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Can a submarine be detected?
Military ASW employs technologies such as magnetic anomaly detectors (MAD), which detect tiny disturbances to Earth’s magnetic field caused by metallic submarine hulls, passive and active sonar sensors that use sound propagation to detect objects underwater, as well as radar and high-resolution satellite imagery to …
How are submarines undetectable?
A submarine can “hide” under a layer of cold water where an active hull-mounted sonar (HMS) can’t reach since the sound wave will bounce off the layer up against the surface. For this reason, surface ships have variable depth sonars (VDS) that they can dip below the layers and search.
Can submarines be detected by sound?
Submarines generate sound from their machinery and crew, and sound waves from other submarines or surface ships are used to find them. But of course submarines don’t want to be found. With the Swedish Navy currently hunting what is believed to be a Russian mini-submarine in Swedish Baltic waters, how can unseen boats below the water be detected?
Is sonar used to hunt submarines?
While sonar is well known, it’s rarely actually used to hunt submarines as it’s too easy to hide from the incoming sound waves. Instead modern anti-submarine warfare systems are actually extremely sensitive listening devices which rely on the submarine giving away its position by the sounds it makes. This is known as passive sonar.
What is the difference between sonar and radar?
Sonar devices reveal objects below the surface by directing sound waves into the ocean and recording the sound waves reflected back. This is called active sonar – a form of echolocation much like that used by bats. Radar is also similar, but uses radio waves instead of sound.
How does sonar work in the deep ocean?
Sonar works well if the submarine has a highly reflective steel surface and is surrounded by water at a constant temperature. But in the deep ocean the water temperature varies, which causes the water density to vary. This changing density creates an effect called the thermocline, which acts as a barrier, causing sound energy to bend away.
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