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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Numerical simulation of direct-contact evaporation of a drop rising in a hot, less volatile immiscible liquid of higher density - Possibilities and limits of the SOLA-VOF/CSF algorithm
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Numerical simulation of direct-contact evaporation of a drop rising in a hot, less volatile immiscible liquid of higher density - Possibilities and limits of the SOLA-VOF/CSF algorithm

机译:在高密度的不易挥发的不易混溶的热液体中上升的液滴直接接触蒸发的数值模拟-SOLA-VOF / CSF算法的可能性和局限性

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摘要

A contribution toward the full numerical simulation of direct-contact evaporation of a drop rising in a hot, immiscible and less volatile liquid of higher density is presented. Based on a fixed-grid Eulerian description, the classical SOLA-VOF method is largely extended to incorporate, for example, three incompressible fluids and liquid-vapor phase change. The thorough validation and assessment process covers several benchmark simulations, some of which are presented, documenting the multipurpose value of the new code. The direct-contact evaporation simulations reveal severe numerical problems that are closely related to the fixed-grid Euler formulation. As a consequence, the comparison to experiments have to be limited to the initial stage. [References: 30]
机译:提出了对在高密度的热的,不混溶的和挥发性较小的液体中上升的液滴进行直接接触蒸发的完整数值模拟的贡献。基于固定网格的欧拉描述,经典的SOLA-VOF方法在很大程度上得到了扩展,以合并例如三种不可压缩的流体和液-汽相变。全面的验证和评估过程涵盖了几个基准仿真,其中一些仿真已提出,记录了新代码的多用途价值。直接接触蒸发模拟揭示了与固定网格欧拉公式密切相关的严重数值问题。结果,与实验的比较必须限于初始阶段。 [参考:30]

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