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The Solely Use of the “Hydraulic-Diameter” Concept Is Not Sufficient to Describe Correctly Non-Symmetric Flow in Conduits
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作者 Christos Krimizis-Tsatsoulis 《Open Journal of Fluid Dynamics》 2021年第4期210-250,共41页
A well-known cornerstone in fluid mechanics is the equations that relate the friction factor to the Reynolds number obtained from the measurements in cylindrical cross-sectional tubes. The extension of these equations... A well-known cornerstone in fluid mechanics is the equations that relate the friction factor to the Reynolds number obtained from the measurements in cylindrical cross-sectional tubes. The extension of these equations to different geometries failed to give reliable results. The introduction of the Hydraulic Diameter has fixed this issue particularly for the square ducts. However, for non-symmetric flows, as in concentric annuli, the discrepancies were unacceptable. Several attempts have been made to fix these problems with finally the introduction of a new concept like, “Laminar Equivalent Hydraulic Diameter” or “Efficient Hydraulic Diameter” provided satisfactory results. This approach seems to have fixed the problem and hence has been widely accepted. Nevertheless, it is based on a non-robust theoretical argument. In the present paper, it has been demonstrated that the solely use of the “Hydraulic Diameter” concept is insufficient to describe non-symmetric flows as in concentric annuli. It appears the need to use the Z axis component of the skew driving force for the laminar flow and the parameter <span style="white-space:nowrap;">&lambda;</span> for the turbulent one. At the same time, instead, it has been shown that in the case of flow in square and rectangular ducts, the “Hydraulic Diameter” is sufficient to describe it. In this case, the flow is practically symmetric. Moreover, several new straightforward equations are provided, which simplify a lot dealing with non-cylindrical cross-sectional conduits. In doing so, the concept of “Eigenvectors-Eigenvalues” has been implemented. This theoretical approach could help to simplify other non-symmetric cases in fluid dynamics. To mention, “Flow past immersed non-symmetric bodies”, “Flow in curved conduits” etc. 展开更多
关键词 Fluid Mechanics Hydraulic Diameter flow in Annuli flow in ducts flow of Two Adjacent Immiscible Fluids Eigenvectors-Eigenvalues
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液化天然气潜液泵低温电机导液通道的优化设计 被引量:5
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作者 黄元峰 艾程柳 王海峰 《中国电机工程学报》 EI CSCD 北大核心 2015年第24期6535-6542,共8页
低温电机是液化天然气(liquefied natural gas,LNG)潜液泵的核心部件,电机定子导液通道的优化设计及合理分布不但决定着LNG潜液泵低温电机的冷却效果,而且直接影响着LNG潜液泵的工作性能。该文对一台15k W的LNG泵低温电机导液通道的优... 低温电机是液化天然气(liquefied natural gas,LNG)潜液泵的核心部件,电机定子导液通道的优化设计及合理分布不但决定着LNG潜液泵低温电机的冷却效果,而且直接影响着LNG潜液泵的工作性能。该文对一台15k W的LNG泵低温电机导液通道的优化设计方法进行研究,首先基于传统齿联轭结构定子轭部磁势的计算思路,给出了方形定子铁心轭部磁势的计算方法;然后通过有限元仿真分析,重点讨论了方形定子削边距离和导液通道宽度对电机轭部磁势和气隙磁密的影响。文中分析得到了电机轭部磁势和气隙磁密等参数随定子导液通道尺寸的变化规律,为LNG潜液泵导液通道的优化设计提供参考。 展开更多
关键词 潜液式液化天然气泵 低温电机 导液通道 方形定子
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