Hyogo Prefecture Construction Case Study: Reinforcement Method for Existing Rockfall Protection Fences - Easy to Construct with Lightweight Materials!
The materials are lightweight and easy to install! It can also reduce the impact on nearby residents, such as traffic restrictions.
Here is a case study of the "Stronger Method" implemented in Hyogo Prefecture. As a result of the construction, the fence height increased from 2.0m to 3.0m, with a construction length of L = 24.1m. This method utilizes a uniquely developed high-strength wire mesh made of three strands of steel wire, which prevents the mesh from being penetrated. Additionally, for areas where the fence height is a concern, height-raising materials can be used to increase the fence height. 【Case Study】 ■Height-raising type (Fence height: H = 2.0 → 3.0m, Construction length: L = 24.1m) ■Hyogo Prefecture (Construction: Fiscal Year 2018) *For more details, please refer to the PDF document or feel free to contact us.
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【Structural Overview: Components】 ■ Upper connection fittings (upper reinforcement frame) ■ Lower connection fittings (lower reinforcement frame) ■ Height-raising connection fittings ■ Upper restraint bar ■ Tensioning device ■ Wire diamond mesh *For more details, please refer to the PDF document or feel free to contact us.
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For more details, please refer to the PDF document or feel free to contact us.
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Until now, we have been cutting down trees on the slopes, excavating the ground to install concrete foundations, and then placing avalanche prevention shelves and rockfall protection shelves on top. However, the avalanche prevention shelves are ineffective against rockfalls, and the rockfall protection shelves are powerless against avalanches. The "triangular fence" developed and sold by our company effectively functions against both avalanches and rockfalls, and it does not require any excavation of the ground or concrete work, which could cause secondary disasters. It can be easily constructed using only lightweight materials, making it an environmentally friendly construction method suitable for the 21st century that does not compromise the landscape.