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- W4308574790 abstract "In recent years, with the development of computer science and technology, computer analysis methods have become an important scientific method for solving fluid engineering and other problems in today's society. Fluid dynamics has always been a popular research direction in the academic circle and the industry. In-depth, the radial fluid diffusion problem has gradually become the focus of this field. The purpose of this article is to explore the relationship between radial fluid diffusion and time scale based on computer analytical methods. This article first describes the solution process of computational fluid dynamics based on computer analytical methods, and analyzes the radial fluid dynamic axis, the movement direction of fluid particles, and the velocity of fluid particles. Then through experimental simulation, observe the fluid diffusion process, explore the relationship between radial fluid diffusion and time scale, and the influence of material structure on the diffusion results. Experimental data shows that when the contact angle is 1 degree, the absorption rate is 97.8%, when the contact angle is 45 degrees, the absorption rate is 84.7%; when the contact angle is 89 degrees, the absorption rate is 7.6%. This shows that the smaller the contact angle, the larger the contact area between the liquid and the solid fabric." @default.
- W4308574790 created "2022-11-12" @default.
- W4308574790 creator A5051689229 @default.
- W4308574790 date "2022-10-11" @default.
- W4308574790 modified "2023-10-18" @default.
- W4308574790 title "Relationship between Radial Fluid Diffusion and Time Scale Based on Computer Analytical Method" @default.
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- W4308574790 doi "https://doi.org/10.23919/wac55640.2022.9934645" @default.
- W4308574790 hasPublicationYear "2022" @default.
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