This study carries out a series of complex unsteady three-dimensional (3D) computational analyses that were validated by experimental tests to examine the performance enhancement of a cylindrical shell-and-coil ice storage enclosure by employing various spiral longitudinal fin geometries covering the heat transfer fluid (HTF) tubes throughout the transient process of solid-liquid phase change. The phase change material (PCM) in this work was selected to be water and the tubes and fins were chosen to be made of copper alloy. To study how this type of fin accelerates the charging process, several dimensionless parameters related to the spiral longitudinal fin geometries were defined, which included dimensionless fin length (), count (), and thickness () parameters. Additionally, the impact of fin orientation was evaluated. The findings suggested that raising from 0 to 0.719 reduces the solidification time by 42.29 %. Similarly, changing the from 0 to 6 expedites the process by 50 %. Regarding the changes of , it was observed that even though the freezing dynamic was not sensitive to this parameter in the first half of the process, the effect was more pronounced throughout the second half. Furthermore, with identical heat transfer areas, horizontal fins outperformed the vertical ones by a marginal difference of 3.58 %, which was found to be because of the better distribution of fins within the container.
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http://dx.doi.org/10.1016/j.heliyon.2025.e42786 | DOI Listing |
Heliyon
February 2025
Department of Industrial Engineering, University of Naples Federico II, Naples, Italy.
This study carries out a series of complex unsteady three-dimensional (3D) computational analyses that were validated by experimental tests to examine the performance enhancement of a cylindrical shell-and-coil ice storage enclosure by employing various spiral longitudinal fin geometries covering the heat transfer fluid (HTF) tubes throughout the transient process of solid-liquid phase change. The phase change material (PCM) in this work was selected to be water and the tubes and fins were chosen to be made of copper alloy. To study how this type of fin accelerates the charging process, several dimensionless parameters related to the spiral longitudinal fin geometries were defined, which included dimensionless fin length (), count (), and thickness () parameters.
View Article and Find Full Text PDFMagn Reson Med
March 2025
Department of Biomedical Engineering, University of Delaware, Newark, Delaware, USA.
Purpose: To introduce a novel sequence for achieving fast, whole-brain MR elastography data through the introduction of a magnetization preparation block for motion encoding along with rapid imaging readouts.
Theory And Methods: We implemented MRE motion encoding in a magnetization preparation pulse sequence block, where spins are excited, motion encoded, and then stored longitudinally. This magnetization is accessed through a train of rapid gradient echoes and encoded with a 3D stack-of-spirals trajectory.
Eur J Neurosci
March 2025
Faculty of Behavioural and Movement Sciences, Vrije Universiteit Amsterdam, Amsterdam Movement Sciences-Program Musculoskeletal Health, Amsterdam, the Netherlands.
The evidence for primary motor cortex reorganization in people with low back pain varies and is conflicting. Little is known about its association with motor and sensory tests, and recovery. We investigated primary motor cortex (re)organization and its associations with motor and sensory tests over time in people with (N = 25) and without (N = 25) low back pain in a longitudinal study with a 5-week follow-up.
View Article and Find Full Text PDFSoft Robot
February 2025
Division of Cardiovascular Surgery, Department of Surgery, Shimane University Faculty of Medicine, Matsue, Japan.
The myocardial contracting ratio is approximately 20%, whereas ejection fraction exceeds 60%. Understanding the structure and kinetic mechanisms of the heart that enable this high ejection fraction is crucial in both basic and clinical medicine. However, these mechanisms remain incompletely elucidated.
View Article and Find Full Text PDFArthropod Struct Dev
January 2025
Department of Life Sciences, University of Siena, Siena, Italy. Electronic address:
This study describes the coevolution of sperm length and female spermatheca size in the backswimmer Notonecta glauca. The species exhibits exceptionally long sperm, characterized by an unusually elongated acrosome, a short nucleus, and a long flagellum featuring a conventional 9 + 9+2 microtubular axoneme and two large mitochondrial derivatives. The spermatheca is equally elongated, comprising a spiralized proximal tract with a unique and novel ultrastructure, a long middle cuticular duct, and a terminal bulb.
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