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Discretization and implementation of a sharp interface model for interfacial heat and mass transfer during bubble growth

机译:气泡生长过程中界面传热传质的清晰接口模型的离散化和实现

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Simulations of phase change rely on methods to compute heat and mass transfer at the interface. Current methods estimate the mass transfer with interpolation functions or by assuming a local temperature difference between saturation and interface. This work reports a method that uses a single cell around the interface to find the interfacial temperature gradient, and a linear interpolation normal to the interface to find the temperature of the mixture cell (cell with an interface). The one-cell algorithm for sharp interface and mass transfer (OCASIMAT) simplifies the estimation of the mass transfer and mixture cell temperature and improves accuracy. The proposed approach leads to a more realistic representation of the heat and mass transfer at the interface with a sharp discontinuity on the thermal properties at the interface and with mass transfer only at the cells with an interface. Simulations of planar interface evaporation and spherical bubble growth demonstrate the application of the proposed approach. Results indicate that OCASIMAT accurately predicts the temperature distributions near the interface and the interface displacements.
机译:相变的仿真依赖于计算界面传热和传质的方法。当前的方法通过插值函数或通过假设饱和度和界面之间的局部温差来估算传质。这项工作报告了一种方法,该方法使用界面周围的单个单元格来查找界面温度梯度,并使用垂直于界面的线性插值来查找混合单元格(具有界面的单元格)的温度。尖锐的界面和质量传递的单细胞算法(OCASIMAT)简化了质量传递和混合室温度的估算,并提高了准确性。所提出的方法导致在界面处的传热和传质的更真实的表示,在界面处的热性质具有急剧的不连续性,并且仅在具有界面的单元处传质。平面界面蒸发和球形气泡生长的仿真证明了该方法的应用。结果表明,OCASIMAT可以准确预测界面附近的温度分布和界面位移。

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