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Flat coast

earth science Maturity 11-13

Some coasts are very flat.

Flat coast (shematic view).svg
Flat coast (shematic view).svg
The land goes slowly into the sea. It is made of sand and small rocks. The waves move the sand around. This helps the land grow. Do you like to play in the sand?

43 words

Some coasts are very flat.

Flat coast (shematic view).svg
Flat coast (shematic view).svg
The land goes slowly into the sea. It is made of sand and small rocks.
Litorale Serie Flachküste.png
Litorale Serie Flachküste.png
Waves move the sand and rocks around. Large waves can push sand up the beach. This makes a small ridge.
TheGulfOfSalerno.jpg
TheGulfOfSalerno.jpg
Wind can blow fine sand inland. This creates hills called dunes. Small plants help hold the dunes in place. The land can even grow bigger over time. It is a busy place!

80 words

Some coasts are very flat. The land slopes slowly into the sea. These coasts are made of sand and gravel.

Flat coast (shematic view).svg
Flat coast (shematic view).svg

Waves move sand and rocks in many ways. In the water, waves make a sandbar. A sandbar is a long ridge of sand. It sits under the water. Between the bar and the shore, there is a low area. This is called a runnel.

Litorale Serie Flachküste.png
Litorale Serie Flachküste.png

The beach has many parts too. Waves can throw sand and rocks high up. This makes a ridge called a berm. The berm stays on the beach. This happens because the water cannot wash it back out.

TheGulfOfSalerno.jpg
TheGulfOfSalerno.jpg

Storms can change the beach quickly. Big waves can wash sand away. This is called erosion. But normal waves can also build the beach up. Over time, new ridges can make the land grow. One place in Denmark is still growing today!

Noel2007 erosion.jpg
Noel2007 erosion.jpg

Inland, the wind blows sand to make dunes. These are hills of sand. Small plants like beach grass grow there. These plants help stop the wind from moving the sand.

183 words

A flat coast is a place where the land slopes gently into the sea. These shorelines are usually made of loose material like sand or gravel.

Flat coast (shematic view).svg
Flat coast (shematic view).svg
They are special because the sea and wind are always moving things around. This constant movement shapes the land in many different ways. You can see how the water and wind work together to build and change the coast. Understanding these coasts helps us see how the Earth is always shifting.

There is a specific way these coasts are shaped called a littoral series. This process starts in the shallow water called the shoreface.

Litorale Serie Flachküste.png
Litorale Serie Flachküste.png
Here, waves move sand and gravel to create a long ridge called a sandbar. A sandbar sits parallel to the shore under the water. Between this bar and the land, there is a low area called a runnel or a swale. These shapes show that waves are busy moving material across the seabed.

The beach area has many different parts depending on the water level. Some people call the area between low and high tide the foreshore. The area above the high tide mark is called the backshore.

Quinta do Lago beach 1.jpg
Quinta do Lago beach 1.jpg
On the beach, waves can throw sand and gravel high up. This creates a ridge called a berm. The berm stays on the beach because the water cannot wash the heavy material back out.
TheGulfOfSalerno.jpg
TheGulfOfSalerno.jpg

Storms can change a flat coast very quickly. Big storm surges can cause erosion by washing sand away and making the beach steeper.

Noel2007 erosion.jpg
Noel2007 erosion.jpg
However, normal waves can also build the beach up over time. This can create many berms one behind the other. This process can make the shoreline move further into the sea. A famous example is Skagen Odde in Denmark. This headland is still growing today as more berms are added.

You can see how these parts connect to the land behind them. The farthest point the water reaches during a storm is often a belt of dunes.

Priel im Sahlenburger Watt.jpg
Priel im Sahlenburger Watt.jpg
Wind carries fine sand from the beach to create these dunes. To stop the wind from moving the sand too much, plants like beach grass grow there. These plants help hold the dunes in place. People also use stone walls or concrete blocks to protect coasts from erosion.

