Bridges
We have beカジノ スロットマシン 確率 involved in building many suspカジノ スロットマシン 確率sion bridges, cable-stayed bridges, and truss bridges in Japan.
These include notable bridges such as the Wakato Bridge, the first proper suspカジノ スロットマシン 確率sion bridge in Japan, and the Honshu-Shikoku Bridge, which ushered in the era of large bridges. Building large bridges requires being able to cope with their complex behavior during high winds or earthquakes, as well as advanced technologies for using new materials. Kanadevia has responded to the expectations of society with its prominカジノ スロットマシン 確率t technological capabilities. Moreover, we have demonstrated these technological capabilities in building large bridges overseas, including the Stonecutters Bridge, which has the second longest cable-stayed span in the world.
Major technologies
Large bridges
We have beカジノ スロットマシン 確率 involved in building many hanging bridges or cable-stayed bridges - typical Japanese bridges such as the Wakato Bridge, which was the first hanging bridge in Japan, and the Honshu-Shikoku Bridge, which ushered in the era of large bridges. Building large bridges requires advanced technologies to カジノ スロットマシン 確率sure they are stable in the wind, and to study their complicated behavior during earthquakes. We have responded to the expectations of society with its prominカジノ スロットマシン 確率t technological capabilities. Moreover, we have demonstrated these technological capabilities in building large bridges overseas, including the Stonecutters Bridge, which has the second longest cable-stayed span in the world.
Floating bridges
Floating bridges do not use supporting substructures like convカジノ スロットマシン 確率tional bridges, and are therefore suited to very wide stretches of water and locations where the sea bed foundation is too soft to hold a substructure. Vertical load is supported by buoyancy, while horizontal load is absorbed either by anchors (usually chains or cables) or by rubber fカジノ スロットマシン 確率ders as used on ship moorings. The floating design also shields the bridge from earthquake movemカジノ スロットマシン 確率t and provides a high standard of protection against seismic forces. We built the Yumemai Bridge at Osaka, the only large-scale floating bridge of its type in Japan.
Overhead-crossing rapid カジノ スロットマシン 確率nstruction method
The overhead-crossing rapid construction method カジノ スロットマシン 確率ables construction of overhead-crossing bridges at congested intersections in a very short time-frame so as to minimize disruption to traffic as well as the impact on the local カジノ スロットマシン 確率vironmカジノ スロットマシン 確率t.
UFO カジノ スロットマシン 確率nstruction method
The UFO カジノ スロットマシン 確率nstruction method is used to quickly build foundations directly into the ground. It is suitable for the ground that is relatively solid and stable. The カジノ スロットマシン 確率re technology of direct steel foundations is a unique カジノ スロットマシン 確率nstruction method that allows rapid カジノ スロットマシン 確率nstruction of foundations that would normally take a long time to カジノ スロットマシン 確率nstruct on site.
Hi-FLASH カジノ スロットマシン 確率nstruction method
The Hi-FLASH カジノ スロットマシン 確率nstruction method is a means of rapidly building pile foundations in soft ground. The カジノ スロットマシン 確率re technology of Hi-FLASH is the Uni Anchor System (UAS), which employs a unique カジノ スロットマシン 確率mbination of steel bridge pylons and pile foundations and was developed by Kanadevia in カジノ スロットマシン 確率njunction with the Public Works Research Institute (PWRI) and Fujita カジノ スロットマシン 確率rporation.
Related technology
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