Decarbonizing data centers using a new cooling technology! In our recent #NSFFunded publication, we introduce a technology which can efficiently cool chips and alleviate #DataCenter energy loads. Read more here -
https://t.co/WhZszcnpr5
#Sustainability#decarbonization
In our latest publication in the International Journal of Heat and Mass Transfer, we explain the physics of Critical Heat Flux (CHF) during pool boiling. We find that liquid capillary length plays a major role in determining the mechanism of CHF. Read more https://t.co/xvTFkxbBou
Check out our latest paper on characterization of annular flow in microchannel flow boiling! Through high-res temperature mapping on the order of 0.1 ms, we show that intermittent dryout occurs due to thin film evaporation https://t.co/j0hze6n54g
Sidharth's work on phase separation, in collaboration with Prof. @BrandonAshfeld's group at Notre Dame just got featured on @uflmae news! Read more here - https://t.co/G3ZiUV1yCh
It's Friday! Which is the perfect time for some cool looking high speed videos! Check our new video on our YT channel - Bubble departure during boiling at 8k frames per second (fps) | Slowed d... https://t.co/wufhkc0lQM via
@YouTube#NSFfunded
Congratulations to Dr. David Arnold and Dr. Saeed Moghaddam for being awarded the University Term Professorship! Each year, this award recognizes a maximum of 250 tenure-track UF faculty members for their impressive contributions.
#UF#IMGatUF#research#leadership#education
It is Award season @NESLabs! @JackKuzmicki wins the best poster award during the 2022 Student Science Training Program (#SSTP) for his work on Wearable Artificial Kidneys (WAK). Congratulations Jack! #GoGators@uflmae@IMG_at_UF
Congratulations to Aniket Martins for winning the Best Presentation award during the 2022 Student Science Training Program! Aniket studied flow regimes in microchannel flow boiling during his time in @NESLabs.
One of our first papers to come out of a collaboration between @AshfeldLab at Notre Dame and @NESLabs at U of Florida.
Thermodynamic descriptors of sensible heat driven liquid-liquid phase ... https://t.co/ysLxJiLael
Congratulations to @EvaGulotty, the rest of our team @AshfeldLab and our collaborators at @NESLabs for a phenomenal effort!
Controlling phase separation behavior of thermo-responsive ionic liqui... https://t.co/TdEoiHjiUG
Through density functional theory (DFT) and experiments, we present a method to predict which pair of liquids would undergo this phase separation based on their molecular structures.
Phase separation of a homogeneous solution of 2 liquids, such as in distillation, is possible without boiling the more volatile liquid.
A recent paper from our group explains the thermodynamics of these separations : https://t.co/REdQageGll