HjemKategorierFluiddynamikk og aerodynamikk

🌊 Fluiddynamikk og aerodynamikk

Kármán-virvler, vingeprofiler, lattice-Boltzmann-strømninger og Bernoullis prinsipp i interaktive simuleringer.

29 simuleringer60 fps i sanntid0 installasjonstrinn
Kármán Vortex StreetPopulær2D Lattice Boltzmann (D2Q9, BGK) simulation of vortex shedding behind a cylinder. Adjustable… Aerofoil & Lift — NACA Wing AerodynamicsSet angle of attack, camber and thickness on a NACA aerofoil and watch streamlines, pressure… Lattice-Boltzmann FlowInteractive Lattice-Boltzmann D2Q9 fluid dynamics simulator. Draw obstacles, watch vortices… Bernoulli PrincipleNewInteractive Venturi tube: watch fluid speed up through a constriction as pressure drops.… Real-Time Fluid Simulation — Navier–Stokes SolverInject vortex, shear or plume presets into Jos Stam's stable-fluids solver and tune… Fluid Vorticity & Kelvin–Helmholtz Instability2D vortex sheet dynamics and the Kelvin–Helmholtz instability. N point vortices interact via… Pipe Flow ProfilesSet viscosity, pressure gradient and pipe radius to see the parabolic Hagen-Poiseuille… Laminar to Turbulent TransitionRaise the Reynolds number and watch a dye filament in a pipe go from a clean straight thread… Blasius Boundary LayerSlide along a flat plate to watch the Blasius laminar boundary layer thicken, and read the… SPH Dam BreakSimulate a dam break using Smoothed Particle Hydrodynamics (SPH). Watch a column of water… Shallow Water EquationsSimulate dam-break, sloshing and tidal waves with a 1D shallow-water solver — watch the… Ripple TankNewA 2D ripple tank solving the wave equation ∂²h/∂t²=c²∇²h: point and plane sources,… Bernoulli's Principle — Airfoil Lift & FlowNewAirfoil streamlines bend as you raise angle of attack and airspeed — watch the pressure… Fluid Pressure — Pascal's Law & HydrostaticsNewAdjust fluid density and container geometry to see pressure grow with depth (P = ρgh),… Fluid Lattice-BoltzmannNewLattice Boltzmann method (D2Q9) simulating Karman vortex street and computational fluid… Stokes FlowNewDrag a sphere through creeping flow at low Reynolds number and watch Stokes-flow… Drag CoefficientNewSee how a body's shape and Reynolds number set aerodynamic drag. Watch flow separate behind… Capillary ActionNewSurface tension pulls liquid up narrow tubes by Jurin's law h = 2γcosθ/(ρgr). Watch the… Ocean CurrentNewDrag temperature and salinity sliders to set polar-vs-tropical density contrast and watch… Fluid InstabilityNewSet velocity shear, density ratio and surface tension to watch Rayleigh-Taylor and… Foam Drainage — Plateau Borders & Laplace PressureNewLiquid drains from foam through Plateau border channels. Laplace pressure differences drive… Rayleigh-Bénard Convection — Thermal CellsNewHeat a fluid layer from below: above a critical Rayleigh number, ordered convection rolls… Taylor-Couette Flow — Rotating Cylinder VorticesNewFluid between two rotating cylinders becomes unstable above a critical Taylor number,… Rayleigh-Taylor Instability — Heavy Over LightNewWhen a dense fluid sits atop a lighter one, the interface is unstable: perturbations grow… Saffman-Taylor — Viscous FingeringNewInject a low-viscosity fluid into a high-viscosity one in a Hele-Shaw cell: the interface… Vortex Ring DynamicsNewWatch a vortex ring self-propel through fluid. Biot-Savart law governs the induced velocity… Taylor-Green Vortex DecayNewSimulate the Taylor-Green vortex — a canonical turbulence benchmark. Watch the initial… Rising Bubble in Viscous FluidNewA gas bubble rises through a viscous liquid driven by buoyancy. Stokes drag, Morton number,… Kelvin Ship Wake — Wave InterferenceDrag ship speed and wave-source count to build a Kelvin wake — transverse and diverging…
Om kategorien

Fluiddynamikk og aerodynamikk

Kármán-virvler, vingeprofiler, lattice-Boltzmann-strømninger og Bernoullis prinsipp i interaktive simuleringer.

Three.js · WebGL 60 FPS CC BY 4.0
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29interaktive simuleringer i denne kategorien
kjører med 60 FPS i alle moderne nettlesere
🌐engelsk, ukrainsk, polsk, spansk, tysk, japansk, italiensk, brasiliansk portugisisk, fransk, arabisk, nederlandsk, kinesisk, koreansk, hindi, tyrkisk, vietnamesisk, russisk, indonesisk, persisk, bengali, thai, filipinsk, swahili, urdu, malayisk, tamilsk, hebraisk, gresk, punjabi, amharisk, burmesisk, khmer, georgisk, nepalsk, mongolsk, armensk, singalesisk, laotisk, tsjekkisk, rumensk, ungarsk, bulgarsk, svensk, dansk, finsk, norsk, slovakisk, kroatisk, serbisk, slovensk, litauisk, latvisk og estisk
🎓CC BY 4.0 — gratis for klasserom og LMS-innbygging

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Må jeg installere noe for å kjøre Fluiddynamikk og aerodynamikk-simuleringer?

Nei. Alt kjører helt i nettleseren din — ingen nedlastinger, tillegg eller kontoer kreves. Fungerer i Chrome, Firefox, Edge og Safari; de fleste simuleringer fungerer også på mobil.

Kan jeg bruke disse simuleringene i undervisningen?

Ja — alt innhold er fritt til bruk i undervisningsøyemed under CC BY 4.0. Lenk direkte til en hvilken som helst simulering, eller bygg den inn i LMS-et ditt med en iframe; ingen API-nøkkel kreves.

Er modellene vitenskapelig korrekte?

De bruker de samme matematiske formuleringene som profesjonell programvare, integrert numerisk i sanntid. Hver simulering lister opp sine algoritmer, og mange lenker til en artikkel som forklarer matematikken.

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