A ravelin is a strong wall. 

A ravelin is a strong wall. 

A ravelin is a triangular wall. 

Long ago, ravelins were small. They were built to protect a bridge. The bridge led across a moat to the fort gate. This made it hard for enemies to attack the gate. In the 16th century, people built larger ones. They put them in front of other walls too. A builder named Daniel Specklin said they were very important. He wanted them to be as large as possible. 
These walls help in two ways. First, guns on the ravelin can fire at attackers. This happens as they move toward the main walls. Second, the ravelin stops enemy guns from hitting the main wall. The side facing the fort often has a very low wall. This keeps enemies from hiding there. Some ravelins had ramps or stairs. These helped soldiers move quickly to the wall.
A ravelin is a triangular wall built outside a fortress. It is a separate part called an outwork. These walls sit in front of the main walls and bastions. 

These walls work in a few clever ways. First, the shape divides an attacking force into smaller groups. Guns placed on the ravelin can fire at troops as they approach. 
In the past, these walls were much smaller. They started as small forts to protect a bridge. This bridge led across a moat to the fortress gate. The Italian name "rivellino" means a small bank work.
History shows us how these walls changed over time. The first ravelin appeared in Sarzanello, Italy, in 1497. 
Many famous engineers used the ravelin in their designs. A French engineer named Vauban used them for Louis XIV. His ideas were still being used in 1761 at Gibraltar. 
A ravelin is a triangular fortification located outside a fortress. It is a detached outwork, which means it is a separate structure. These outworks sit in front of the innerworks of a fortress. The innerworks include the curtain walls and the bastions. 

The mechanism of a ravelin involves several tactical functions. The outer edges are configured to divide an attacking force into smaller groups. This makes it difficult for an army to stay organized during an assault. Guns placed within the ravelin can fire upon attacking troops as they approach the curtain wall. 
There are specific design features that help the ravelin function within a larger system. Many ravelins include a ramp or stairs on the curtain-wall side. These features facilitate the movement of troops and artillery onto the ravelin.
The history of the ravelin begins with small, specialized forts. These early versions were designed to cover the bridge leading across a moat. This bridge provided access to the city or fortress gate. Because of this role, the Italian name for the structure is "rivellino." This term means a small bank work. In German, the structure is often called a Brückenkopf, or "bridge head." 
As military understanding grew, the use of ravelins expanded significantly. In the sixteenth century, builders realized that ravelins could provide better protection for the curtain wall. They began building them in front of other curtain walls and enlarged them over time. A German fortress builder named Daniel Specklin, who lived from 1536 to 1589, recognized their principal importance. He called them "ledige Wehr" or "revelin." Specklin demanded that they be made as large as possible. He wanted them to fully cover the curtain wall and the flanks of the bastions.
Historical records point to specific dates and locations for these developments. The first recorded example of a ravelin appears in the fortifications of the Italian town of Sarzanello in 1497. The system of fortifications that included ravelins is known as the trace Italienne. This name refers to the Italian origins of the star fort system. Many famous engineers utilized these designs in their work. The French 17th-century military engineer Vauban made great use of ravelins for Louis XIV. His engineering ideas remained influential for a long time. For example, Major William Green used these ideas in 1761 at Gibraltar.
The ravelin is a vital component of the broader bastion fortification system. It works in tandem with the curtain walls and bastions to create a layered defense. By forcing attackers to deal with the outwork first, the main fortress remains protected from direct artillery fire. This relationship between the outerwork and the innerwork defines the strength of the entire fortification. The transition from small bridge-protectors to massive earthen works shows how engineers adapted to the power of gunpowder and cannons.
🖼️ Images & Media (4)
More to explore
✨ What else?
Related topics you might enjoy
🔬 Go deeper
More advanced topics to explore
🪜 Step back
Simpler topics to build understanding
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.