Pipeline
Adapted from Wikipedia · Adventurer experience
A pipeline is a system of pipes that carries liquids or gases over long distances to where they are needed. Pipelines form a big network all around the world. By 2025, the total length of these pipelines is expected to be about 2.19 million kilometers, with most in North America. The United States has the most, followed by Russia and Canada.
Many things can travel through pipelines. These include oil, natural gas, biofuels, water, sewage, and even beer! Pipelines help bring clean water for drinking and irrigation, especially over hills or where other methods like canals are not practical.
Oil pipelines are usually made from steel or plastic tubes and are often buried underground. Pump stations help move the oil along. Natural gas pipelines are made from carbon steel and work by pressing the gas into liquids. Pipelines are one of the safest ways to move materials compared to using roads or trains. However, because they carry important resources, pipelines can sometimes be affected during conflicts.
Oil and natural gas
See also: List of oil pipelines and List of natural gas pipelines
The first crude oil pipeline was built in the 1860s. It carried oil from a field in Pennsylvania to a railroad station in Oil Creek. Some early pipelines were built under the sea across the English Channel in 1944 to help supply fuel for wars.
Pipelines are usually the cheapest way to move large amounts of oil, refined oil products, or natural gas over land. Moving oil by pipeline costs less than by train or truck. In the United States, most oil and petroleum products travel by pipeline. In Canada, almost all natural gas and petroleum products move this way too.
Natural gas can be turned into liquids that are easier to move. Small places near oil fields can change natural gas into liquids for shipping by train, truck, or pipeline. Propane, a type of natural gas liquid, can heat things in oil fields or fuel vehicles.
Many oil companies in places like North Dakota separate natural gas liquids at the oil field. This lets them sell propane directly, skipping big refineries. A major pipeline started in 2012 brings natural gas from Pennsylvania into Canada.
This new pipeline from the United States replaced gas that used to come from western Canada, saving money on shipping. Many oil producers in North Dakota send oil north to Canada to reach more markets. In 2012, the United States also started selling propane to Europe because the price there is higher.
As more pipelines are built in North America, more natural gas products are exported from the United States. North Dakota’s oil production grew a lot between 2007 and 2015. While trains can move oil to different markets, pipelines are still the cheapest way for moving large amounts.
Enbridge in Canada plans to change an old pipeline to carry oil from west to east. This will bring more oil to refineries in several states and provinces.
Although pipelines can be built under the sea, it is harder and more expensive, so most oil at sea is moved by ships. Natural gas is sometimes moved as a special liquid form, but which is cheaper depends on how much gas there is and how far it needs to go.
Growth of market
The market for building oil and gas pipelines grew a lot before 2008. After a slow time in 2009, building more pipelines started again as energy production increased. By 2012, thousands of miles of new pipelines were being planned or built in North America.
Construction and operation
Oil pipelines are made from steel or plastic tubes. They are usually buried a few feet in the ground to keep them safe. Special methods protect the pipes from damage and rust.
Crude oil can get waxy in cold weather, so special devices called “pigs” are used to clean and check the pipes. These devices travel through the pipeline and can remove wax or find problems.
Natural gas pipelines are made from strong steel and come in different sizes. The gas is pushed along by compressor stations. Sometimes a smelly chemical is added so people can notice gas leaks.
Ammonia
The Russian–Ukrainian Transammiak line was once the longest ammonia pipeline in the world. It stretched 2,500 km from the TogliattiAzot facility in Russia to the port of Odesa in Ukraine, which is on the Black Sea. However, it was damaged during the Russian invasion of Ukraine.
Alcohol fuels
See also: Biobutanol
Pipelines can carry ethanol in places like Brazil. There are plans for more ethanol pipelines in Brazil and the United States. Moving ethanol through pipelines can be tricky because it can damage the pipes and pick up water and impurities. Unlike oil and natural gas, ethanol is harder to move this way. Also, there often isn’t enough ethanol to make building these pipelines worth it, and it can be costly. In the United States, only small amounts of ethanol travel by pipeline. Most is moved by train, truck, or barge. Pipelines could be the best way to deliver ethanol, but they need special care because ethanol mixes easily with water and can dissolve certain materials.
