机械
微尺度化学
分叉
压力降
分形
流量(数学)
流体力学
热力学
材料科学
统计物理学
数学
物理
数学分析
非线性系统
数学教育
量子力学
作者
Ali Y. Alharbi,Deborah V. Pence,Rebecca N. Cullion
出处
期刊:Journal of Fluids Engineering-transactions of The Asme
[ASME International]
日期:2003-11-01
卷期号:125 (6): 1051-1057
被引量:91
摘要
Flow through fractal-like branching networks is investigated using a three-dimensional computational fluid dynamics approach. Results are used to assess the validity of, and provide insight for improving, assumptions imposed in a previously developed one-dimensional model. Assumptions in the one-dimensional model include (1) reinitiating boundary layers following each bifurcation, (2) constant thermophysical fluid properties, and (3) negligible minor losses at the bifurcations. No changes to the redevelopment of hydrodynamic boundary layers following a bifurcation are recommended. It is concluded that temperature varying fluid properties should be incorporated in the one-dimensional model to improve its predictive capabilities, especially at higher imposed heat fluxes. Finally, a local pressure recovery at each bifurcation results from an increase in flow area. Ultimately, this results in a lower total pressure drop and should be incorporated in the one-dimensional model.
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