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Highly accurate numerical simulation of wetting and dewetting on flexible substrates including Heat transfer

Highly accurate numerical simulation of wetting and dewetting on flexible substrates including Heat transfer
柔性基材润湿和反润湿的高精度数值模拟(包括传热)
批准号:
422800359
负责人:
Dr.-Ing. Florian Kummer
金额:
$0.0万
依托单位国家:
德国
项目类别:
Priority Programmes
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:

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中文摘要
翻译
该项目的实质是发展数值模拟方法。具体的物理建模,分别模拟,是由优先计划2171(SPP 2171)中计划的实际实验的动机。特别是,实验要研究的柔性表面的润湿或去湿发生。为此目的,在第一个供资阶段开发了一个相应的高精度数值工具箱,用于模拟由柔性固体以及液体和气体组成的三相系统。在该计划的第二个资助阶段,这些模拟技术将得到进一步改进和扩展,以涵盖更广泛的实验。特别是,蒸发效应现在要考虑在内。重要的是要注意,模拟是SPP 2171实验的补充,因为它可以作为放大镜,可以说:它提供了实验无法提供的见解。例如,由于技术上的限制,在实验中难以测量或无法测量的量,通过模拟可以确定。在开始时,将有简单的液滴和液体桥的配置。在进一步的课程中,将研究液滴在柔性基底上的撞击行为。蒸发,通过加热基板,也将被考虑。最具挑战性的模拟是Leidenfrost配置,即蒸发液滴,由其自身的蒸汽层支撑,在加热的基底上方盘旋。模拟过程基于申请人开发的两相流数值方法。这些是两种不混溶流体的混合物,在这种情况下是印刷油墨和环境空气。这种设置现在由第三阶段补充,即柔性固体。如果空气、液体和固体相遇,这被称为三相接触线。该项目的数值数学基础是所谓的扩展间断伽辽金法,该方法专门用于模拟具有高精度接触线的三相流。特别是空气和液体之间的界面以及三相接触线可以高精度地跟踪。对于给定的问题,该方法必须与固体的模拟方法相结合。此外,必须对热传递以及蒸发进行建模。
英文摘要
The essence of this project is development of numerical simulation methods. The specific physics to be modeled, respectively simulated, is motivated by the practical experiments planned in the Priority Program 2171 (SPP 2171). In particular, experiments are to be investigated in which wetting or dewetting of flexible surfaces takes place. For this purpose, a corresponding high-precision numerical toolbox for the simulation of three-phase systems, consisting of a flexible solid as well as a liquid and a gaseous phase, was developed in the first funding phase. In the second funding phase of the program, these simulation techniques will be further improved and extended to cover a broader range of experiments. In particular, evaporation effects are now to be taken into account.It is important to note that simulation is a complement to the experiments in SPP 2171 here, as it can act as a magnifying glass, so to speak: it provides insights that experiment cannot. For example, simulations make it possible to determine quantities that are difficult or impossible to measure in experiments due to technical limitations.The complementary simulation of experiments of increasing complexity is planned. At the beginning there will be configurations with simple droplets and liquid bridges. In the further course, the impact behavior of droplets on flexible substrates will be investigated. Evaporation, by heating the substrate, will also be considered. The most challenging simulation, which concludes the project, is a Leidenfrost configuration, i.e. an evaporating droplet which, supported by its own vapor layer, hovers above a heated substrate.The simulation procedure is based on a numerical method for two-phase flows, developed by the applicants. These are mixtures of two immiscible fluids, in this case the printing ink and the ambient air. This setup is now supplemented by a third phase, i.e. a flexible solid. If air, liquid and solid meet, this is referred to as a three-phase contact line. The numerical-mathematical basis for this project is a so-called extended discontinuous Galerkin method, which was specially developed to simulate three-phase flows with contact lines with high accuracy. In particular, the interfaces between air and liquid, as well as the three-phase contact line can be followed with high accuracy. For the given problems, the method has to be combined with a simulation method for solids. Furthermore, the heat transfer as well as the evaporation have to be modeled.
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Discontinuous Galerkin methods for incompressible multi-phase flows
  • 批准号:
    230990002
  • 项目类别:
    Research Fellowships
  • 资助金额:
    $0.0万
  • 财政年份:
    2012
  • 负责人:
    Dr.-Ing. Florian Kummer
  • 依托单位:
Numerical Models for Two-Phase flows in Electric Fields
  • 批准号:
    529741352
  • 项目类别:
    Research Units
  • 资助金额:
    $0.0万
  • 财政年份:
    --
  • 负责人:
    Dr.-Ing. Florian Kummer
  • 依托单位:
国内基金
海外基金
非定常复杂流场的时空高精度高效率新格式的研究
  • 批准号:
    50376004
  • 项目类别:
    面上项目
  • 资助金额:
    20.0万元
  • 批准年份:
    2003
  • 负责人:
    王保国
  • 依托单位: