Rain can make big holes in the ground. 
Water can carve big paths in the ground. 
A gully is a deep path in the ground. 
Gullies start as tiny paths called rills. When rills are not fixed, they grow into gullies. Heavy rain or melting snow makes this happen. Water rushes over bare soil and carries dirt away. This is called erosion. This happens more often when plants are gone. Without plants, the soil is easy to move.
Gullies can cause many problems. They can wash away good farmland. This makes it hard to grow food. They can also break roads, homes, or water pipes. People try to stop them by planting more greenery. They also use rocks or pipes to move water safely.
We even see gullies on Mars. They may have formed from melting snow. This shows that liquid water was once on Mars.
A gully is a landform created by running water or moving earth. These features look like large ditches or small valleys. They can be many metres to tens of metres deep and wide. You will often find them on hillsides or in river floodplains. Gullies are special because they have a distinct headwall at the top. They grow through headward erosion, which means they move upstream. 
How do these deep paths form? It often begins with small paths called rills. If rills are not fixed, they thicken into gullies over time. Heavy rainfall or melting snow causes the water to rush over bare soil. This water carries the dirt away in a process called erosion. Gullies can also grow sideways through mass movement of the walls. They might even grow from water leaking through underground soil pipes.
People have studied these landforms for a long time. The word gully was first used around the year 1657. It comes from the French word goulet. This word is a smaller version of goule, which means throat. Some people think the name might be linked to a gully-knife. Scientists today use tools like GPS and satellite imagery to study them. They want to understand how to stop the soil from washing away. 
There are many important facts about where gullies happen. In Zaria, Nigeria, researchers found that slope affects erosion by 56 percent. Rainfall is another big factor at 26 percent. In Southeast Nigeria, the amount of relief is linked to soil loss. Gullies can even be man-made through hydraulic mining. In the past, Romans used aqueducts to wash away soil to find gold. This created large gullies at places like Las Medulas in Spain.
Gullies change the world around them in many ways. They can wash away fertile farmland and make it hard to grow food. This can lead to food shortages for people. They can also break important things like homes or water pipes. Even the water in lakes can become dirty from the extra dirt. Interestingly, we can see gullies on the planet Mars too. These Martian gullies might have formed from melting snow or ice. 
A gully is a significant landform created by running water, mass movement, or a combination of both. These features appear as large ditches or small valleys carved into the Earth. They are much larger than simple surface grooves, often reaching depths and widths of many metres or even tens of metres. Gullies typically form on hillsides, river floodplains, or terraces. A defining characteristic of a gully is its distinct headscarp, which is a steep wall at the top of the feature. They progress through headward erosion, a process where the gully grows upstream toward its source. 
The formation of a gully is a complex sequence of geological processes. It often begins with rills, which are small channels created when water rushes over exposed, naked soil. If these rills are neglected over time, they thicken and expand into full gullies as erosion persists. The primary mechanism is often incision, where flowing water cuts deep into the ground. Other processes include bank erosion, where the sides of the gully are worn away. Mass movement also plays a role, as saturated or unsaturated material from the walls collapses downward. Additionally, groundwater seepage can cause sapping, which undermines the overlying material from below.
Several specific factors influence how quickly and where these landforms develop. In rangelands, gullies can start from concentrated water flow down tracks made by livestock or vehicles. On hillsides, the removal of vegetation through deforestation or over-grazing makes the land much more vulnerable. The type of terrain also matters significantly. For example, uplands with friable sandstones are more prone to erosion than highlands with stable lithology. In a study in Zaria, Nigeria, researchers identified the primary drivers of erosion. They found that slope accounted for 56% of the effect, while rainfall accounted for 26%. Land cover and soil type contributed 12% and 6%, respectively. 
History shows that humans have also been responsible for creating artificial gullies. During hydraulic mining, jets of water are projected onto soft deposits to extract minerals like gold or tin. This method leaves behind very visible landform features. A famous example is Las Medulas in Spain, which was shaped during the Roman period. Romans used aqueducts to supply water for hushing, a type of hydraulic mining. This process washed away soft alluvium to reveal gold, creating large gullies in the process. These man-made features remain visible in old goldfields in places like California and northern Spain.
The consequences of gully erosion are severe for both people and the environment. When gullies incise into farmland, they reduce the productivity of the land by removing fertile soil. This loss of organic content can impact plant viability and may even lead to famine or food shortages. Furthermore, the eroded sediment can flow downstream, choking waterbodies and reducing water quality in lakes or coastal systems. Gullies can also destroy important infrastructure, such as homes, power poles, and water pipelines. They can even divide properties and decrease property values. In some areas, they can create habitats that attract rodents.
To manage these issues, scientists and engineers work on stabilization and remediation. Stabilization involves altering water flow to reduce scouring and sediment buildup. This can be done using various structures like drop structures, pipe structures, grass chutes, or rock chutes. These tools help move water securely from natural levels to the gully floor. Revegetation is also a key part of the process, as plants help hold the soil in place. In Eastern Nigeria, research has shown that biodiversity loss is a major perceived problem caused by these landforms. Effective solutions require a mix of water-resource management, soil conservation, and public education. 
Interestingly, gullies are not limited to Earth; they are also found on Mars. They are widespread at mid-to-high latitudes on the Martian surface. These are some of the youngest features observed on the planet, likely forming within the last 100,000 years. Their presence provides strong evidence that liquid water existed on Mars in the recent geological past. They may have formed from the melting of surface snowpacks or ice in the shallow subsurface on warm days. Another possibility is that water flowed from deeper liquid water aquifers in the subsurface. This connection shows that the same physical processes we see on Earth can occur across the solar system. 
🖼️ Images & Media (2)
More to explore
✨ What else?
Related topics you might enjoy
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.