Numerical methods for the simulation of a coalescence-driven droplet size distribution

被引:1
|
作者
Róbert Bordás
Volker John
Ellen Schmeyer
Dominique Thévenin
机构
[1] University of Magdeburg “Otto von Guericke”,Department of Mathematics and Computer Science
[2] Weierstrass Institute for Applied Analysis and Stochastics Leibniz Institute in Forschungsverbund Berlin e. V. (WIAS),undefined
[3] Free University of Berlin,undefined
关键词
Droplet Size Distribution; Population Balance; Internal Coordinate; Inlet Boundary Condition; Collision Kernel;
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学科分类号
摘要
The droplet size distribution in a turbulent flow field is considered and modeled by means of a population balance system. This paper studies different numerical methods for the 4D population balance equation and their impact on an output of interest, the time-space-averaged droplet size distribution at the outlet, which is known from experiments. These methods include different interpolations of the experimental data at the inlet, various discretizations in time and space, and different schemes for computing the coalescence integrals. It will be shown that noticeable changes in the output of interest might occur. In addition, the computational efficiency of the studied methods is discussed.
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页码:253 / 271
页数:18
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