Critical Analysis of the Coefficient α of Coriolis Critical Analysis of the Coriolis Coefficient α

Article ID

SFRPMYGZ

Highly detailed image of the Coriolis coefficient analysis in scientific research.

Critical Analysis of the Coefficient α of Coriolis Critical Analysis of the Coriolis Coefficient α

Oscarjm Jimenez Medina
Oscarjm Jimenez Medina
DOI

Abstract

The main objective of this research work, is to make a critical analysis of the application, of coefficient α, since it was proposed by Coriolis in 1836. According to the international literature and the internet, widely consulted by the author of this work, the Coriolis coefficient for the correction of the velocity head (kinetic energy), is affirmed and recognized in the conduction fluid flows, because when considering the average velocity (ratio between discharge and velocity), as the average of the actual distribution of velocities occurring in the cross section, an error occurs, due to the non-uniform distribution of velocities. The author of this technical article, in performing a thorough and detailed analysis of the deduction of the coefficient 𝜶𝜶, the continuity equations, Bernoulli (laws of conservation of mass and energy, respectively, applied to the flow of fluids), as well as the general formulas of fluid resistance, Weisbach-Darcy, etc. has come to the conclusion that while the coefficient of Coriolis actually exists, the way in which it has been used is not the right one.

Critical Analysis of the Coefficient α of Coriolis Critical Analysis of the Coriolis Coefficient α

The main objective of this research work, is to make a critical analysis of the application, of coefficient α, since it was proposed by Coriolis in 1836. According to the international literature and the internet, widely consulted by the author of this work, the Coriolis coefficient for the correction of the velocity head (kinetic energy), is affirmed and recognized in the conduction fluid flows, because when considering the average velocity (ratio between discharge and velocity), as the average of the actual distribution of velocities occurring in the cross section, an error occurs, due to the non-uniform distribution of velocities. The author of this technical article, in performing a thorough and detailed analysis of the deduction of the coefficient 𝜶𝜶, the continuity equations, Bernoulli (laws of conservation of mass and energy, respectively, applied to the flow of fluids), as well as the general formulas of fluid resistance, Weisbach-Darcy, etc. has come to the conclusion that while the coefficient of Coriolis actually exists, the way in which it has been used is not the right one.

Oscarjm Jimenez Medina
Oscarjm Jimenez Medina

No Figures found in article.

Oscarjm Jimenez Medina. 2026. “. Global Journal of Science Frontier Research – A: Physics & Space Science GJSFR-A Volume 23 (GJSFR Volume 23 Issue A2): .

Download Citation

Journal Specifications

Crossref Journal DOI 10.17406/GJSFR

Print ISSN 0975-5896

e-ISSN 2249-4626

Classification
GJSFR-A Classification: DDC Code: 346.730467905 LCC Code: K5
Keywords
Article Matrices
Total Views: 1183
Total Downloads: 29
2026 Trends
Research Identity (RIN)
Related Research
Our website is actively being updated, and changes may occur frequently. Please clear your browser cache if needed. For feedback or error reporting, please email [email protected]

Request Access

Please fill out the form below to request access to this research paper. Your request will be reviewed by the editorial or author team.
X

Quote and Order Details

Contact Person

Invoice Address

Notes or Comments

This is the heading

Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.

High-quality academic research articles on global topics and journals.

Critical Analysis of the Coefficient α of Coriolis Critical Analysis of the Coriolis Coefficient α

Oscarjm Jimenez Medina
Oscarjm Jimenez Medina

Research Journals