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Foundation (engineering)

technology Maturity 9-11

A foundation holds a building up.

Mock foundations for House and Apartment.png
Mock foundations for House and Apartment.png
It connects the house to the ground. It helps the building stay still. This keeps the walls straight. It stops the house from sinking.
Lincoln Park Affordable Housing Phase 2 (53566542487).jpg
Lincoln Park Affordable Housing Phase 2 (53566542487).jpg
It is very important. Do you see any big buildings?

53 words

A foundation connects a building to the ground.

Mock foundations for House and Apartment.png
Mock foundations for House and Apartment.png
It helps spread the weight. This stops the building from sinking.
Lincoln Park Affordable Housing Phase 2 (53566542487).jpg
Lincoln Park Affordable Housing Phase 2 (53566542487).jpg
It also keeps things steady. It protects buildings from wind or floods. Some foundations are shallow. They sit just below the dirt. Other foundations are deep. They go down to strong soil.
Lotyšské etnografické muzeum v přírodě (91).jpg
Lotyšské etnografické muzeum v přírodě (91).jpg
This keeps big buildings safe. A good foundation makes a strong home.

82 words

A foundation is the part that connects a building to the ground.

Mock foundations for House and Apartment.png
Mock foundations for House and Apartment.png
It has a very important job. It carries the weight of the structure to the earth. This helps spread the weight over a large area. Spreading the weight stops the building from sinking too much.
Lincoln Park Affordable Housing Phase 2 (53566542487).jpg
Lincoln Park Affordable Housing Phase 2 (53566542487).jpg
Foundations also keep buildings steady. They help hold a structure against wind, floods, or even earthquakes.

There are two main kinds of foundations. The first kind is a shallow foundation. These are often called footings. They sit just a little way into the soil. One type is a slab-on-grade. This is a thick concrete floor that sits on the surface.

Construcción de una cimentación por zapata aislada.ogv
Construcción de una cimentación por zapata aislada.ogv

The second kind is a deep foundation. These go down through weak soil. They reach stronger soil or rock deep below. This is used for very big buildings. Some deep foundations are called monopiles. These are large single parts that go deep into the earth.

Lincoln Park Affordable Housing Phase 2 (53566542487).jpg
Lincoln Park Affordable Housing Phase 2 (53566542487).jpg
They can even support wind turbines in the ocean.

188 words

A foundation is a very important part of any structure. It connects a building to the ground or sometimes to water.

Mock foundations for House and Apartment.png
Mock foundations for House and Apartment.png
The main job is to transfer loads from the building to the earth. This helps spread the weight over a large area. Spreading the weight stops the soil from being overloaded. If the soil is overloaded, the building might sink unevenly. This uneven sinking is called differential settlement.
Stompwijkseweg 68-70, Stompwijk, Netherlands.JPG
Stompwijkseweg 68-70, Stompwijk, Netherlands.JPG

Foundations work in a few different ways to keep things steady. Engineers use soil and rock mechanics to design them.

Lincoln Park Affordable Housing Phase 2 (53566542487).jpg
Lincoln Park Affordable Housing Phase 2 (53566542487).jpg
They must also anchor the building against natural forces. These forces include wind, floods, and even earthquakes. A good foundation provides a level surface for construction. It can also prevent lateral movements, which are side-to-side shifts. Sometimes, foundations must deal with soil that swells or shrinks. This often happens because of changes in temperature.

People have been building foundations for a very long time. In the past, some people used wood in contact with the ground.

Lotyšské etnografické muzeum v přírodě (91).jpg
Lotyšské etnografické muzeum v přírodě (91).jpg
This is sometimes called post in ground construction. Other people used timber pilings for soft or wet ground. The simplest type is a padstone. A padstone is a single stone that spreads weight. It also raises timber off the ground. In marine building, people used a crisscross of beams called grillage.

There are two main types of modern foundations. Shallow foundations are often called footings. They are usually buried about one meter into the soil.

Construcción de una cimentación por zapata aislada.ogv
Construcción de una cimentación por zapata aislada.ogv
One kind is a slab-on-grade foundation. This is a concrete slab placed at the surface. Deep foundations are used to reach stronger layers of soil. They go through weak topsoil to reach subsoil or rock. These can include drilled shafts, caissons, or screw piles.

Deep foundations are used for very large structures. One type is a monopile foundation. This uses a single, large element to support weight and wind.

Foundation 2.jpg
Foundation 2.jpg
These are used for offshore wind farms in the ocean. For example, a wind farm near England used many monopiles in 2008. Each pile was 4.74 meters in diameter. They sat in water up to 16 meters deep. Some foundations even sit on water as floating barges. This is helpful for certain bridges and buildings.

