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http://hdl.handle.net/10397/116353
| Title: | Explicit approximate solutions to two transcendental equations in two-phase stratified flow | Authors: | Wu, B Zhou, Y Chen, Z Lai, SK |
Issue Date: | Oct-2025 | Source: | Applied mathematics and mechanics (English edition) (应用数学和力学) (英文版), Oct. 2025, v. 46, no. 10, p. 2007-2016 | Abstract: | Stratified flow is a common phenomenon in horizontal tubes of two-phase flow systems. However, the existing methods for calculating the wetted angle of the flat interface model and the central angle of the two-circle model rely on solving implicit transcendental equations, which require iterative numerical root-finding methods, thereby introducing computational complexity and inefficiency. This paper proposes the high-precision explicit approximate solutions for the two models, directly correlating the geometric parameters with the flow parameters, thus significantly enhancing the efficiency and accuracy of two-phase flow analysis. | Keywords: | Central angle Horizontal circular tube Padé (rational) approximation Schröder iteration Two-phase stratified flow Wetted angle |
Publisher: | Springer | Journal: | Applied mathematics and mechanics (English edition) (应用数学和力学) (英文版) | ISSN: | 0253-4827 | EISSN: | 1573-2754 | DOI: | 10.1007/s10483-025-3299-6 |
| Appears in Collections: | Journal/Magazine Article |
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