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NE-3D系統:吉薩高壓流體工廠
1.進料預拌(獅下):利用水位差供料,具初級穩壓功能。
2.逆流溢流(獅身水蝕):系統回堵時高壓石漿逆衝噴湧,為垂直侵蝕之工業紀錄。
3.高壓消能(鋸齒堤道):內壁鋸齒結構消散 152 ATM 水錘效應,確保長距離輸送。
4.終端穩壓(塔下):消除脈衝保護噴頭,達成分子級無縫噴塗(3D Printing)。
5.動力中樞:648M 深井靜壓與尼羅河引水構成自動化閉環。
#F4D9C8A1 #B2E30764
#AncientIndustrial #FluidDynamics #NE3D #Archaeology #GizaSystem

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A bold approach to full-body participation in fluid studies.

#Batemoor #FluidDynamics #PissPlay #Piss #PissVoyeur #WaterSports #WetLab
X: @InnocentGuysOF
@innocentguysof.bsky.social

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Dynamics and universal scaling of Worthington jets in the cavity-free regime Existing research on Worthington jets has paid most attention to those forced by cavity collapse. Focusing on the cavity-free regime across various sphere-liquid impact configurations, we derive a uni...

When a drop or object hits water, a narrow high-speed jet can shoot upward: the #WorthingtonJet. This study reveals universal scaling laws that govern how these jets form and evolve across different impact conditions.

🔗 journals.aps.org/prfluids/abs...

#FluidDynamics #DropImpact #InterfacialFlows

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Research roundup: 7 cool science stories we almost missed https://arstechni.ca #animalcognition #microgravitysex #researchroundup #animalbehavior #fluiddynamics #DanceYourPhD #Science #History #Physics

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本圖揭示 NE-3D 增材製造系統之工業邏輯:
1. 進料預拌(獅下): 具緩衝穩壓功能,維持供料觸變性。
2. 逆流溢流(獅身): 系統回堵引發高壓噴湧,為垂直侵蝕之物理紀錄。
3. 高壓消能(堤道): 鋸齒結構消散 152 ATM 水錘效應。
4. 終端穩壓(塔下): 消除脈衝保護噴頭,達成高品質層積生長。
完整報告見電子書封面:《NE-3D:全球地質流體動力與聲學共振增材製造系統》。
#F4D9C8A1 #B2E30764 #FluidDynamics #NE3D #Archaeology

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5.1 Capillarity and inertia - Liquid films and sheets
5.1 Capillarity and inertia - Liquid films and sheets YouTube video by ESPCI Paris - PSL

#LiquidFilms and sheets: #capillarity at large scale
Liquid films and sheets reveal the role of inertia and capillarity.

Learn more in this video from the "Dynamics of fluid interfaces" #MOOC by @espciparispsl.bsky.social

🎥 www.youtube.com/watch?v=sRqR...

#Leidenfrost #FluidDynamics

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📢 MOSS Season 2 continues next week Thursday!

🎙️ Claudia García (Universidad de Granada, Spain)

Talk title: Patterns and equilibria in incompressible fluids

🗓️ Thu 9 April 2026 • 🕓 16:00 CEST • Online

👉 Scan the QR code in the image for access link.

#Math #FluidDynamics #PDE

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If you'd LIKE to do fundamental research with significant real-world impact

- the whole of Aerodynamics is overdue for an overhaul...!

🧪🪂🌪️
#Science
#SciComm
#Aerodynamics
#FluidDynamics
#ResearchIntegrity

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Lab day out at the Phillip and Patricia Frost Museum of Science 😀😀

The Leonardo da Vinci exhibit was a highlight—art, mechanics, and curiosity all in one!

A reminder that the most interesting science lives at the intersection of ideas!

