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Geotechnical investigation
Structural monitoring
All industries
Geotechnical testing and structural monitoring ensure building safety and minimize the risk of settlement or damage. Forecasting and precise measurements allow for project optimization and cost reduction in future maintenance.
Computational forecasts, pile load tests, and settlement analysis enable better adaptation of foundations to soil conditions. Our solutions support risk management and enhance the durability of building structures.
Structural monitoring and foundation testing are crucial for energy facilities such as power plants and wind farms. Our technologies help control the impact of vibrations on critical infrastructure and verify the quality of geotechnical work.
Pile load testing is carried out at an early stage of bridge construction. Continuous monitoring and structural analysis help detect damages in bridges, viaducts, and roads early, increasing user safety and optimizing maintenance costs.
Vibration measurements and track monitoring assess the impact of loads on the stability of embankments and railway bridges. Our studies help minimize failure risks and enhance the durability and safety of railway infrastructure.
Deformation and displacement monitoring provide real-time safety assessments of tunnels during construction and operation. Our research helps mitigate risks related to settlement, leakage, and other structural damages.
How do you get teams from multiple countries to work as one—right in the middle of a complex offshore project on the other side of the world? 🌍 That question became very real during the Changhua Offshore pile test campaign in Taiwan.

The task was clear—but far from simple:
To collect data to optimize the design of future offshore wind turbine foundations for Ørsted. This required large-scale testing of the piles’ load-bearing capacity under some of the most challenging soil conditions—with six test piles up to 80 meters long, installed in 40 meters of water.
The journey began far from Taiwan. In Denmark, the first drivability analyses were carried out. Test setups were developed, and equipment was tested under nearshore conditions in Frederikshavn. At the same time, specially designed offshore equipment—600 tonnes in total—was developed, manufactured, and prepared ⚙️
But just as importantly: Teams across Denmark, Germany, and Poland began working closely together 🤝 They worked together. Traveled together. And learned each other’s ways of solving tasks. That became the foundation for collaboration offshore.

In Taiwan, the plans became reality 🚢
The test piles were instrumented with hundreds of sensors, installed offshore, and subsequently tested through advanced measurements. International teams worked side by side—on deck, in the control room, and under demanding conditions—to ensure precise data collection.
Along the way, solutions were adapted, knowledge was shared, and challenges were solved together—across languages, cultures, and disciplines 🌐

The result?
A strong data foundation that today helps shape the design of future offshore wind turbine foundations.
But perhaps most importantly: proof that complex projects are not just about engineering—but about people working together across borders. 💡

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We’ve already solved many problems, and for new ones, we’ll develop an individual approach. Want to discuss monitoring or pile testing? Fill out the form and let us know.
Geotechnical investigation
We operate in Europe as:
DK
DMT Engineers A/S
DMT Engineers A/S
Skomagervej 13C
7100 Vejle
CVR-np. 12476779
DE
DMT Ingenieure GmbH
DMT Ingenieure GmbH
Zum Audorfer See 9
D-24782 Büdelsdorf
Registergericht: Amtsgericht Kiel HRB 12196 KI
Geschäftsführer: Lars Gøttrup Christensen
USt-IdNr.: DE134866110
Sitz der Gesellschaft: Zum Audorfer See 9, D-24782 Büdelsdorf
All rights reserved. DMT 2025.
Geotechnical testing and structural monitoring ensure building safety and minimize the risk of settlement or damage. Forecasting and precise measurements allow for project optimization and cost reduction in future maintenance.
Computational forecasts, pile load tests, and settlement analysis enable better adaptation of foundations to soil conditions. Our solutions support risk management and enhance the durability of building structures.
Structural monitoring and foundation testing are crucial for energy facilities such as power plants and wind farms. Our technologies help control the impact of vibrations on critical infrastructure and verify the quality of geotechnical work.
Pile load testing is carried out at an early stage of bridge construction. Continuous monitoring and structural analysis help detect damages in bridges, viaducts, and roads early, increasing user safety and optimizing maintenance costs.
Vibration measurements and track monitoring assess the impact of loads on the stability of embankments and railway bridges. Our studies help minimize failure risks and enhance the durability and safety of railway infrastructure.
Deformation and displacement monitoring provide real-time safety assessments of tunnels during construction and operation. Our research helps mitigate risks related to settlement, leakage, and other structural damages.