非牛顿流体流过可变形的旋转圆盘:精确的流动/热解决方案

IF 6.4 2区 工程技术 Q1 MECHANICS
Mustafa Turkyilmazoglu , Abdulaziz Alotaibi
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引用次数: 0

摘要

本文给出了在横向外磁场作用下,由旋转和变形圆盘驱动的非牛顿流体的流动和传热的精确解。这些三维解是指数形式的,完全满足边界层方程在远场的渐近衰减条件。这种解的存在性取决于材料性质和驱动机制,其边界由解析确定。数值模拟成功地证实了这种属于可变形旋转盘族的精确非牛顿解。我们进一步证明,在特定情况下,解坍缩为纯径向膨胀或纯刚体旋转主导的二维对应解。这些简化的解提供了一个有价值的工具,用于测试通常用于模拟类似物理现象的数值格式的有效性,在未来的研究旋转盘问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-Newtonian fluid flows over deformable rotating disk: Exact flow/heat solutions
This study presents exact solutions for flow and heat transfer in non-Newtonian fluids driven by a rotating and deforming disk under a transverse external magnetic field. These three-dimensional solutions are of exponential form, fully satisfying the asymptotic decay conditions of the boundary layer equations in the far field. The existence of such solutions depends on the material properties and driving mechanisms, with their boundaries determined analytically. Numerical simulations confirm successfully such exact non-Newtonian solutions belonging to the deformable rotating disk family. We further demonstrate that under specific circumstances, the solutions collapse to two-dimensional counterparts dominated by either pure radial dilation or pure rigid-body rotation. These simplified solutions offer a valuable tool for testing the validity of numerical schemes commonly used to simulate similar physical phenomena in future studies of the rotating disk problem.
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来源期刊
CiteScore
11.00
自引率
10.00%
发文量
648
审稿时长
32 days
期刊介绍: International Communications in Heat and Mass Transfer serves as a world forum for the rapid dissemination of new ideas, new measurement techniques, preliminary findings of ongoing investigations, discussions, and criticisms in the field of heat and mass transfer. Two types of manuscript will be considered for publication: communications (short reports of new work or discussions of work which has already been published) and summaries (abstracts of reports, theses or manuscripts which are too long for publication in full). Together with its companion publication, International Journal of Heat and Mass Transfer, with which it shares the same Board of Editors, this journal is read by research workers and engineers throughout the world.
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