DOME

|dome|dome|geodesic dome|geodesic dome roof THE CONCEPTS BEHIND THE dome

The spherical structure of a dome is one of the most efficient interior atmospheres for human dwellings because air and energy are allowed to circulate without obstruction.


More specifically, the dome is energy efficient for many reasons:


  • the dome decreased surface area requires less building materials .

  • dome exposure to cold in the winter and heat in the summer is decreased because, being spherical, there is the least surface area per unity of volume per structure.

  • the concave interior creates a natural airflow that allows the hot or cool air to flow evenly throughout the dome with the help of return air ducts.

  • extreme wind turbulence is lessened because the winds that contribute to heat loss flow smoothly around the dome.

  • the dome acts like a type of giant down-pointing headlight reflector and reflects and concentrates interior heat. This helps prevent radiant heat loss.



Many dome manufacturers on the list in this section offer various designs in geodesic dome housing with little assembly time required. Many also come in dome kits that you can build yourself or with the help of friends. You do not concrete over the entire dome.

The dome can be painted any color, tan, green, blue. Preferably a light to medium color to reflect the sunlight on the dome. A few years ago prior to the working consultant that supervises the shell assembly, some of our dome owners had to hire contractors or individuals that had never assembled one of our dome shell kits.

Our reinforced concrete dome homes shell is virtually indestructible, able to withstand enormous wind and snow loads and capable of supporting earth berming. The dome owner caulked the crack and mixed up some fiber concrete and filled the chunk. By the way it is even easier to heat the dome than to cool it. Because of the shape of the dome a second floor is a natural.

Whether you're a professional home builder, a do-it-yourself type or you already own a dome home but would like a matching outbuilding or shop, .geodomeroof.com gives you the tools you'll need to successfully build a geodesic dome. R. Buckminster Fuller designed the first geodesic dome.

In a dome context, triangulation is used to mean the process of subdividing a triangle into smaller triangles. At the vertices of a geodesic dome, edges typically come together in groups of 5 or 6.

Fuller's dome was constructed from an icosahedron by adding isosceles triangles about each polyhedron vertex and slightly repositioning the polyhedron vertices. In such domes, neither the polyhedron vertices nor the centers of faces necessarily lie at exactly the same distances from the center's dome.

Wenninger and Messer (1996) give general formulas for solving any geodesic chord factor and dihedral angle in geodesic domes.

Conceived by R. Buckminster Fuller a geodesic dome is a sphere-like structure composed of a complex network of triangles. The triangles create a self-bracing framework which gives structural strength to the "dome" while using a minimum of material. The term geodesic is from Latin, meaning earth dividing. A geodesic line is the shortest distance between any two points on a sphere dome.

Perhaps the most famous geodesic dome is Buckminster Fuller's 20-story high U.S. Pavilion at Expo '67 in Montreal, Canada. The dome, he said, would pay for itself within ten years.

Domes are nature's perfect structure and will provide a unique and functional space for every use. Our Domes illuminate with natural light creating an atmosphere of being close to nature in a comfortable environment. Spend an hour in a dome and you will have a hard time living in a conventional home.

Geodesic spheres and dome come in various frequencies. The frequency of a dome relates to the number of smaller triangles into which it is subdivided. A high frequency dome has more triangular components and is more smoothly curved and sphere-like.

The classic geodesic dome is composed of 20 curved triangles, each of which corresponds to one facet of the icosahedron, a 20-faceted polyhedron. Manufactures dome building kits which use a system of pre-finished component panels. We provide on site supervision of the dome shell
kit at no cost to our customers for any domes sold in North America.

A modified geodesic dome design that omits some of the edges, leaving a network of lines that interlock in a pattern of triangles, pentagons, and hexagons. These domes are made with long, continuous pieces of material (or edges that are joined end-to-end so they act as continuous pieces. Domes are commonly used for homes, greenhouses, or to enclose equipment such as radar. Icosahedra are commonly used as a basis for geodesic dome designs because they are fairly round to begin with.

The dome design is a common geodesic dome. It is a combination of pentagons and hexagons. Each pentagon is surrounded by 5 hexagons. The dome is slightly greater than a hemisphere. The dome requires 6 pentagons, 10 hexagons and 5 half hexagons.



dome |
dome | geodesic dome | aluminum roof | geodome | clear span domes | geodesic dome manufacturer | tank roof | geodesic dome roof | tank cover |