ANALYSIS OF UNSTEADY MOTION OF A MULTIPHASE FLOW WITH ARTIFICIAL STRATIFICATION
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Keywords

pumping stations self-regulating floating structures vortex flow floating device water intake flow control

How to Cite

Khujakulov, R., Islamov, I., & Tursunov, F. (2026). ANALYSIS OF UNSTEADY MOTION OF A MULTIPHASE FLOW WITH ARTIFICIAL STRATIFICATION . Alternative Energy, 22(1). https://doi.org/10.70769/2181-2284.ME.1(22).2026.9

Abstract

This study investigates the application of floating protective structures utilizing the energy of water flow to maintain favorable hydraulic conditions at pumping station water intake systems. The proposed approach aims to improve flow regulation, enhance hydraulic performance, and increase the operational reliability of large water intake facilities.

Materials and Methods

A differential formulation of the governing equations of fluid motion was developed using a stress distribution method based on an elementary tetrahedral model. The hydrodynamic behavior of unsteady three-dimensional multiphase flows was analyzed using theoretical and computational approaches.

Results

Based on the obtained theoretical principles, fundamentally new self-regulating floating structures were developed. The hydrodynamic characteristics of unsteady three-dimensional flow were refined for different wing profile parameters. The proposed design demonstrated improved flow regulation and enhanced hydraulic efficiency of pumping station water intake systems.

Conclusion

The application of the theory of unsteady three-dimensional multiphase flow enabled the development of efficient floating guiding systems for large pumping station water intakes. The proposed solution improves hydraulic performance, enhances flow stability, and increases the operational efficiency of water intake facilities.

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References

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Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.

Copyright (c) 2026 Xujakulov, R., Islamov, I., Tursunov, F. (Muallif)

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