The Figure 13 mentioned dome is 60.96 m high (20 stories) and (76.2 meters) in
diameter. The structural foundations of Fuller‘s domes regardless of the size all have
three-dimensional units, curved to fit a specified arc. As it can be viewed in the pictures
24
above, they also have a triangle on the outside, hexagonal on the inside. Moreover, in
order to spread the weight over the whole surface the triangles are connected together
(Meyer, 2005). It consists of three quarter sphere with a 76meter and a height of 62
meter. The shell is a thick double-layer space frame with the tubular members slotted at
their ends so that they can be pin connected to cast steel spider connectors, which have
central hubs and 12 radial arms for the outer layer (Schueller, 1996).Considering the
above in formation, geodesic domes can be found in many common types of buildings
such as houses, sports stadiums, or even temporary structures. Aluminum is the most
common material for this structure
The Figure 13 mentioned dome is 60.96 m high (20 stories) and (76.2 meters) indiameter. The structural foundations of Fuller‘s domes regardless of the size all havethree-dimensional units, curved to fit a specified arc. As it can be viewed in the pictures 24above, they also have a triangle on the outside, hexagonal on the inside. Moreover, inorder to spread the weight over the whole surface the triangles are connected together(Meyer, 2005). It consists of three quarter sphere with a 76meter and a height of 62meter. The shell is a thick double-layer space frame with the tubular members slotted attheir ends so that they can be pin connected to cast steel spider connectors, which havecentral hubs and 12 radial arms for the outer layer (Schueller, 1996).Considering theabove in formation, geodesic domes can be found in many common types of buildingssuch as houses, sports stadiums, or even temporary structures. Aluminum is the mostcommon material for this structure
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