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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231 to 240 of 270 Results
Subarea B2(Universität Stuttgart)
Apr 12, 2021
Experimental investigation of droplet evaporation under extreme conditions by temporally highly resolved laser diagnostic methods
Subarea B1(Universität Stuttgart)
Apr 12, 2021
Investigation of the behavior of supercooled droplets concerning evaporation, condensation and freezing at different boundary conditions
Apr 12, 2021 - Subarea C4
Breitenbach, Jan, 2021, "Drop collision with a hot, dry solid substrate", https://doi.org/10.18419/DARUS-1784, DaRUS, V1
Die Daten liefern einen Auszug aus einer im Teilprojekt C4 durchgeführten experimentellen Untersuchung des Tropfenaufpralls auf eine beheizte Oberfläche. Beschreibung des Setups: In den Experimenten wurde der Aufprall von Wassertropfen auf eine beheizte Oberfläche untersucht. Bei der Aufpralloberfläche handelt es sich um poliertes Flugzeugaluminium...
Unknown - 494.2 MB - MD5: 19d0d9c84486cc4d58b14f0b77c4a7ab
Oberflächentemperatur: 290°C; Aufprallgeschwindigkeit: 1.71 m/s; Tropfendurchmesser: 2.2 mm;
Unknown - 951.2 MB - MD5: bbef2ab35e3d7fc41dd24593e43e773e
Oberflächentemperatur: 170°C; Aufprallgeschwindigkeit: 0.71 m/s; Tropfendurchmesser: 2.2 mm;
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