計算力学講演会講演論文集
Online ISSN : 2424-2799
セッションID: OS-0805
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フェーズフィールドシミュレーションによる微小液滴に対する3次元構造表面濡れ性の影響評価
*高田 尚樹高木 知弘茂木 克雄染矢 聡馬場 宗明齋藤 慎平
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For evaluating wettability of micro-structured solid surface, a phase-field model (PFM)-based computational fluid dynamics (CFD) method was applied to fine droplet motion on the surface in three dimensions. Instead of the Cahn–Hilliard equation, the conservative Allen–Cahn (CAC) equation was adopted to calculate the advection and construction of diffusive interfaces. A lattice Boltzmann model-based scheme was used to solve a set of the Navier–Stokes equations of fluid and the CAC equation for an immiscible incompressible isothermal liquid-liquid system with equal densities and viscosities. The surface wettability was numerically evaluated from the mobility of a single droplet under external force on grooved, square-pillar-arrayed, and flat sold surfaces. Through the CFD simulations in qualitative comparison with available data, it is demonstrated that the PFM-CFD method has a potential capable of simply estimating the wettability of the surfaces with 3D patterned structures. It is therefore expected that the functions of micro-fluidic devices in various fields of science and engineering would be optimally designed by the PFM-CFD analysis.

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