Shakelog Monitoring System Earthquake Warning Sensor

Supports the following standards: EN 196-9

Used to measure the heat of hydration of cement by the semi-automatic Langavant method. Test calorimeter includes factory calibration certificate. Temperature recorder provides (4) input channels for recording and transmission of temperature values. Analysis software provides reporting and editing function for calculating the heat of hydration. Unit includes: test calorimeter; reference calorimeter; mortar-sample container, temperature recording device and analysis software. Power for unit is supplied by USB from a PC or laptop. Does not include required PC

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Description

Structure Analysis: Shakelog

Automatic and Continuous Structural Stiffness Monitoring

The system enables consistent surveillance and tracking of the structure's stiffness baseline properties , allowing for precise and rapid detection and localization of damage. — This level of capability is unprecedented in conventional Structural Health Monitoring (SHM) systems.

Real-Time Alerts for Major Vibrations and Recording of Actual Structural Response

When a structure is subjected to events such as earthquakes, the system instantly sends an alert and records the actual structural response , including dynamic parameters and all movements that occur during the event.

First-Ever Comprehensive and Accurate Earthquake Damage Assessment Without Destructive Testing

For the first time, earthquake-induced damage can be assessed comprehensively and precisely without the need for destructive testing, visual inspections , or structural drawings. This breakthrough is made possible by Sensequake's patented technology.

24/7 Web-Based Dashboard Control

Users can control the system, analyze data, and view results from any device—be it a computer, tablet, or smartphone. The platform includes an automated report generation feature that is clear, hassle-free, and user-friendly , making it suitable for both engineers and executives seeking professional-level insights with ease.

SHAKELOG MONITORING SYSTEM Earthquake

ShakeLog is a sensor and software system designed to record vibrations affecting various structures such as buildings, bridges, dams, or other infrastructures—especially in the event of earthquakes or environmental impacts. It enables accurate real-time monitoring and analysis of structural behavior.

The system operates by installing sensors at optimal locations within the structure, using either wired or wireless communication to transmit data to a central analysis system. The data is then processed and visualized through intelligent software.

Compatible with All Types of Structures

Long-Term Structural Safety Monitoring Continuously tracks the engineering condition of a structure to ensure its safety over time. Post-Event Damage Assessment Without Invasive Methods Evaluates damage levels after major events such as earthquakes or external impacts without the need for dismantling or destructive testing. Precise Damage Localization Identifies potentially damaged or weakened areas, enabling targeted repairs—saving both time and maintenance costs.

Historic structures

Bridges

Hospitals

Laboratories/Academic

High-rise buildings

Bridges

Residential

Manufacturing

Comprehensive, web-based dashboard.

Easy data visualization and project management, automatic modal analysis, 3D mode shapes, control sensor parameters remotely.
AI and advanced algorithms for damage detection, seismic analysis for building performance predictions

Calculate natural frequencies, mode shapes and damping ratios from ambient vibration testing.

Render accurate mode shapes and animated 3D models. Structural analysis without the need of finite element models – only the structure’s simplified geometry.

Highly sensitive triaxial accelerometers & velocimeters, wide dynamic range, low noise

Web based control and analysis platform, modal analysis periodically to track stiffness parameters using AI

Rapid and accurate seismic damage evaluation, optimized sensor locations based on Sensequake proprietary approach

Voting mechanism between sensors for alarm triggers, local battery and data storage incase of blackouts

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