#Biophysics #FluidDynamics

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A practical demonstration in warm fluid release and steamy confidence.
#Batemoor #PracticalDemo #FluidDynamics #PissVoyeur #ObservedPleasure #Uncut
X: @EscobarOff_

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Droplet mobilization in actuated deformable tubes Droplet transport in deformable constrictions is important in microfluidics, enhanced oil recovery, biomedical systems, and surface-acoustic-wave-driven platforms. We study how actuation controls drop...

Oil droplets in deformable tubes can be mobilized via hydrodynamic or wall actuation. Simulations show resonance can minimize transport time, a step toward precise droplet control in biomicrofluidics.

🔗 journals.aps.org/prfluids/abs...

#microfluidics #droplets #fluiddynamics #simulation #resonance

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Farbiges Hochformat. Foto einer flachen Pfütze in einem Waldgebiet, in die Wasser strömt welches weißes Material transportiert.

Farbiges Hochformat. Foto einer flachen Pfütze in einem Waldgebiet, in die Wasser strömt welches weißes Material transportiert.

Interessantes Muster in einer Pfütze mit einem Wasserzufluss. Das weiße Material scheint mir Blütenpollen zu sein, welches auf der Wasseroberfläche schwimmt.

#Fotografie #photography #fluiddynamics #wasser #water

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Confined drying of a binary liquid mixture droplet: A quantitative interferometric study under humidity control Drying of complex fluids is crucial in many natural and technological processes, yet predicting it and probing associated transport phenomena remain challenging. We introduce an original interferometr...

How does a droplet dry when space is confined? Experiments by B. Sobac and colleagues using interferometry and controlled humidity track the #evaporation of binary liquid #droplets in a 2D geometry.

🔗 journals.aps.org/prfluids/abs...

#FluidDynamics #SoftMatter #TransportPhenomena

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How surface microstructures affect #Leidenfrost droplets.
Numerical results show that pillar size and spacing control vapour escape under the drop, which can delay or suppress the Leidenfrost state and modify #droplet rebound.

🔗 shorturl.at/VhSXe

#HeatTransfer #FluidDynamics #NumericalSimulation

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The Leo T By applying my k-flow constant to Keel’s RHCM lattice, we’ve modeled galactic stability at 6000K
#UFC #RHCM #LeoT #NewPhysics #FluidDynamics #NavierStokes #DarkMatterAlternative #MechanicOfTheUniverse #SciSky
md5:0cfb69eb728d0809f3b0fcc90bc63da7

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UFC Project: Leo T Stress Test
Internal Hydrostatic Pressure balanced by External Ram Pressure, Fluid Resistance from velocity.
Math matches 1:1.
#UFCProject #LeoT #FluidDynamics #DarkMatter #Physics #astrophysics

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Numerical investigation of a novel regenerative cooling channel for methane-fueled scramjet The extreme heating loads in the scramjet thrust chamber and the limited coolant mass flow rate are obstacles to effective thermal performance. This study propo

How do #hypersonic engines survive extreme temperatures? A numerical study investigates a novel regenerative #cooling channel where methane fuel flows through the engine walls, helping control heat while feeding the combustion system.

🔗 urlr.me/ytaVTs

#Scramjet #HeatTransfer #FluidDynamics

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Fake or fact: Acetone can display the Leidenfrost effect.

Fake or fact: Acetone can display the Leidenfrost effect.

FACT.
Acetone has a low boiling point (~56 °C) and vaporizes quickly. On a surface significantly hotter than its boiling point, it can form a stable vapor layer, allowing the droplet to levitate and move around.
So: FACT, acetone is indeed a good candidate for the Leidenfrost effect.

FACT. Acetone has a low boiling point (~56 °C) and vaporizes quickly. On a surface significantly hotter than its boiling point, it can form a stable vapor layer, allowing the droplet to levitate and move around. So: FACT, acetone is indeed a good candidate for the Leidenfrost effect.

LeidenForce quiz of the day: can you solve our Fake or Fact?

In our Fake or Fact series, we test your science knowledge about the Leidenfrost effect!

