Do you have a technical challenge? Get in touch with us

Landslide monitoring

involves the continuous observation of slope stability using sensors such as inclinometers, piezometers, and GNSS. It helps detect ground movements early, enabling timely intervention to prevent structural damage or safety risks.

Strain gauges

are used to monitor deformation and internal stress in structural elements like beams, columns, and foundations. By attaching precise sensors to materials, engineers can assess load effects, detect fatigue, and ensure structural safety under real operating conditions.

Driveability Analysis

is a predictive assessment that determines whether piles or sheet piles can be installed to the required depth using impact or vibratory driving methods. By simulating the interaction between soil, pile, and equipment, it helps prevent refusal, structural damage, or costly delays—ensuring an efficient and safe installation process before construction begins.

Crack width monitoring

is used to track the development and progression of structural cracks over time. Using mechanical or digital sensors, engineers can assess whether movements remain within acceptable limits or indicate deeper structural problems.

Inclinometer Monitoring

involves measuring horizontal ground or structural displacements, typically in slopes, retaining walls, or excavation zones. The system helps detect early signs of instability and is essential for geotechnical safety assessments.

Structural Monitoring

involves the continuous measurement of key parameters such as strain, displacement, vibration, or temperature in buildings and infrastructure. It provides real-time insight into structural performance and helps detect damage or deterioration at an early stage.

Noise Measurement and Monitoring

are conducted to evaluate sound levels generated by construction, industry, or traffic. The system ensures compliance with environmental regulations and protects residents and workers from harmful noise exposure.

Dynamic load test

is used to assess the bearing capacity of foundation piles by applying short, high-energy blows with a hammer. Sensors installed on the pile record acceleration and strain, allowing engineers to calculate load transfer and verify pile performance quickly and cost-effectively.

Ground anchor testing

is performed to verify the load-bearing capacity and installation quality of anchors embedded in soil or rock. By applying controlled tension forces, the test confirms whether anchors meet design specifications and ensures long-term stability for retaining structures, slopes, or foundations.

Static load tests

is a fundamental method for verifying whether a foundation element—typically a pile—can safely carry the intended design loads under real ground conditions. This test provides engineers and investors with confidence in the safety, quality, and long-term performance of the structure before main construction begins.

Haben Sie Fragen? Kontaktieren Sie uns

Häufig gestellte Fragen

See our reviews

Lorem ipsum dolor sit amet, consectetur adipiscing elit.

Case studies

Filter by industry:

Case studies industries
Sorry, nothing to see here...