + payload mounts (per ISO 12217)▲ Advanced allows drone launchers or sonar arraysBase customization requires 2x longer lead time

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