396 words

In engineering, a foundation is the essential element that connects a structure to the ground. In some rare cases, it connects a structure to water, such as with floating buildings. The primary role of a foundation is to transfer loads from the structure to the earth. This process ensures that the weight of the building is distributed over a large enough area. By doing this, the foundation prevents the underlying soil from being overloaded. If the soil cannot support the weight, it may cause the building to sink.

Mock foundations for House and Apartment.png
Mock foundations for House and Apartment.png

Foundation engineering is a specialized field. It applies soil mechanics and rock mechanics, which is often called geotechnical engineering, to the design of these elements. A successful foundation must accomplish several tasks to ensure stability. It must provide a level surface for construction and anchor the building against natural forces. These forces include wind, floods, droughts, and frost heaves. It also helps protect the structure from earthquakes and tornadoes. Additionally, foundations can prevent lateral movements, which are side-to-side shifts of the structure.

To work correctly, a foundation must sustain and transmit both dead loads and imposed loads to the soil. Dead loads are the weight of the structure itself, while imposed loads are the weights added later. A major goal is to avoid settlement, which is when the ground sinks under the weight. Engineers are especially concerned with differential settlement. This occurs when one part of a foundation settles more than another part. Such uneven movement can cause serious stability issues. To prevent this, engineers may design a rigid base. They must also account for expansive clay soils. These soils can shrink or swell due to temperature changes, which creates distress in the structure.

Foundations have a very long history in human construction. Historically, some structures used earthfast or post-in-ground construction. This involved building with wood in direct contact with the ground. In soft or wet areas, builders used timber pilings beneath stone or masonry walls. One of the simplest historical types is the padstone. A padstone is a single stone that spreads weight and raises timber off the ground. In marine construction, builders used a crisscross of timbers or steel beams in concrete called grillage. Other ancient methods included dry stone foundations or stones laid in mortar.

Lotyšské etnografické muzeum v přírodě (91).jpg
Lotyšské etnografické muzeum v přírodě (91).jpg

Modern engineering generally categorizes foundations into two main types: shallow and deep. Shallow foundations, often called footings, are usually embedded about one meter into the soil. One common type is the spread footing. These consist of strips or pads of concrete that extend below the frost line. Another type is the slab-on-grade foundation. This transfers weight through a concrete slab placed at the surface. These slabs can be reinforced mat slabs, ranging from 25 cm to several meters thick. They can also be post-tensioned slabs, which are typically at least 20 cm thick for houses.

Construcción de una cimentación por zapata aislada.ogv
Construcción de una cimentación por zapata aislada.ogv

Deep foundations are used when the upper layers of topsoil are too weak to support a load. These foundations transfer the weight down to a stronger layer of subsoil or bedrock below. There are many different types of deep footings. These include impact driven piles, drilled shafts, caissons, and geo-piers. Engineers also use earth-stabilized columns and screw piles. Historically, piles were made of wood, but they later transitioned to steel and reinforced concrete. Some deep foundations, called monopiles, use a single large-diameter element to support all the weight and wind loads.

Foundation 2.jpg
Foundation 2.jpg

Monopile foundations are particularly important for modern energy technology. They are used to construct fixed-bottom offshore wind farms in shallow-water subsea locations. For example, a wind farm off the coast of England went online in 2008. This farm included over 100 turbines. Each turbine was mounted on a monopile footing with a diameter of 4.74 meters. These foundations were placed in ocean depths of up to 16 meters. Beyond land and sea floors, some structures use floating foundations. These sit on a body of water, much like a floating barge. This method is used for certain bridges and floating buildings.

Stompwijkseweg 68-70, Stompwijk, Netherlands.JPG
Stompwijkseweg 68-70, Stompwijk, Netherlands.JPG

696 words
🖼️ Images & Media (6)
File:Mock foundations for House and Apartment.png
Mock foundations for House and Apartment.png
File:Foundation 2.jpg
Foundation 2.jpg
File:Lincoln Park Affordable Housing Phase 2 (53566542487).jpg
Lincoln Park Affordable Housing Phase 2...
File:Lotyšské etnografické muzeum v přírodě (91).jpg
Lotyšské etnografické muzeum v přírodě (91).jpg
Construcción de una cimentación por...
File:Stompwijkseweg 68-70, Stompwijk, Netherlands.JPG
Stompwijkseweg 68-70, Stompwijk, Netherlands.JPG
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