Coal and ore
Slurry pipelines can carry coal or ore from mines. The material is mixed with water before it goes into the pipeline, and it must be dried when it reaches the end. One example is a planned 525-kilometre pipeline to move iron ore from the Minas-Rio mine to the Port of Açu in Brazil. Another example is the 85-kilometre Savage River Slurry pipeline in Tasmania, Australia, which was built in 1967.
Hydrogen
Main article: Hydrogen pipeline transport
Hydrogen pipeline transport moves hydrogen through pipes. It connects places where hydrogen is made to places where it is needed. Most hydrogen is made close to where it is used, but sometimes it travels long distances. The Rhine-Ruhr hydrogen pipeline, built in 1938, is still in use today.
Special materials are needed for hydrogen pipelines to keep them safe. Rules like ASME B31.12 help make sure the pipes stay strong.
Water
Main article: Water transportation
See also: Aqueduct (watercourse) and History of water supply and sanitation
Long ago, the ancient Romans built structures called aqueducts to carry water from higher places to lower places. This helped bring water to many places in Europe. In China, people also used special pipes and channels to move water.
Today, pipelines are great for moving water over long distances, especially when it must go over hills or where other methods like canals aren't good choices. Some big water pipelines include one in Western Australia that was finished in 1903 and two in Los Angeles, California, finished in 1913 and 1970. There's also a very long pipeline in Libya that brings a lot of water every day to several cities.
Other systems
District heating
Main article: District heating
District heating systems use pipes to carry warm water or steam to homes and buildings. Steam can be very hot and is useful for some factory work, but it loses heat quickly. These systems usually have storage to keep up with busy times. Heat moves into homes through special devices called heat exchangers.
Beer
Some places use special pipelines to move beer. A big sports stadium in Germany has a long beer pipeline connecting its bars. In Denmark, a city once had a beer pipeline that started at a brewery. In Belgium, a new beer pipeline was built in 2016 to help keep traffic away from city streets.
Brine
The village of Hallstatt in Austria has an old pipeline made from hollow tree trunks. Built in 1595, it moved salty water over 40 kilometres to another town.
Milk
From 1978 to 1994, a special pipeline moved milk from an island in the Netherlands to the mainland. The pipeline was 15 kilometres long and went under the sea for part of the way. Every day, it carried milk for processing.
Pneumatic transport
Main article: Pneumatic tube
Pneumatic tubes use air pressure to move small solid items through a tube. They were popular a long time ago for moving things like papers in offices or money in banks. Today, most places use computers instead, but some places like hospitals still use them for quick delivery of medicines or samples.
Marine pipelines
Main article: Submarine pipeline
Sometimes, pipelines need to cross water, like small seas, straits, or rivers. When this happens, the pipelines lie on the seabed and are called marine pipelines. They are also known as submarine or offshore pipelines. These pipelines mainly carry oil or gas, but they can also move water.
In offshore projects, there are two types of pipelines: flowlines and export pipelines. Flowlines connect underwater wells, manifolds, and platforms within one area. Export pipelines bring the resources from the sea to the shore. Building and taking care of marine pipelines is tricky because of waves, currents, and other natural dangers under the water.
Functions
Pipelines have three main types, and each has a different job. Gathering pipelines are short and small. They bring oil or gas from nearby wells to a processing plant. Transportation pipelines are long and big. They move oil, gas, or other products between cities, countries, and even continents. They have special stations to keep the flow going. Distribution pipelines are smaller. They take the products to homes, businesses, and storage places for everyday use.
Development and planning
Building a pipeline takes a lot of work. It includes laying pipes and setting up stations to move liquid or gas. The pipeline follows a special path called a "right of way."
There are several steps to build a pipeline. First, companies find out if people will use it. Then, they pick the best path and get permission to use the land. Next, they design the pipeline, which might be new or an update to an old one. They also need approval from government groups to make sure it is safe and follows rules.
After the design is ready, workers check the land, clear the path, and dig trenches. They lay the pipes, add valves, and cover everything back up. Finally, they test the pipeline to make sure it is strong and safe to use.
Russia has special teams that build and fix pipelines. In the United States, government groups review pipeline projects to make sure they are safe for the environment and communities.
Operation
Pipelines have special devices along them that measure flow, pressure, and temperature. These devices send the information to nearby units. The units then send the data to a central control room using things like satellites or cell phones.
In the control room, all the data comes together. Operators watch screens showing how the pipeline is doing. They can send commands to open or close valves and turn equipment on or off. Some companies use software tools to help find leaks and track batches of liquid.
