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Oil well

technology Maturity 9-11

People dig deep holes in the ground.

West Texas Pumpjack.JPG
West Texas Pumpjack.JPG
These holes find oil. Oil is used for many things. It helps us move. We use big tools to dig. It is very hard work. Can you see a big machine?
H104.jpg
H104.jpg

42 words

People dig deep holes to find oil.

West Texas Pumpjack.JPG
West Texas Pumpjack.JPG
These holes bring oil to the top. Sometimes they find gas too.
Well Diagram.png
Well Diagram.png
A big machine helps dig the hole. It uses a bit to cut rock. A special liquid called mud helps. The mud cools the bit. It also carries rock bits up. Steel pipes keep the hole strong. This keeps the oil safe. It is a big job.

75 words

An oil well is a deep hole in the Earth. Its job is to bring oil to the surface.

Well Diagram.png
Well Diagram.png
Most wells also let out natural gas. Some wells are made only for gas.
NaturalGasWell.jpg
NaturalGasWell.jpg

Making a well is a big job. It can cost hundreds of thousands of dollars. Drilling in the ocean costs much more.

Development-driller-3.jpg
Development-driller-3.jpg
People first plan the well. They pick a spot to find oil. They also plan the path of the hole.

A drilling rig makes the hole. It uses a drill bit to cut rock.

Three-types-of-PDC-drilling-bits.jpg
Three-types-of-PDC-drilling-bits.jpg
Workers pump a liquid called drilling mud down the hole. This mud cools the bit. It also carries rock pieces back to the top.
Mudlogging.JPG
Mudlogging.JPG
To keep the hole strong, workers add steel pipes. We call these pipes casing. They pump cement around the pipes to hold them in place. Once the well is ready, a pumpjack can help pull the oil up.
West Texas Pumpjack.JPG
West Texas Pumpjack.JPG

164 words

An oil well is a deep hole bored into the Earth. Its main job is to bring petroleum oil to the surface.

Well Diagram.png
Well Diagram.png
Often, natural gas also comes out of the hole along with the oil. Some wells are built to produce only gas.
NaturalGasWell.jpg
NaturalGasWell.jpg
Creating these wells is a very expensive task. It can cost hundreds of thousands of dollars to make one. Drilling in the ocean is even more costly.
Development-driller-3.jpg
Development-driller-3.jpg
Companies sometimes sell wells to each other. This happens because the value of a well changes as oil prices go up or down.

Making a well starts with a careful plan. Engineers and scientists pick a target deep underground. They must design a path, or trajectory, from the surface to that target.

Schematic cross-section of general types of oil and gas resources and the orientations of production wells used in hydraulic fracturing.jpg
Schematic cross-section of general types of oil and gas resources and the orientations of production wells used in hydraulic fracturing.jpg
A drilling rig then begins the work. It uses a drill bit to cut through the rock.
Three-types-of-PDC-drilling-bits.jpg
Three-types-of-PDC-drilling-bits.jpg
To keep things safe, workers pump a liquid called drilling mud down the pipe. This mud cools the bit and carries rock pieces back to the top.
Mudlogging.JPG
Mudlogging.JPG
Workers also add steel pipes called casing to keep the hole strong. They pump cement around these pipes to hold them in place.

People have been looking for oil for a very long time. The earliest known oil wells were drilled in China in 347 CE. These ancient wells used bamboo poles to reach the oil. In the 9th century, a Persian chemist named Muhammad ibn Zakarīya Rāzi distilled oil to make kerosene.

Anglo-Persian Oil Company workers (2).jpg
Anglo-Persian Oil Company workers (2).jpg
Later, in 1854, a Polish pharmacist named Ignacy Łukasiewicz drilled one of the first modern wells in Bóbrka. In North America, the first commercial well started in Ontario in 1858. By 1896, people were even drilling offshore in California.

Modern technology has changed how we reach deep oil. In the past, most wells were just straight vertical holes. Now, we use directional drilling to make wells that curve.

Pump Jack labelled.png
Pump Jack labelled.png
These wells can even become horizontal to reach more oil. This helps us reach oil that is far away or under difficult spots. One famous deep hole is the Kola Borehole. It used a mud motor to reach a depth of over 12,000 meters.
H104.jpg
H104.jpg
Some wells even use hydraulic fracturing to help more oil flow out.

We must be careful with old wells. If a well is not maintained, it can become an abandoned or orphaned well. These wells can leak harmful substances into the air, water, or soil.

Checking oil well on Delta National Wildlife Refuge.jpg
Checking oil well on Delta National Wildlife Refuge.jpg
A 2020 estimate suggested there are at least 29 million abandoned wells around the world. These can release gases that contribute to climate change. When a well is working well, a pumpjack helps pull the oil up.
West Texas Pumpjack.JPG
West Texas Pumpjack.JPG
This is a common sight in places like West Texas.

493 words

An oil well is a drillhole bored into the Earth to extract petroleum hydrocarbons. These hydrocarbons include petroleum oil and associated petroleum gas, which is natural gas released alongside the oil.

