| _version_ | 1866901394235064320 |
|---|---|
| author | Croft, John Wayne |
| author_facet | Croft, John Wayne |
| contents | <p>The Kinetic Fluid Imbalance System (KFIS) is a novel conceptual design developed by John Wayne Croft that explores a new approach to sustaining directional motion through fluid-dynamic imbalance, inertial mass distribution, and ultra-low-friction mechanics.</p> <p>Engineered as a sealed, rotating vacuum chamber with a sinusoidally curved internal fluid path, KFIS utilizes a dual-fluid medium (water and light oil) and internal guiding structures to promote continuous unidirectional fluid motion. This system is designed to retain kinetic energy passively without motors, pumps, or external forces beyond an initial impulse.</p> <p>This white paper outlines the core concept, engineering rationale, theoretical foundations, and potential real-world applications—including use in energy systems, satellite stabilization, timekeeping mechanisms, and scientific research platforms. The document is presented for public disclosure to establish prior art and invite constructive exploration within the fields of mechanical engineering and advanced fluid dynamics. <strong>All Rights Reserved.</strong><br>No part of this work may be reproduced, distributed, or used for commercial or derivative purposes without the express permission of the author.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_15207013 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Kinetic Fluid Imbalance System Croft, John Wayne fluid dynamics, kinetic energy retention, perpetual motion, closed-loop system, rotational imbalance, vacuum mechanics, sinusoidal flow channel, dual-fluid system, KFIS, mechanical energy systems <p>The Kinetic Fluid Imbalance System (KFIS) is a novel conceptual design developed by John Wayne Croft that explores a new approach to sustaining directional motion through fluid-dynamic imbalance, inertial mass distribution, and ultra-low-friction mechanics.</p> <p>Engineered as a sealed, rotating vacuum chamber with a sinusoidally curved internal fluid path, KFIS utilizes a dual-fluid medium (water and light oil) and internal guiding structures to promote continuous unidirectional fluid motion. This system is designed to retain kinetic energy passively without motors, pumps, or external forces beyond an initial impulse.</p> <p>This white paper outlines the core concept, engineering rationale, theoretical foundations, and potential real-world applications—including use in energy systems, satellite stabilization, timekeeping mechanisms, and scientific research platforms. The document is presented for public disclosure to establish prior art and invite constructive exploration within the fields of mechanical engineering and advanced fluid dynamics. <strong>All Rights Reserved.</strong><br>No part of this work may be reproduced, distributed, or used for commercial or derivative purposes without the express permission of the author.</p> |
| title | Kinetic Fluid Imbalance System |
| topic | fluid dynamics, kinetic energy retention, perpetual motion, closed-loop system, rotational imbalance, vacuum mechanics, sinusoidal flow channel, dual-fluid system, KFIS, mechanical energy systems |
| url | https://doi.org/10.5281/zenodo.15207013 |