首页> 外文会议>ASME/JSME Joint Fluids Engineering Conference >MODELING OF MULTI-PHASE FLOW IN ELECTRO-CHEMICAL MACHINING - ONE-WAY COUPLING VERSUS TWO-WAY COUPLING
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MODELING OF MULTI-PHASE FLOW IN ELECTRO-CHEMICAL MACHINING - ONE-WAY COUPLING VERSUS TWO-WAY COUPLING

机译:电化学加工多相流模型 - 单向耦合与双向耦合

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Electro-Chemical Machining (ECM) is an advanced machining technology. It has been applied to highly specialized fields such as aerospace, aeronautics and medical industries. However, it still has some problems to be overcome. The efficient tool-design, electrolyte processing, and disposal of metal hydroxide sludge are the typical issues. To solve such problems, CFD is considered to be a powerful tool in the near future. However, the numerical method that can satisfactorily predict ECM process has not been established because of the complex flow natures. In the present study, we investigate the modeling of the two-phase flow (i.e. fluid and hydrogen bubbles) in ECM process. First, we present two models to calculate flow fields in ECM process. One is based on one-way coupling method, neglecting the effect from gas-phase to liquid-phase. The other takes account of the interaction between gas and liquid phases, namely two-way coupling method. In the later method, assuming that electrolyte and hydrogen bubbles have same velocity, we simplified the governing equations with Low Mach number approximation. We simulated ECM process for a flat plate channel configuration. And, we verified the present models by comparing the numerical result with the experimental data.
机译:电化学加工(ECM)是一种先进的加工技术。它已应用于高度专业的领域,如航空航天,航空和医疗产业。但是,它仍有一些问题被克服。高效的工具设计,电解质加工和金属氢氧化物污泥的处理是典型的问题。为了解决这些问题,CFD被认为是在不久的将来成为一个强大的工具。然而,由于复杂的流动性质,尚未建立可以令人满意地预测ECM过程的数值方法。在本研究中,我们研究了ECM过程中两相流(即流体和氢气泡)的建模。首先,我们提出了两个模型来计算ECM过程中的流字段。一种基于单向偶联方法,忽略从气相与液相的效果。另一方考虑了气体和液相之间的相互作用,即双向耦合方法。在后来的方法中,假设电解质和氢气气泡具有相同的速度,我们简化了具有低马赫数近似的控制方程。我们模拟平板通道配置的ECM工艺。并且,我们通过将数值结果与实验数据进行比较来验证本发明模型。

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