389 words

A flat coast is a shoreline where the land descends gradually into the sea. These coastal environments are typically composed of loose materials, such as sand and gravel.

Flat coast (shematic view).svg
Flat coast (shematic view).svg
They can form in two primary ways. One method involves the sea advancing into terrain that already has a gentle slope. Another method occurs through the abrasion of loose rock by moving water. These coasts are dynamic systems where wind and waves constantly redistribute material. The sea often washes pebbles and sand away from one area and deposits them in another.

The sequence of landforms found on these coasts is known as a littoral series. This series begins in the shoreface, which is a permanently flooded shallow water region.

Litorale Serie Flachküste.png
Litorale Serie Flachküste.png
Within this shoreface, waves transport and deposit material on the seabed to create a bar. A longshore bar is an elongated ridge of sand or gravel that runs parallel to the shore. The sides of these bars usually fall away gently. Between a sandbar and the shore, a basin forms called a runnel or a swale.
Priel im Sahlenburger Watt.jpg
Priel im Sahlenburger Watt.jpg
In some tidal flats, drainage troughs also run parallel to the coast.

Defining the specific boundaries of a flat coast can be difficult because different authors use different terms. The shoreface is often described as an underwater platform subject to constant water movement. Its landward boundary is generally considered the average low-water mark. Some researchers define the beach as the area extending from the low-water mark to the highest high-water mark. This zone is only periodically flooded by waves or storm surges. Other experts refer to the area between mean low and high tides as the intertidal zone or foreshore. They call the area above the high-water mark the supratidal zone or backshore.

On the beach platform, you will often find a specific ridge called a berm. A berm is a bank of sand or gravel that runs parallel to the shoreline. It is usually only a few tens of centimeters high. Berms are formed when breaking waves throw material beyond the average sea level. The coarse-grained material is too heavy to be carried back by the backwash.

TheGulfOfSalerno.jpg
TheGulfOfSalerno.jpg
Because of this, the material remains behind to build the ridge. The size and location of a berm change with the seasons. For instance, winter berms created by storm surges are often higher and more prominent than summer berms.

Storms and normal wave action have opposite effects on the shape of a flat coast. During a storm surge, heavy erosion occurs and the beach profile becomes steeper.

Noel2007 erosion.jpg
Noel2007 erosion.jpg
However, normal wave action tends to build the beach up over time. This can create a series of parallel berms located one behind the other. This process causes a gradual increase in height and can move the shoreline seaward. A notable example of this is Skagen Odde in Denmark. Located on the northern tip of Vendsyssel, this headland is still growing today as new berms are added.

The landward edge of a flat coast is often defined by a belt of dunes. These dunes mark the farthest point inland that a storm surge can reach.

Quinta do Lago beach 1.jpg
Quinta do Lago beach 1.jpg
Wind plays a major role here by transporting fine grains of sand inland over the dunes. To prevent wind erosion, certain plants like sea buckthorn or beach grass colonize the dunes. These plants help stabilize the sand. In areas where humans want to stop erosion, they may use coastal defenses. These include groynes, stone walls, or concrete tetrapods that act as breakwaters.

Understanding flat coasts involves studying the complex relationship between hydrology and geomorphology. The movement of water shapes the seabed through the creation of bars and runnels. Simultaneously, the wind shapes the land through the creation of dunes and the movement of fine sand. These processes show how energy from the ocean and the atmosphere constantly reshapes the Earth's surface. By observing the littoral series, scientists can track how material moves through the coastal system.

668 words
🖼️ Images & Media (6)
File:Flat coast (shematic view).svg
Flat coast (shematic view).svg
File:Litorale Serie Flachküste.png
Litorale Serie Flachküste.png
File:Priel im Sahlenburger Watt.jpg
Priel im Sahlenburger Watt.jpg
File:Quinta do Lago beach 1.jpg
Quinta do Lago beach 1.jpg
File:TheGulfOfSalerno.jpg
TheGulfOfSalerno.jpg
File:Noel2007 erosion.jpg
Noel2007 erosion.jpg
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