Topical Problems of Fluid Mechanics


Topical Problems of Fluid Mechanics
logo UT logo CTU logo MIO Universite logo ERCOFTAC
Institute of Thermomechanics AS CR, v.v.i. CTU in Prague Faculty of Mech. Engineering Dept. Tech. Mathematics MIO Université du Sud Toulon Var - AMU - CNRS - IRD Czech Pilot centre ERCOFTAC

Papers presented in proceedings


Šimurda D., Bodnár T.: Topical Problems of Fluid Mechanics 2026, Prague, 2026, 295 pages, ISBN 978-80-87012-92-5, ISSN 2336-5781
 
001Afsharpanah F., Poncet S., Amiri L. :
Isothermal Transport of Ice Slurry Flow in 90° Vertical Elbows
002Antošová Z., Chou Y. J., Ko Y. H., Chen Y. W., Trávníček Z.:
Experiments and Numerical Simulation of Synthetic Jets Issuing from an Oscillating Nozzle
003Belda M., Isoz M., Měkuta F., Hyhlík T. :
A Promising Quantitative Measure for Comparison of Power Spectral Densities
004Bílek V., Gebouský O., Haidl J.:
CFD Simulation Methodology Validated for Mixed Rectangular Tank Equipped with Single and Multiple Impellers
005Chandrasekaran K. S., Mariappan S., Das D., Singh A.:
Comparison of Infrared Thermography, Temperature-Sensitive Paint, and Particle Image Velocimetry in Detecting the Onset of Laminar-To-Turbulent Boundary Layer Transition
006Dimitrieva N., Krivonog O., Fadeichev V., Romanenko P., Koval S. :
Numerical and Experimental Study of The Characteristics of Airlift Pumps
007Duda D. :
Some Attempts on Characterization of Turbulent Wakes Observed by Using Stereo PIV in a Plane Perpendicular to The Flow
008Flídr E., Němec M., Šimurda D. :
Difference Between Continuous Traversing and Step by Step Measurement at The Linear Blade Cascade Outlet
009Fuka V.:
Machine-Learning-Based Subgrid Modelling for the Atmospheric Boundary Layer
010Gebouský O., Bílek V., Haidl J. :
Methodology For velocity Field Measurements in Pilot-Scale Stirred Vessels Using 2-D Particle Tracking Velocimetry
011Geng C., Sun D., Zhang M., Liu L., Liu X., Sun X. :
An Experimental Investigation of The Coupled Aerodynamic-Acoustic Response of an Isolated Rotor to Foam Metal Casing Treatment
012Haidl J., Bílek V., Gebouský O, Pivokonský M.:
On Flow Simulation Strategy for Industrial Mixed Vessels
013Hlavatý T., Isoz M., Kovárnová A., Svoboda T., Moucha T., Sluková M. :
What Can Be Gained via Model Order Reduction of Bread-Baking Simulations?
014Khýr M., Isoz M.:
Distance Based Similarity Metrics for Artificial Neural Network Estimates of Soot Distribution in Catalytic
015Kovárnová A., Kubíčková L., Isoz M.:
Towards Shape Optimization of a Quartz Crystal Microbalance Biosensor
016Kovář P., Fürst J.:
Higher-Order Physics-Informed Neural Networks for Parametric Solution of The Unsteady Heat Equation
017Krüger L., Hussong J., Jakirlič S.:
Experimental and Scale-Resolving Simulation Study of Flow Dynamics in Fuel Cell Cooling Systems
018Kubíčková L., Isoz M.:
Connecting immersed boundary method with heat transfer for simulations of mechanical metamaterials
019Lédl M., Kubíčková L., Isoz M.:
Using U-Net to Estimate Fluid Flow in Mechanical Metamaterials
020Měkuta F., Hyhlík. T.:
Space-Only POD Analysis of an Aircraft Propeller Wake Based on CTA Measurements
021Mrázová A., Duda D., Janský V., Bartoš V., Dolejší M., Yanovych V., Uruba V. :
Comparison of The Wake in Free Stream and The Wake in Confined Open Channel of Nuclear Reactor Fuel Assembly
022Nesteruk I. :
Prandtl’s Boundary-Layer Theory as a Basis for Improving Aerodynamic Shapes
023Procházka P., Skála V., Šnábl P., Prasad C.S. :
Aeroelastic Response and Wake Analysis of a Blade Cascade Exposed to Controlled Radial Cross-Flow
024Pučejdl P., Valášek J., Marhan T., Sváček P.:
Modal Analysis of Prestressed Vocal Fold Model
025Raušová M., Trnka F., Schmirlerová H., Schmirler M. :
The Effect of Neglecting Transient Flow in Nasal Cavity CFD Simulations
026Šamlot J., Fürst J. :
Mathematical Modeling of Dilute Gas Using Monte Carlo Method
027Serebryakov V., Dimitrieva N. :
Study of Problems for Body Motion in a Cavity with Gas Injection
028Shkvar Y. :
TR-PIV Comparative Study of Vortical Systems Behind Leading-Edge Vortex Generators and Large Eddy Breakup Devices
029Sibgatullin I., Deleuze J., Joubaud S. :
Multistablity Effects in Internal Wave Modes and Wave Attractor Regimes in Stratified Fluids
030Studeník O., Terpáková J., Haidl J., Isoz M. :
Direct Numerical Simulation of Contact Dynamics in Pseudo-2D Fluidized Beds: Effects of Sampling Depth and Region Size
031Tater A., Holman J. :
Matrix-Free LU-SGS Solver for Hypersonic Laminar Diatomic Gas Flows with Decoupled Vibrational Energy Mode: Mesh Effects on Shock Waves and Separation Bubble in Double-Cone Flow
032Uhlíř V., Bodnár T., Fraunié Ph.:
Assessment of Steady-State and Transient Approaches for Simulating Flow Over a Wall-Mounted Cube
033Uruba V., Procházka P.:
Effect of Surface Roughness on Vortex Shedding in The Wake of a Circular Cylinder in a Subcritical Regime
034Varnhorn W. :
On the Exterior Dirichlet Boundary Value Problem for The Stokes Resolvent Equations in Two Dimensions
035Vinškovský R. :
Preliminary Study of Wind Interaction with a Gable Roof – Wind Tunnel Experiment with Downscale Model
036Vítovec M., Halama J.:
Two-Fluid Finite Volume Solver for Wet Steam Flow
037Voropaiev G., Baskova O. :
Features of the Transition from Laminar to Turbulent Flow in the Presence of Non-Isothermal Conditions in Tubes
038Zagumennyi Y., Voropaiev G.:
Sensitivity of The Boundary Layer Flow to Wave Perturbations Distributed on the Surface
039Zhang J., Sun D., Hu J., Xu D., Liu X., Sun X.:
Resolvent Analysis of Single Rotor Wake Stability in Ground Effect
imce   Powered by Imce 3.0  © 2014, Pavel Formánek, Institute of Thermomechanics AS CR, v.v.i. [generated: 0.0366s]