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E-mail: master@hy-industry.com ĐT: 0086-159-2263-6015
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3C Seismic Sensor with GPS Autonomous Seismic Recorder
  • 3C Seismic Sensor with GPS Autonomous Seismic Recorder
  • 3C Seismic Sensor with GPS Autonomous Seismic Recorder
  • 3C Seismic Sensor with GPS Autonomous Seismic Recorder
  • 3C Seismic Sensor with GPS Autonomous Seismic Recorder
  • 3C Seismic Sensor with GPS Autonomous Seismic Recorder
  • 3C Seismic Sensor with GPS Autonomous Seismic Recorder

3C Seismic Sensor with GPS Autonomous Seismic Recorder

Nguồn gốc Trùng Khánh, Trung Quốc
Hàng hiệu GOLD
Chứng nhận CE, ISO
Số mô hình GD-3C
Thông tin chi tiết sản phẩm
Sử dụng:
Máy ghi địa chấn nút Máy ghi địa chấn băng thông rộng ba trục Nút địa chấn
Quyền lực:
điện tử
Kiểm tra chất lượng Bluetooth:
Có sẵn
không thấm nước:
IP68
Nhiệt độ hoạt động:
-40℃ ~ +70℃
Độ phân giải ADC:
24 bit
Mô tả Sản phẩm
3C Seismic Sensor with GPS Autonomous Seismic Recorder
Verifying Ground Conditions Before Concrete is Poured

Construction projects fail or succeed based on what lies beneath the surface. The GD-3C Nodal Seismometer serves as a construction quality guardian, providing non-destructive, high-resolution imaging of soil and rock conditions before foundations are poured, tunnels are bored, or embankments are built. By delivering quantitative, verifiable data about subsurface stiffness, layering, and anomalies, it enables engineers to validate designs, identify hazards, and avoid costly change orders.

Shear Wave Velocity Profiling for Foundation Design

The most critical parameter for seismic site response and foundation settlement is shear wave velocity (Vs). Traditional methods—downhole and crosshole testing—provide excellent data but at high cost and only at sparse points. The GD-3C enables surface wave methods (MASW, ReMi) that deliver continuous Vs profiles along entire alignments. Deploying a linear array of nodes along a proposed building footprint or transportation corridor, geotechnical engineers can generate high-resolution Vs30 and Vs100 maps that reveal soft zones, stiff layers, and lateral variations. This data directly informs shallow foundation design, pile depth requirements, and seismic site class assignments, eliminating guesswork and reducing contingency factors.

Detecting Hidden Hazards Before Excavation

Voids, boulders, buried channels, and old foundations are unwelcome surprises that derail construction schedules and budgets. The GD-3C, used in refraction microtremor (ReMi) or multichannel analysis, can image these features with meter-scale resolution before excavation begins. A void might appear as a low-velocity anomaly; a large boulder as a high-velocity lens. Identifying these features in the design phase allows engineers to relocate foundations, adjust boring plans, or pre-condition the ground, avoiding the costly delays and claims that arise when excavators hit the unexpected.

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Construction Quality Specifications
Parameter Geotechnical Site Investigation Standard Engineering Benefit
Depth of Investigation 30-50 meters for typical soil profiles Covers the active zone for most shallow foundations
Vertical Resolution 1-2 meters in upper 30 meters Resolves thin soft layers that control settlement
Lateral Resolution 5-10 meters with typical receiver spacing Maps lateral variations in foundation conditions
Vs Accuracy ±5% compared to downhole methods Provides confidence for design without over-conservatism
Deployment Speed 1 km of linear profile per hour Enables full site characterization in days, not weeks
Immediate Feedback Onboard processing shows Vs profile in field Allows survey adjustments and target investigation on the spot
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0086-159-2263-6015
Tòa nhà kỹ thuật 1F, Công viên công nghiệp Longxin, quận Nan'an, Chongqing Trung Quốc
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