PRODUCT
BD-GPR-U50 High-Depth Ground-Penetrating Radar
Applicable to projects related to geological hazard assessment and mitigation, as well as engineering investigation and design; also used in fields such as geotechnical exploration and tunnel inspection to detect or identify subsurface structures and target objects at specific depths. Specific categories are as follows: ◆ Geological Hazard Assessment: Used to identify subsurface anomalies, such as voids, cavities, and fractured zones. ◆ Tunnel Inspection: Used for advance tunnel forecasting and for assessing tunnel construction quality, among other applications.
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Product Detail
Product用途:
It is applicable to projects related to geological hazard assessment and mitigation, as well as engineering investigation and design; it is also used in fields such as engineering geology and tunnel inspection to detect or identify subsurface structures and target objects at specific depths. The specific classifications are as follows:
◆Geological hazard assessment: Used to identify subsurface anomalies such as cavities, voids, and fracture zones.
◆Tunnel Inspection: Used for tunnel advance forecasting and for assessing tunnel construction quality, among other applications.
Product Features:
◆This product features an industry-leading integrated host-and-antenna design, offering a compact footprint, lightweight construction, and low power consumption.
◆ Wireless connection between the host and the computer for convenient operation.
◆ Enables real-time data acquisition and display
◆The software features a clean interface, simple operation, and quick learning curve.
◆ Multi-band antennas available, with a wide range of applications.
◆The analysis software is easy to operate, and the results are interpreted accurately.
◆High detection accuracy and precise localization
◆ Built-in ultra-large-capacity battery for long-lasting performance
◆ Ergonomic structural design—simple, durable, and easy to operate—making it ideally suited for mobile field work environments.
Compliant with standards:
◆ “Code for Geophysical Prospecting in Hydropower and Water Conservancy Engineering DL/T 5010-2005”
◆ “Geophysical Exploration Code for Water Conservancy and Hydropower Engineering SL 326-2005”
◆ Technical Code for Geophysical Prospecting in Power Engineering DL/T 5159-2012
◆ “Underwater Engineering Geophysical Exploration Code DB34/T 2209-2014”
◆ “Ground-Penetrating Radar for Highway Cross-Section Flaw Detection and Structural Layer Thickness Measurement JT/T 940-2014”
◆ “Standard for Geophysical Exploration in Urban Engineering CJJ/T 7-2017”
◆ Technical Specification for Urban Underground Pipeline Detection CJJ 61-2017
◆ Technical Specification for Quality Inspection of Construction Projects Using Radar Method DGJ 32-TJ79-2009
◆ Technical Specification for Advanced Geological Forecasting in Railway Tunnels Q∕CR 9217-2015
◆ Technical Standard for Comprehensive Detection and Risk Assessment of Urban Underground Hazards, JGJT 437-2018
◆ “Code for Geophysical Exploration in Highway Engineering JTGT 3222—2020”
Performance specifications:
BD-GPR-U50 High-Depth Ground-Penetrating Radar
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Antenna Type
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Unshielded antenna
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Operating temperature
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-30℃~+70℃
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Antenna frequency
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50MHz
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Transient launch voltage
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100–1000 V (adjustable)
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Device model
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BD-GPR-U
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Wireless data transmission distance
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Greater than 50 m
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Continuous working hours
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≥8 hours
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Overall machine weight
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11.5kg
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Total system power consumption
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<15W
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Number of superpositions
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Maximum 65535
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Antenna size
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1.8m x 0.18m
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Minimum sampling interval
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<10ps
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Scope of Deep Application:
Antenna frequency |
Application scenarios |
Reachable depth |
50M
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Karst and granite cave exploration
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0–50 meters
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Geological stratification
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0–30 meters
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Advanced Tunnel Forecasting
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0–40 meters
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Subgrade Inspection
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0–25 meters
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Case Study:
At the client’s invitation, Wave Technology traveled to a specific area in Guilin to conduct karst‑related geophysical exploration. The equipment employed was the company’s high‑resolution ground‑penetrating radar systems, the BD‑GPR‑U100 and BD‑GPR‑U50. The survey yielded highly accurate data: the locations of karst caves were pinpointed with precision, and the signals from underground blind rivers were clear and well‑defined. These results were consistent with those obtained earlier by the client using the microtremor HVSR method, earning the client’s full approval.
Data Image:
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