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Peer-reviewed article in @Aerospace_MDPI titled "Investigation on Accelerated Initiation of Oblique Detonation Wave Induced by Laser-Heating Hot-Spot" Read here: mdpi.com/2226-4310/11/6/485 #ObliqueDetonation #InitiationAcceleration #NumericalSimulation
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📢 #SpecialIssue Multi-Scale Modeling and Engineering Applications in Metal Additive Manufacturing and Powder Metallurgy 📅20 November 2026 👨‍🔬 Guest Editors: Prof. Dr. Luis Olmos from Universidad Michoacana de San Nicolás de Hidalgo, Mexico; Dr. Omar Jiménez Alemán from Universidad de Guadalajara, Mexico; and Dr. Francisco Alvarado-Hernández from Universidad Autónoma de Zacatecas, Mexico. 🔗mdpi.com/journal/applsci/spe… #powdermetallurgy #multiscalemodeling #sintering #compaction #discreteelementmethod #DEM #finiteelementanalysis #FEA #microstructure #microstructureevolution #mechanicalproperties #porosity #defectprediction #numericalsimulation #materials #materialsscience
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Via #OPG_AO: Non-destructive Real-time Monitoring of Bolt Preload in Wind Turbine Towers using FBG Sensors on the Nut bit.ly/4a6zf61 #FiberOpticSensors #NumericalSimulation
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This is toy model of how a self-attracting quantum medium might organize itself when left to its own devices. This animation is a direct numerical experiment on the Schrödinger-Poisson equation: a quantum wave field that generates its own gravitational potential and then has to move inside the very well it creates. The bright knots are regions where the density has pooled and deepened the potential, while the softer background is a nearly uniform quantum fog. At every step the density feeds into a Poisson solve to update the gravitational field, that field bends the phase and velocity of the wave, and the whole pattern of currents and caustics rearranges itself again. Those silky white streamlines and drifting tracer specks is the probability current, threading its way through a time-dependent landscape of self-gravity, fragmentation and merging. 🤯 #SchrodingerPoisson #QuantumGravity #SelfGravitatingWave #NumericalSimulation #ComputationalPhysics #QuantumDynamics #PoissonEquation #FluidLikeQuantum #PhysicsAnimation #QuantumCosmos #GravitationalField
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Research on #MathematicalModeling of Critical Impact Force and Rollover Velocity of Coach Tripped Rollover Based on #NumericalAnalysis Method ✏️ Xinye Wu, Zhiwei Wang and Shenghui Chen 🔗 brnw.ch/21wXNhM Viewed: 2072; Cited: 3 #mdpisymmetry #numericalsimulation
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An Editors' Pick via #OPG_OL: Experimental observation of the spatio-temporal dynamics of breather gases in a recirculating fiber loop bit.ly/4i61K7s #BreatherGases #NumericalSimulation @univ_lille
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13 Aug 2025
#FeatureWednesday 🚀 GridPro’s automatic cell sizing lets you control mesh size & aspect ratio -balancing accuracy and efficiency. 📽 See it in action: hubs.ly/Q03CxPdc0 #CFD #Mesh #Structured #Simulation #Engineering #NumericalSimulation #ComputationalFluidDynamics
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🔥 Read our Paper 📚 Energetical and Exergetical Analyses of a Concentrating PV/T Collector: A Numerical Approach 🔗 mdpi.com/2076-3417/13/19/106… 👨‍🔬 by Theodoros Papingiotis et al. #photovoltaicthermalcollector #numericalsimulation
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📢#EditorsChoice #ArticleHF Numerical Simulation of Heat Transfer of Porous Rock Layers in Cold Sandy Regions mdpi.com/2073-4433/14/12/181… #numericalsimulation #porousrocklayer #aeoliansand #naturalconvection #permafrost
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🔥 Read our Review Paper 📚 Advances in the Application of #IntelligentAlgorithms to the Optimization and Control of Hydrodynamic Noise: Improve Energy Efficiency and System Optimization 🔗 mdpi.com/2076-3417/15/4/2084 👨‍🔬 by Maosen Xu et al. #hydrodynamicnoise #numericalsimulation
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« Addressing the Challenges of Hypersonic Flows with Numerical Simulations » 🏷️#aerodynamics #hypersonicflight #numericalsimulation #cfd #openfoam leonardo.com/documents/15646…
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26 Feb 2025
In an industry where accurate planned #wellforecasting is crucial, manual methods such as #typecurves or #numericalsimulation often fall short. The ability to rapidly evaluate hundreds of development scenarios is just simply not feasible with these methods. In this URTeC paper, we demonstrate that #machinelearningmodels outperform #traditionalArps #declinecurves, improving #forecastingaccuracy by 30% while reducing forecasting time from weeks to minutes. Download the full paper to see how ML-driven insights can optimize your #productionforecasting strategy. novilabs.com/resources/urtec…
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#mdpisymmetry #EditorsChoice Editor's Choice Paper Recommendation: "Numerical Investigation of Cavitation Bubble Jet Dynamics near a Spherical Particle", authored by Jinsen Hu et al. Link to the paper: brnw.ch/21wQVzj #cavitation #bubbledynamics #numericalsimulation
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Via #OPG_AO: Numerical simulation of coherent summation of laser beams in the presence of non-idealities in the dipole focusing system bit.ly/4j88Sk4 #ParabolicMirrors #NumericalSimulation
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#EditorChoice of #Hydrology_MDPI 📜Application of Numerical and Experimental Modeling to Improve the Efficiency of Parshall Flumes: A Review of the State-of-the-Art ✍️by Mehdi Heyrani et al. 👉mdpi.com/2306-5338/9/2/26 #Parshallflume #CFD #numericalsimulation
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Via #OPG_OpticaQ: Modeling local decoherence of a spin ensemble using a generalized Holstein–Primakoff mapping to a bosonic mode bit.ly/3Nz6gNl #QuantumComputations #NumericalSimulation
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28 Oct 2024
HY4RES partners🤝 @UniOviedo The @Energy_Uniovi team is expert in renewable energy #research and development,bringing their expertise in the study of air & water flows Explore all partners: hy4res.eu/about/ #numericalsimulation #hydrokinetic #microturbine #fluidmechanics
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Via #OPG_OpticaQ: Modeling local decoherence of a spin ensemble using a generalized Holstein–Primakoff mapping to a bosonic mode bit.ly/3Nz6gNl #QuantumComputations #NumericalSimulation
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