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Vault (architecture)

arts Maturity 7-9

A vault is a curved ceiling.

Vault diagram.png
Vault diagram.png
It can be made of stone. It can be made of brick too. It helps cover a big room. It makes a space look grand. Can you find a curved roof?

49 words

A vault is a curved ceiling.

Vault diagram.png
Vault diagram.png

It can be made of stone or brick. Builders use a special top stone to hold it up. This stone is called a keystone.

Some vaults look like long tunnels. These are called barrel vaults. They can be shaped like a half circle.

Other vaults are made where two tunnels meet. This makes a groin vault. It creates lines where the shapes cross.

Some ceilings have ribs to help them stay strong. These are called rib vaults.

Reims Cathedral, interior (4).jpg
Reims Cathedral, interior (4).jpg

Vaults help cover big, beautiful rooms.

101 words

A vault is a curved ceiling.

Vault diagram.png
Vault diagram.png
It is a self-supporting shape. Most vaults are made of stone or brick. They cover a space like a roof. Builders often use a temporary frame to hold the pieces. This frame is called centering. The vault stays up once the last stone is set. This top stone is the keystone.

There are many kinds of vaults. A barrel vault is the simplest type. It looks like a long tunnel. Some people call it a pitched-brick vault if the bricks lean against a wall.

A groin vault is made when two barrel vaults cross. This creates lines called groins. The Romans used these to build large baths.

Groin vault top.jpg
Groin vault top.jpg

Medieval builders made rib vaults. They used stone ribs to support the ceiling. These ribs act as a frame for the rest of the vault.

Reims Cathedral, interior (4).jpg
Reims Cathedral, interior (4).jpg
This new way helped builders make very tall and strong ceilings.

174 words

A vault is a beautiful, curved shape used as a ceiling or roof.

Vault diagram.png
Vault diagram.png
Most vaults are made of strong stone or brick. They are self-supporting, which means they can hold themselves up. To build one, workers often use a temporary wooden frame called centering. This frame holds the pieces in place while they work. The vault only becomes stable once the very last stone is set. This special top stone is called the keystone.

There are many different ways to build these shapes. A barrel vault is the simplest kind. It looks like a long tunnel or a half-cut barrel. Some builders used a special method called pitched-brick vaulting. In this way, bricks lean against a wall at an angle. This clever trick lets builders finish the work without using a wooden frame. These types of vaults have been used since ancient times in places like Mesopotamia.

History shows us that many cultures loved using vaults. The Mycenaeans used beehive tombs with conical vaults around 1800 to 1050 BC.

Vault fig 01.gif
Vault fig 01.gif
In Egypt, builders used brick vaults for granaries during the 19th dynasty. The Pharaoh Ramesses II is a famous name from this time. Later, the Romans became masters of this art. They built huge structures like the Pantheon and the Basilica of Maxentius. They even used a special volcanic powder called pozzolana to make their concrete very strong.

As builders got more skilled, they created even more complex shapes. A groin vault happens when two barrel vaults cross at a right angle.

Groin vault top.jpg
Groin vault top.jpg
This creates lines called groins where the two shapes meet. The Romans used these to build massive spaces like the Baths of Caracalla. Later, medieval builders invented the rib vault.
Reims Cathedral, interior (4).jpg
Reims Cathedral, interior (4).jpg
Instead of making the whole ceiling at once, they built stone ribs first. These ribs acted like a permanent frame for the rest of the ceiling.

Understanding vaults helps us see how people have shaped the world for thousands of years. You can see the same ideas in a small brick arch and a giant cathedral. A dome is very similar to a vault, but it is shaped differently. While a vault is like an arch stretched out, a dome is an arch turned around a vertical center.

Hagia-Sophia-Laengsschnitt.jpg
Hagia-Sophia-Laengsschnitt.jpg
From ancient tombs to modern buildings, these curved ceilings continue to amaze us. They show how math and art work together to create strength.

422 words

In architecture, a vault is a self-supporting arched form. It is usually constructed from stone or brick. Its primary purpose is to cover a space with a ceiling or a roof.

Vault diagram.png
Vault diagram.png
To build a vault, architects must manage gravity and weight. During construction, a temporary support is required. This support holds the individual pieces in place. These pieces are called voussoirs. Builders often use a framed truss known as centering. Centering typically has a semicircular or segmental head. The vault remains unstable until the very last piece is placed. This topmost stone is called the keystone. Once the keystone is in position, the structure becomes self-supporting.

