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BerBeamCal

This BerBeamCal APP focuses on the fields of water conservancy engineering and fluid mechanics, integrating five core calculation modules to help you efficiently solve complex engineering problems:

This BerBeamCal APP focuses on the fields of water conservancy engineering and fluid mechanics, integrating five core calculation modules to help you efficiently solve complex engineering problems:

BerBeamCal

by Christopher Haverford

What is it about?

This BerBeamCal APP focuses on the fields of water conservancy engineering and fluid mechanics, integrating five core calculation modules to help you efficiently solve complex engineering problems:

App Details

Version
1.0
Rating
NA
Size
3Mb
Genre
Productivity
Last updated
June 4, 2025
Release date
June 4, 2025
More info

App Store Description

This BerBeamCal APP focuses on the fields of water conservancy engineering and fluid mechanics, integrating five core calculation modules to help you efficiently solve complex engineering problems:

Bernoulli theorem for head loss: Based on the Bernoulli equation, combined with the along-the-way and local resistance coefficients, it accurately calculates the energy loss in fluid flow, and supports parameter input in multiple scenarios such as pipelines and open channels.
Stability Number: Through the linkage of Manning's formula and Xie Cai's formula, it quickly evaluates the stability of channel slopes, intuitively presents the dynamic relationship between flow velocity, water depth and slope, and assists in optimizing water conservancy structure design.
Delta To Star Conversion: For equivalent impedance calculation in fluid control systems, it provides a convenient circuit topology conversion tool, completes impedance parameter conversion with one click, and simplifies the pipeline network hydraulic analysis process.
Required Beam Dimension: Applicable to optical monitoring scenarios such as laser flow measurement, combined with the principles of geometric optics, according to the incident angle and refraction angle of the beam, the size of the fluid cross-section monitoring area can be accurately calculated.
Specific Energy Head: Based on the conservation of cross-sectional energy, it automatically solves the critical water depth and specific energy extreme value, assists in judging the open channel flow state (rapid flow/slow flow), and provides data support for the analysis of hydraulic phenomena such as water jump and weir flow.

The APP interface is simple and intuitive, suitable for engineers, scientific researchers, and university teachers and students. Whether it is pipeline design, channel planning or fluid experiment, it can become a necessary tool for you to improve efficiency!

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