Well Diagram.png
Well Diagram.png
Some wells are specifically designed to produce only gas, known as gas wells. Creating these wells is a massive financial undertaking. A single well can cost at least hundreds of thousands of dollars to construct. Costs increase significantly when drilling in difficult locations, such as offshore environments.
Development-driller-3.jpg
Development-driller-3.jpg
Because the value of a well depends on market prices, companies frequently buy and sell them as assets. A well might be unproductive when oil prices are low, but it becomes economically valuable when prices rise.

The drilling process begins with a detailed planning phase. Geologists and geophysicists identify a geologic target to optimize production or confirm a reservoir's existence. Engineers must design a trajectory, which is the planned path from the surface to the target. They must account for variables like lithology, which is the physical characteristics of the rock, and pore pressure.

Schematic cross-section of general types of oil and gas resources and the orientations of production wells used in hydraulic fracturing.jpg
Schematic cross-section of general types of oil and gas resources and the orientations of production wells used in hydraulic fracturing.jpg
The team also selects specific drill bits and drilling fluids for the job. These plans often go through many iterations to ensure safety and cost-efficiency.

To create the well, a drilling rig rotates a drill string with a bit attached to the end. The bit cuts into the rock through compressive failure or by shearing off slices.

Three-types-of-PDC-drilling-bits.jpg
Three-types-of-PDC-drilling-bits.jpg
As the bit moves deeper, workers pump drilling fluid, often called "mud," down the inside of the drill pipe. This fluid exits at the bit to cool it and lift rock cuttings to the surface. The mud also helps prevent the rock from destabilizing and manages fluid pressure.
Mudlogging.JPG
Mudlogging.JPG
The cuttings are then screened out by "shakers" so the fluid can be reused. If formation pressure becomes too high, a "kick" can occur, requiring the use of blowout preventers.

Structural integrity is maintained using steel pipes called casing. As the hole is drilled, sections of casing are placed into the borehole. A cement slurry is then pumped into the annulus, which is the space between the casing and the borehole wall. This process isolates high-pressure zones from the surface and protects the surrounding formations. Modern wells often use two to five sets of progressively smaller casing strings. This layered approach allows engineers to drill deeper into more unstable or high-pressure formations.

Humanity has been extracting oil for centuries, starting with ancient China in 347 CE. Those early wells used bamboo poles and bits to reach depths of up to 200 meters. By the 9th century, the Persian alchemist Muhammad ibn Zakarīya Rāzi distilled petroleum to produce kerosene.

Anglo-Persian Oil Company workers (2).jpg
Anglo-Persian Oil Company workers (2).jpg
In the 19th century, drilling became more modern. In 1854, Ignacy Łukasiewicz drilled one of the first modern wells in Poland. North America saw its first commercial well in Ontario in 1858. By 1896, the industry moved offshore in the Summerland Oil Field of California.

Technological shifts have changed the shape of wells over time. Early modern wells used percussion drilling, which involved repeatedly dropping a bit on a cable. The 20th century introduced rotary drilling, which is much faster and reaches greater depths. While most wells were vertical until the 1970s, modern directional drilling allows for highly deviated or even horizontal wells.

Pump Jack labelled.png
Pump Jack labelled.png
Horizontal wells are useful because they provide more surface area in the production zone. This increases the production rate and allows companies to reach reservoirs located miles away. Some wells also use hydraulic fracturing, which involves injecting liquid to force more production.

While oil wells provide energy, they also present environmental challenges. Neglected or poorly maintained wellheads can leak methane or toxic substances into the air, water, and soil. This problem is most common with abandoned or "orphaned" wells, which are wells no longer maintained by their owners because they are no longer profitable. A 2020 estimate suggested there are at least 29 million abandoned wells worldwide. These wells are a significant source of greenhouse gas emissions that contribute to climate change.

Checking oil well on Delta National Wildlife Refuge.jpg
Checking oil well on Delta National Wildlife Refuge.jpg
When a well is active and producing, devices like pumpjacks are used to bring the oil to the surface.
West Texas Pumpjack.JPG
West Texas Pumpjack.JPG

727 words
🖼️ Images & Media (20)
File:West Texas Pumpjack.JPG
West Texas Pumpjack.JPG
File:Earlyoilfield.jpg
Earlyoilfield.jpg
File:Galicja1881.jpg
Galicja1881.jpg
File:Samuel Jones in Romania, 1896 - DPLA - f4fd80c9bf5c540ba9ffd92d0b90289e.jpg
Samuel Jones in Romania, 1896 - DPLA -...
KITLV - 26871 - Kleingrothe, C.J. - Medan...
File:Anglo-Persian Oil Company workers (2).jpg
Anglo-Persian Oil Company workers (2).jpg
File:Schematic cross-section of general types of oil and gas resources and the orientations of production wells used in hydraulic fracturing.jpg
Schematic cross-section of general types...
File:Three-types-of-PDC-drilling-bits.jpg
Three-types-of-PDC-drilling-bits.jpg
File:Well Diagram.png
Well Diagram.png
File:Casing & Temporary Home.JPG
Casing & Temporary Home.JPG
File:Mudlogging.JPG
Mudlogging.JPG
File:H104.jpg
H104.jpg

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