There are several distinct ways to construct these curved ceilings. The simplest form is the barrel vault. A barrel vault has a semicircular cross-section. It resembles a long tunnel or a barrel cut in half. Another method is the pitched-brick vault. In this technique, bricks are installed vertically rather than radially. The bricks lean, or are pitched, against an existing wall. This method allows builders to complete the vault without using centering.

Voûte en tranches inclinées.jpg
Voûte en tranches inclinées.jpg
A more complex form is the groin vault. This is created when two barrel vaults intersect at a right angle. The intersection creates lines called groins. These groins mark the transition between the different surfaces of the vault.
Groin vault top.jpg
Groin vault top.jpg

Advanced builders also developed the rib vault. This type of vault uses diagonal ribs in the form of segmental arches. In a rib vault, the builders set up the diagonal ribs first. These ribs act as permanent centers for the rest of the structure. The rest of the vault, or the web, is then built upon these ribs. This method revolutionized construction. It was a major change from earlier systems. Previously, builders had to manage difficult elliptical curves. The rib vault allowed for more efficient and stable designs.

Reims Cathedral, interior (4).jpg
Reims Cathedral, interior (4).jpg

History shows that vaulting has been used for thousands of years. The Mycenaeans used conical vaults for tholos tombs between 1800 and 1050 BC.

Vault fig 01.gif
Vault fig 01.gif
These are often called beehive tombs. In the Neolithic village of Khirokitia on Cyprus, builders used mud-brick corbel vaults. These structures even provided evidence for settlements with upper floors. In Egypt, brick vaults were used by the end of the 8th century BC. The Pharaoh Ramesses II used barrel vaults for granaries during the 19th dynasty.
Barrel vault top force.jpg
Barrel vault top force.jpg

The Romans significantly advanced the science of vaulting. They developed barrel, cross, and dome vaults. They used a special volcanic deposit called pozzolana in their mortar. This ingredient made their concrete as solid as rock.

Groin vault plan force.jpg
Groin vault plan force.jpg
This strength helped neutralize the outward thrust of the vaults. The Romans built massive structures like the Pantheon. They also constructed the Baths of Caracalla. The tepidarium in those baths had a span of 35 meters. This span was more than twice the size of an English cathedral.
Groin vault under edit.jpg
Groin vault under edit.jpg

Understanding the difference between a vault and a dome is important. A vault is essentially an arch that is extruded into the third dimension. A dome is an arch that has been revolved around its vertical axis.

Hagia-Sophia-Laengsschnitt.jpg
Hagia-Sophia-Laengsschnitt.jpg
While they look similar, their geometric origins are different. Both shapes serve to create large, open interior spaces. They allow for grand halls without the need for many internal supports. This ability to span large distances changed how humans designed public buildings.

Vaulting connects the fields of mathematics, physics, and art. Builders must calculate how weight and thrust move through the structure. For example, in a groin vault, the thrust is carried to the cross walls or piers. If the vaults are not the same size, the groins can become twisted and difficult to build. This requires careful decoration with stucco to mask the complexity. From the small mud-brick homes of Cyprus to the massive stone cathedrals of Europe, vaults demonstrate human ingenuity. They show how we use geometry to master the physical world.

683 words
🖼️ Images & Media (22)
File:Voûte de l'église Saint-Séverin à Paris.jpg
Voûte de l'église Saint-Séverin à Paris.jpg
File:Vault diagram.png
Vault diagram.png
File:Vault fig 01.gif
Vault fig 01.gif
File:Voûte en tranches inclinées.jpg
Voûte en tranches inclinées.jpg
File:St Paul's Cathedral Choir looking east, London, UK - Diliff.jpg
St Paul's Cathedral Choir looking east,...
File:Barrel vault top force.jpg
Barrel vault top force.jpg
File:Groin vault under edit.jpg
Groin vault under edit.jpg
File:Groin vault plan force.jpg
Groin vault plan force.jpg
File:Groin vault top.jpg
Groin vault top.jpg
File:Reims Cathedral, interior (4).jpg
Reims Cathedral, interior (4).jpg
File:Fresco vault Gent.jpg
Fresco vault Gent.jpg
File:Salisbury Cathedral, top of vaulted ceiling over nave.jpg
Salisbury Cathedral, top of vaulted...

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