Technology
Pipeline networks move liquids or gases from one place to another. The main parts include:
- Initial injection station: This is where the product enters the pipeline. It often has storage areas and pumps or compressors.
- Compressor/pump stations: These help move the product through the pipeline. Pumps are used for liquids, and compressors are used for gases.
- Partial delivery station: These stations let the operator deliver some of the product along the way.
- Block valve station: These stations help protect the pipeline by allowing operators to close off parts of the line if needed.
- Regulator station: These stations reduce pressure in the pipeline, often located on downhill slopes.
- Final delivery station: This is where the product leaves the pipeline to reach consumers.
To keep pipelines safe, companies use different methods to detect leaks. They follow rules set by governments. One common way to monitor pipelines is called Computational Pipeline Monitoring (CPM). CPM uses information about pressure, flow, and temperature to spot any unusual changes.
When a pipeline passes under a road or railway, it is often placed inside a protective tube called a casing. This casing has vents to let air out and help workers check for leaks.
Implementation
Pipelines are often placed underground to keep the temperature steady. Since they are made of metal, being underground helps them stay the same size even when the weather changes. Sometimes, pipelines cross valleys or rivers using a special pipeline bridge. For heating systems, pipelines can be placed on the ground or above it. In places where the ground is frozen, like where the Trans-Alaska Pipeline runs, pipelines are often built above ground to keep the soil from melting.
Maintenance
Keeping pipelines safe means checking them and looking for problems like damage or leaks. Workers watch the pipelines from the ground, in cars, boats, or even airplanes. They also send special tools called cleaning pigs through the pipes to remove anything that could cause harm.
In the United States, rules for keeping natural gas and petroleum liquid pipelines safe are written in special government books called the Code of Federal Regulations.
Regulation
In the United States, pipelines that carry oil and gas are watched over by groups like the Pipeline and Hazardous Materials Safety Administration. Some pipelines out at sea are looked after by the Minerals Management Service. In Canada, different areas have their own rules, but if a pipeline goes between areas or into the United States, the National Energy Board steps in to help.
Both Canada and the United States have rules to keep underground fuel pipelines safe from rust. One common way is to cover them with a special layer and use technology to watch over them. When pipelines are above ground, the special layer helps keep them protected.
Pipelines and geopolitics
Pipelines that carry important energy resources like petroleum and natural gas are more than just trade tools. They also affect geopolitics and international security. Where these pipelines are built, placed, and controlled often matters a lot to states.
One well-known example happened in early 2009. A disagreement between Russia and Ukraine about prices turned into a big political problem. Russia’s state-owned gas company Gazprom stopped sending natural gas to Ukraine when talks with the Ukrainian government failed. This also stopped gas to parts of Southeastern Europe, Central Europe, and Western Europe, causing trouble in countries that relied on Russian gas.
Hazard identification
Pipelines can sometimes have leaks, which can be dangerous. When oil spills from pipelines above the ground, it often turns into vapor quickly. This makes it easier to clean up before it spreads far.
If a buried pipeline leaks, the spilled oil and chemicals can mix with rainwater and seep into the ground water we use for drinking. Some chemicals can be harmful.
It is easier to check above-ground pipelines for leaks because any spilled oil is easy to see. Buried pipelines are harder to monitor because small leaks can go unnoticed. Buried pipes are safer in some ways because they are protected from weather, animals, and accidents.
Exposure
Studies show that the worst situations for exposure can be limited. Thanks to better detection and quick shutdown methods by TransCanada, the chance of a large spill harming groundwater with benzene is very low. Systems check pressure and flow every five seconds to find and stop leaks fast. This means any benzene exposure would mostly come from very small leaks that are not noticed for a long time.
Benzene is a chemical that mixes with water and evaporates quickly. It is not fully known how temperature and depth affect benzene, but it is thought that benzene in oil would mix with water before it evaporates. Even in the worst case, only small amounts of benzene are expected to reach groundwater. While some water could be affected, detailed studies have not been done to measure exactly how much.
Accidents and dangers
Pipelines can help a country's economy, but they can also be targets during wars or by people who want to cause harm. Moving fuels by pipeline can be safer than using trucks or trains, as pipelines usually cause less harm to people and property.
Pipelines that carry flammable materials like natural gas or oil can be dangerous. Problems can happen because of damage to the pipes, mistakes in operating them, or when people dig near pipelines without checking first.
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