#Acetone #LeidenfrostEffect #VolatileLiquids #ThermalPhysics #fluiddynamics

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Job Alert

Wissenschaftliche*r Mitarbeiter*in (m/w/d) – Professur für Thermodynamik  

Deadline: 2026-04-07 
Location: Germany - Hamburg  

www.academiceurope.com/ads/wissensc...

#hiring #Thermodynamics #MechanicalEngineering #ProcessEngineering #Physics #FluidDynamics #PhD #chemistry

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A bold approach to full-body participation in fluid studies.

#Batemoor #FluidDynamics #PissPlay #Piss #PissVoyeur #WaterSports #WetLab
X: @CummingForMe

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2D Vortex Dynamics

Try this vortex simulation right in your browser:

lee-phillips.org/vortex/

#julialang #fluiddynamics

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4.3 Capillarity and viscosity - Wetting dynamics
4.3 Capillarity and viscosity - Wetting dynamics YouTube video by ESPCI Paris - PSL

- Wetting dynamics: how droplets spread -

Discover it in this video from the "Dynamics of fluid interfaces" MOOC by @espciparispsl.bsky.social

🎥 www.youtube.com/watch?v=K3gc...

#WettingDynamics #LeidenfrostEffect #FluidPhysics #MOOC #FluidDynamics

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Shock-induced aerobreakup of parallel-arranged droplets Altough many studies have focused on the aerobreakup of an isolated droplet, the coupling dynamics of multiple droplets remain less understood. By investigating the aerobreakup of parallel-arranged dr...

New high-speed videos show that side-by-side droplets in a fast airflow fragment in predictable ways: they form sacs, stretch into threads, or even merge depending on their spacing.

🔗 journals.aps.org/prfluids/abs...

#FluidDynamics #DropletPhysics #HighSpeedImaging #Atomization #PhaseDiagram

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An in-class demonstration of full-body participation in fluid studies.

#Batemoor #FluidDynamics #PissPlay #Piss #PissVoyeur #WaterSports #WetLab
X: @ofdyllanbukar09

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Video

A bold approach to full-body participation in fluid studies.

#Batemoor #FluidDynamics #PissPlay #Piss #PissVoyeur #WaterSports #WetLab
X: @ofdyllanbukar09

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Lagrangian geometry of flows Fluid flows are usually described from a fixed point in space, while Lagrangian methods that follow the fluid often rely on particle trajectories embedded in a prescribed geometry. We develop a geomet...

A new study shows how “riding along” with a fluid changes the view: the flow can seem still, #waves appear, and even fluid between two sliding plates (Couette flow) stays stable.
Insights for understanding #turbulence!
🔗 journals.aps.org/prfluids/abs...
#FluidDynamics #LagrangianView #FlowStability

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Supercomputer simulations reveal Red Giant Secrets Supercomputer simulations reveal how stellar rotation drives chemical mixing in red giant stars by amplifying internal waves, finally explaining s...

#Technology #Astrophysics #FluidDynamics #RedGiants […]

[Original post on nasaspacenews.com]

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4.2 Capillarity and viscosity - Capillarity and viscosity
4.2 Capillarity and viscosity - Capillarity and viscosity YouTube video by ESPCI Paris - PSL

Capillarity and viscosity: how liquids move

Understand the relationship between #capillarity and #viscosity and their role in droplet dynamics with this video from the "Dynamics of fluid interfaces" MOOC by @espciparispsl.bsky.social

🎥 www.youtube.com/watch?v=Mq1E...

#FluidPhysics #FluidDynamics

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Naked calisthenics with visible academic overflow.

#Batemoor #PhysicalMerit #FluidDynamics #DormRoomDiscipline #LiquidLessons
Reddit: u/Baghira_

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How can you break water? By accelerating it so quickly that the pressure drop forms cavitation bubbles. #cavitation #flowvisualization #fluiddynamics #physics #science
fyfluiddynamics.com/?p=27678

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