The fundamental understanding of droplet dynamics is the critical prerequisite to the prediction of natural processes and the optimization of technical systems. Many of these processes happen under extreme ambient conditions - e.g. high pressure or extreme temperatures - and can already be found in technical applications, despite the absence of fundamental knowledge. This is exactly where the new Collaborative Research Center focuses on. The goal is to gain a profound physical understanding of the essential processes. This understanding is the basis for new ways of analytical and numerical descriptions. Thereby, an improved prediction of large systems in nature or in technical applications shall be possible.
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Adobe PDF - 553.0 KB - MD5: 1348ae43932fd40fa643413e7756055f
Description of the data of the test case
Adobe PDF - 525.4 KB - MD5: e1361caadb7c9e21359d1ad2de7d73fa
Description of the test case with experimental methods and injection conditions
Feb 25, 2022 - Subarea B4
Rees, Andreas; Oschwald, Michael, 2022, "Spray Angles in Superheated LN2 Sprays", https://doi.org/10.18419/DARUS-2576, DaRUS, V1, UNF:6:6otWXycfd5kJb0+Qijd+UQ== [fileUNF]
Within this test case we show the experimental data of 21 flash boiling liquid nitrogen sprays in terms of their injection conditions and their respective spray opening angles after an injection duration of 120 ms. The latter is realized by post-processing shadowgraph images of each spray around this time.
Tabular Data - 1.3 KB - 9 Variables, 22 Observations - UNF:6:8r+iJGXaYbQDgJAERZC/4Q==
injection conditions of 21 flash boiling liquid nitrogen sprays
Tabular Data - 441 B - 3 Variables, 22 Observations - UNF:6:D3HAPLrC5vEay+7DedXZ5Q==
Spray angles at the two axial distances L/D = 2 and L/D = 5 from the injector of 21 flash boiling liquid nitrogen sprays
Adobe PDF - 290.8 KB - MD5: 36c8c89c70eae64bbfe972d425d6fbca
Description of the data of the test case
Adobe PDF - 607.7 KB - MD5: 37790766ade8fa64bb0a9cfc31b759f5
Description of the test case with experimental methods and injection conditions
Feb 22, 2022 - Subarea A4
Lee, Eunsang, 2022, "Data for: Suppressing the rebound of impacting droplets from solvophobic surfaces by polymer additives: polymer adsorption and molecular mechanisms", https://doi.org/10.18419/DARUS-2235, DaRUS, V1
This tutorial is for Multi-body dissipative particle dynamics simulations of droplets of dilute polymer solution on a solvophobic surface for different droplet sizes, impact velocities and polymer-solvent attraction strengths. The simulations are performed using the self-written software DropDPD. A detailed instruction can be found in the file docu...
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