A rail yard is a place for trains. 
A rail yard is a place for trains. 
A rail yard is a large group of tracks. 
Small engines called switchers move the cars. 
Special brakes called retarders slow the cars down.
A rail yard is a large group of tracks in a rail network. 

Sorting cars is a big job that happens in steps. First, cars arrive at receiving tracks.
People have used different types of yards for a long time. Large yards often have a control tower to manage everything.
There are many specific parts inside a large freight yard. 
Not all yards are for freight. Some are called coach yards or stabling yards.
A rail yard is a complex series of tracks within a rail network. 

To move cars and wagons within the yard, workers use specially designed locomotives. In the United States, these are called yard switcher locomotives, while in the United Kingdom, they are known as shunter locomotives. These engines perform the heavy work of moving cars between different tracks. Sorting is a highly organized process. Cars may be categorized by their railway company, their destination, their specific car type, or whether they are loaded or unloaded. Some cars are even set aside if they require mechanical repairs.
Freight yards use different layouts to manage the movement of cargo. A flat yard has no hill and relies entirely on locomotives to move every car. A gravity yard is built on a natural slope to use the pull of gravity. In these yards, locomotives control a consist, which is a group of rail cars, from uphill. The cars are then decoupled and allowed to accelerate toward the classification equipment below. A hump yard uses a constructed hill, or hump. Yard locomotives shove cars over this hill, and then gravity propels them toward various sorting tracks.
In modern hump and gravity yards, automation plays a massive role in efficiency. These yards use mechanical retarders, which act as external brakes, to control the speed of rolling cars. Operators or computers use these retarders along with scales and knowledge of the hill's gradient to manage the cars. This technology allows a first car to roll to a stop at the end of a classification track. Subsequent cars are then slowed down so they can bump and couple gently with the first car. This prevents damage to the equipment. Many yards also use pneumatic, hydraulic, or spring-driven braking retarders to adjust speeds near switch points.
A large freight yard is composed of several distinct functional areas. The receiving yard, or arrival yard, is where cars are detached from locomotives and inspected for mechanical problems. From there, they move to a classification yard, also called a marshalling yard. This is where cars are sorted into blocks based on their destination. Once sorted, the cars move to a departure yard to be assembled into new trains. Other specialized areas include car repair yards for maintenance and engine houses, or roundhouses, to fuel and service locomotives. 
Some yards serve very specific industrial or logistical needs. A staging yard serves an end destination and acts as a collection point. In these yards, a long-haul carrier might drop off empty cars and pick up full ones that have been assembled by local switch engines. This allows the long-haul carrier to complete round trips with minimal turnaround time. A transfer yard is similar, but the local switching service is part of the yard equipment, and industrial customers pay a cargo transfer fee. Additionally, unit trains—which carry a block of cars with the same origin and destination—may use specific unit tracks so they do not have to be sorted in a classification yard.
Not all rail yards are dedicated to freight; many are designed for passenger service. These are called coach yards in the United States, or stabling yards and carriage sidings in the United Kingdom.
Success in a rail yard depends on both human intelligence and advanced technology. Human operators must develop strategies for switching operations to ensure that cars travel the shortest distance possible. The fewer times coupling operations must be performed, the faster the yard can operate. To assist this, modern yards use tracking technologies like RFID to monitor car loads and destinations. This combination of strategic planning and high-tech tools allows long trains to be broken down and reconfigured in remarkable amounts of time.
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