TECCO® TRAPUNTA
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TECCO® Trapunta(테코 트라푼타)는 수중용으로 설계되었으며, 악조건들을 견디어 내도록 컴팩트하게 배열된 셀들이 항만 벽, 교각 주변의 수중에 설치되어 있는 배관 및 케이블과 같은 기반 시설들을 수중 침식과 같은 위험으로부터 보호합니다. 또한, 유연하게 해저에 잘 적응하기 때문에 해저 침전물 제어에도 사용됩니다. 셀 유닛을 구성하는 고강도 스테인리스 스틸 네트는 해수에서 뛰어난 내구성을 보장합니다.
"이탈리아어로 트라푼타는 이불을 지칭합니다. 이는 네트와 주변 암석으로 구성된 유연한 유닛의 역할을 의미합니다. 해저면을 잘 덮어주어 무거운 무게로 유실이나 손상의 위험으로부터 대상물을 보호합니다."
미리 제작된 모듈들은 이동식 크레인이나 바지선 등을 이용해 보호 대상 구역에 간단하게 배치할 수 있습니다.
각 셀 유닛들의 제작이 설치 현장 밖에서 완성됩니다.
여러 셀들을 서로 연결할 수 있습니다.
주변의 암석들을 셀의 충진재로 활용하고 자재들의 재활용이 가능합니다.
고급 스테인리스 스틸을 사용하여 부식이 잘 일어나는 환경에서도 긴 내구연한을 보장합니다.
Our solutions are designed to protect structures and riverbanks against erosion, scouring, and water-related stresses. This includes the design and supply of flexible and sustainable systems for:
Geobrugg’s solutions for hydraulic engineering and coastal protection are versatile and can be adapted to a wide range of structures thanks to their flexible, durable, and customizable design. They are used to:
Geobrugg employs maritime and coastal experts all over the world to support you in case of questions. We collaborate closely with you in many languages. We see our role as your reliable design support. If we find that our solutions will not be suitable for a concrete project or would not add significant value, we will always be transparent.
Marine environments expose structures to continuous dynamic loading, uplift, and erosion. The key challenge is controlling hydraulic energy while maintaining long-term stability under cyclic loading. Systems such as TECCO® CELL and TECCO® TRAPUNTA address these challenges by combining mass, flexibility and controlled energy dissipation.
Systems (mattresses) made of high-tensile wire mesh filled with stones form a porous and flexible structure: the voids dissipate hydraulic energy, while the mass of the fill and the strength of the mesh stabilize the assembly and prevent the materials from escaping.
High-tensile duplex stainless steel, e.g. 1.4462, offers excellent resistance to chloride-induced corrosion, fatigue, and mechanical loading, for example abrasion. This makes it ideal for long-term use in seawater, splash zones, and tidal areas. All TECCO® maritime systems are designed to maintain structural integrity under aggressive marine conditions.
Our protective structures offer several major advantages. Their flexible, porous structure allows them to:
TECCO® maritime Systems offer several advantages in these areas:
TECCO® CELL is installed in situ and is ideally suited for shoreline protection, riverbanks, and sloped revetments where geometry varies, and natural integration is desired.
TECCO® CELL MOBILE is a prefabricated system designed for hydraulically highly loaded zones, enabling rapid installation and consistent quality in areas exposed to strong currents or wave action.
In our TECCO® CELL systems, stones are fully confined within high-strength wire cells. This creates a composite structure where hydraulic forces act on the entire mattress rather than on individual stones. Even under high wave impact or strong currents, the stones remain locked in place. Our prefabricated solutions serve as finite elements themselves, whereas TECCO® CELL is conceived as a monolithic structure along the entire installation length with integrated small compartments.
The rhomboidal mesh geometry ensures uniform load distribution, high tensile strength in multiple directions, and stable stone confinement. Because of its diamond shape, the mesh does not elongate significantly under load, always keeping the stone infill in place. This setup is essential for maintaining hydraulic performance under repeated, multidirectional loading, which is typical in marine environments.
TECCO® TRAPUNTA is a prefabricated heavy-duty mattress specifically designed for scour protection. Due to its high mass and robust construction, it is used around quay walls, offshore foundations, and port structures to protect against local erosion caused by propeller wash, waves, and currents.
TECCO® MANTA is a prefabricated, large-area, heavy-duty mattress designed for surface weighting and protection. It is particularly suited for seabed stabilization, covering large areas efficiently, and providing both mechanical protection and controlled surface shaping in offshore and nearshore applications.