Allicdata Part #: | FZUYP5E5EAAF096-ND |
Manufacturer Part#: |
FZUYP5E5EAAF096 |
Price: | $ 1.39 |
Product Category: | Uncategorized |
Manufacturer: | Panduit Corp |
Short Description: | OM4 24-FIBER, SMALL DIAMETER, IN |
More Detail: | N/A |
DataSheet: | FZUYP5E5EAAF096 Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 1.26000 |
Series: | * |
Part Status: | Active |
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FZUYP5E5EAAF096 is a type of technology that can be used in various applications. It is a combination of the acoustic Doppler current profiler (ADCP) and the ultrasonic Doppler velocity profiler (UDVP). By utilizing the less-intrusive technology of the UDVP and the more-precise measurements offered by the ADCP, the FZUYP5E5EAAF096 system is able to provide an integrated measured and calculated velocity profile for any size of waterway.
The FZUYP5E5EAAF096 system is commonly used to measure surface water velocity in rivers, streams, lakes, and coastal waters. This system can provide a greater accuracy in water velocity measurements compared to traditional methods. By using both the ADCP and UDVP, it is also able to calculate properties such as the surface shear stress, viscosity, and Reynolds number of the flow. This makes the system useful for applications such as controlling the flow velocity of water in hydropower plants or dams, designing dams, monitoring flow discharge for sources of pollution, etc.
The working principle of the FZUYP5E5EAAF096 system is based on the Doppler sonar technology. This technology uses acoustic sound waves to measure the velocity of walls of water. By sending out a sound wave of a particular frequency, the system can detect the velocity of the water particles by calculating the frequency shift that occurs when the sound wave reflected off the particles. This change in frequency is known as the Doppler effect.
The FZUYP5E5EAAF096 system uses two different techniques, each based on the Doppler principle. The first technique is the acoustic Doppler current profiler (ADCP). This technique uses low-frequency acoustic signals to measure the speed of the flow. The ADCP is used in depths up to 400 m and is used to measure the surface and sub-surface velocities in rivers, lakes, and coastal waters. The second technique is the ultrasonic Doppler velocity profiler (UDVP). This technique uses ultra-high-frequency sound to detect the velocity of water particles. The UDVP is used for water depths up to 2000 m and is used for measuring the surface and sub-surface velocities in large oceans and coastal waters.
In addition to measuring water velocity, the FZUYP5E5EAAF096 system can also be used to measure other properties of water, such as wave height, wave direction, surface area, and wave period. This makes the system an invaluable tool for a wide range of applications, including wave prediction, ship navigation, oceanic research, etc.
In conclusion, the FZUYP5E5EAAF096 system is a powerful and versatile tool for measuring water velocity and other properties. With its ability to measure both surface and sub-surface velocities in depths up to 2000 m, the system is useful for a wide range of applications, ranging from controlling water velocity in hydropower plants to wave prediction in navigation. The system works by utilizing the Doppler sonar technology, which uses acoustic sound waves to measure the velocity of particles in the water.
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