H2020Individual fellowship2015–2017

ENMMCL · Efficient Numerical Modeling of Moving Contact Lines under Non-isothermal Conditions

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2015-10-06 → 2017-10-05
EU contribution
€195,455
Participants
1
Scheme
MSCA-IF

Lines connect the coordinator with its partners.

Results in brief

Efficient Numerical Modeling of Moving Contact Lines under Non-isothermal Conditions

Flows with moving contact lines (MCLs) are the heart of numerous industrial applications, such as surface coating, mould filling, displacement of oil by CO2, spray cooling, condensing, microreactors etc. Although moving contact line is only a small part of the flow even in small systems, in fact the speed of the contact line and the dynamic contact angle largely control the flow. Improved understanding of MCL dynamics and capability of predictive analysis of flows involving MCLs will therefore greatly benefit the design and optimization of numerous industrial applications. In many practical systems, contact lines move under non-isothermal conditions, for example, in fire flooding, in condensers, in droplet impact on a hot substrate in spray cooling, etc. Despite considerable attention and decades of development, the understanding for dynamics of moving contact lines is still far from enough. In our project, we will develop a non-isothermal combined theory for MCL dynamics and will use it to build a novel macroscale computational model, which can simulate non-isothermal MCL flows efficiently and accurately. The specific research objectives are: (1) to investigate the dependency of the dynamic contact angle on the contact line speed and other system parameters using systematic experiments, and to develop fundamental understandings of the results (2) to develop a non-isothermal theory to predict the interface shape close to the MCL (3) to develop a novel macroscale computational model for efficient simulations of non-isothermal MCL flows and to validate the model All three research objectives have been achieved during the fellowship period.

Data: CORDIS, © European Union

Project objective

A moving contact line (MCL) is a moving line of intersection between a fluid/fluid interface and a solid wall. MCLs are central to a wide range of flows in nature and industry, however, their modeling has been a classical difficulty, especially under non-isothermal conditions. The project will tackle this challenge and we will develop a novel computational model enabling simulations of non-isothermal flows involving MCLs with unprecedented efficiency. The model borrows the idea from the large eddy simulation in turbulence modeling; it will resolve the macroscale flows only while model the effect of MCLs using non-isothermal hydrodynamic theories, which will also be developed in the present project. We expect that the model can lead to a reduction of computational effort by nine orders of magnitude for three-dimensional flows, compared with direct numerical simulations using a uniform grid, and it will therefore enable affordable simulations of practical flows in industry.

Original text from CORDIS.

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Data: CORDIS, © European Union