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Current location :Home>News Center>Technical articles>Acoustic Doppler current meters have achieved remarkable results

Acoustic Doppler current meters have achieved remarkable results

time :2025-12-05 Article Source:automatic weather station author :Small meteorological station

In today's era of rapid development of science and technology, acoustic Doppler current meter, as an efficient and accurate water flow velocity measurement tool, is gradually showing its strong application potential in water conservancy, environmental protection, Marine research and other fields. Today, we will uncover the mystery of acoustic Doppler current meter and see how it becomes the black technology of water velocity monitoring.

The WX-LS6 Acoustic Doppler current meter uses acoustic principles to measure the speed and direction of water flow by transmitting sound waves and receiving the signals they reflect back. Its working principle is based on the Doppler effect, that is, when a sound wave encounters a moving object, its frequency will change, and by measuring this frequency change, the speed of the object can be calculated. This non-contact measurement method not only avoids the flow interference that may be brought by the traditional mechanical current meter, but also realizes the high precision measurement in the complex water environment.

In practical application, the acoustic Doppler current meter has achieved remarkable results. In hydraulic engineering, it can help engineers accurately grasp the speed and direction of water flow, and provide scientific basis for the design and operation of DAMS, hydropower stations and other facilities. In the field of environmental protection, acoustic Doppler current meter can be used to monitor the velocity changes of rivers, lakes and other water bodies, providing an important basis for water quality assessment and pollution control. In Marine research, it plays an irreplaceable role, providing important technical support for Marine resources development and Marine environmental protection.

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