RMHD 2024

Asia/Yekaterinburg
614013, Acad. Korolev Street, 1 Perm, Russia
Ilya Kolesnichenko, Peter Frick
Description

The Fifth Russian Conference on Magnetohydrodynamics



Scientific committee

  • P. Frick (ICMM UB RAS) chairman
  • O. Zikanov (University of Michigan, Dearborn)
  • A. Ivanov (UFU, Ekaterinburg)
  • S. Kantorovich (UFU, Ekaterinburg; University of Vienna)
  • Ya. Listratov (MPEI, Moscow)
  • D. Obukhov (NIIEFA, St. Petersburg)
  • Yu. Raikher (ICMM UB RAS, Perm)
  • D. Sokoloff (MSU, Moscow)
  • R. Stepanov (ICMM UB RAS, Perm)

Topics

  • Fundamental Problems of Magnetohydrodynamics
  • Magnetohydrodynamic Turbulence
  • Astrophysical and Geophysical Magnetohydrodynamics
  • Applied Magnetohydrodynamics
  • Magnetic Fluids and Their Applications
  • Soft Magnetic Matter and its Application-Oriented Aspects
  • Heat and Mass Transfer in Liquid Metals (with and without magnetic field)

Dates to Remember

  • January 1 – March 15, 2024 – registration and one-page abstract submission
  • April 15, 2024 – notification of acceptance
  • May 15, 2024 – conference program at the website
  • June 24 – 27, 2024 – conference period

Information

The conference will take place in the main building of ICMM UB RAS (Perm, Russia) with accommodation in city hotels.

Official languages of the Conference are English (preferable) and Russian.

All abstracts, posters and plenary lectures should be presented in English. Regular oral presentations can be made in Russian, although English is recommended.

Following the conferences, in 2024, accepted after peer-review manuscripts will be published in the journal.

Contact address

Institute of Continuous Media Mechanics of the Ural Branch of Russian Academy of Science
614013, Acad. Korolev Street, 1 Perm, 
Organizing Committee of the Russian Conference on Magnetohydrodynamics (RMHD-2024)

Conference secretary

Ilya Kolesnichenko
Phone: +7(342) 2378381
Phone: +7(342) 2378322 (P. Frick)
e-mail: mhd@icmm.ru 
Fax:   +7(342) 2378487

    • Registration
    • Plenary Talk: I. Kolesnichenko. Vortex generation in the transit flow of liquid metal
    • Session: 1
      • 1
        Ivanov A.S. Effective length of surfactant molecules on the surface of magnetic nanoparticles
      • 2
        Fedorovich S. The plasma flow from the nozzle of the PLM-M magnetoplasma installation
      • 3
        Kabardin I. The doppler anemometry method development for diagnosing two-phase flows in a liquid metal medium
      • 4
        Chermakov M. Sodium equipment of Beloyarsk Nuclear Power Station
    • Coffee Break
    • Plenary Talk: Nikitin A. The concept of the magnetomechanical approach in remote control of intermolecular interactions: from theory to practice
    • Session: 2
      • 5
        Raikher Yu. Magnetoelectric effect from magnetically hard particles embedded in a piezoelectric polymer matrix
      • 6
        Makarova L. Magnetic elastomer based composites for magnetoelectric application
      • 7
        Kolesnikova V. Soft multimagnetic microwires for biomedical and sensing applications: experiment and simulations
      • 8
        Zubarev A. To the theory of magnetic hyperthermia in soft ferrogels
    • Lunch
    • Session: 3
      • 9
        Smolianov I. Simulation of MHD channel flow at finite magnetic Reynolds numbers
      • 10
        Okatev R. Hartmann flow of a fluid with spatially heterogeneous properties
      • 11
        Ozernykh V. Interaction of vortex flow in an inductor with counter-rotating magnetic fields
      • 12
        Shmakov E. Reduced-order model techniques in electromagnetic field calculation for flat linear induction pumps
      • 13
        Banschikov S. Spin-up of the flow induced in thin layer by localized alternating magnetic field
    • Session: 4
      • 14
        Zverev V. Analysis of relaxation times based on dynamic hysteresis curve for ferrofluids and ferrocomposites
      • 15
        Balasoiu M. Small-angle scattering characterization of ferrofluids with anisometric nanoparticles
      • 16
        Subbotin I. Relaxation time of magnetization process in ferrofluids
      • 17
        Nesterov S. Analysis of processes in a multi-tooth seal with consideration of magnetic fluid deformation in the gap
      • 18
        Nesterov S. Calculation of the magnetic circuit of magnetic fluid sealing using dynamically generated electrical circuits by solving the problem of loop currents
    • Coffee Break
    • Session
      • 19
        Vivchar V. Influence of magnetic field on the spectra of optical effects in magnetic fluids with different aggregative stability
      • 20
        Beketova E. Peculiarities of temperature dependence of processes deformation of magnetically sensitive emulsion microdroplets in constant and alternating magnetic fields
      • 21
        Mkrtchyan V. The influence of a magnetic field on the photo-induced thermocapillary deformation of the surface of a magnetic liquid
      • 22
        Grokhotova E. Small multi-core particle: Influence of magnetic anisotropy on orientation texturing and magnetic properties
      • 23
        Khokhryakova C. Influence of magnetic field on the surface tension of ferrofluid
    • Session: 5
      • 24
        Eltishchev V. Amplitude-frequency characteristics of a circular surface wave
      • 25
        Teplyakov I. Study of the pinch effect in a liquid metal system with hemispherical electrodes
      • 26
        Malyshev K. Stokes electrovortex flows in a cylinder of finite volume
      • 27
        Stepanova A. Electrovortex flow in a cylinder with a small top electrode
      • 28
        Poluyanov A. Experimental study of the effect of the pinch force on the flow of a conductive liquid
    • Welcome Party
    • Plenary Talk: Ryapolov P. Magnetic fluids: the interaction between the dynamics and physical properties under external influences
    • Session: 7
      • 29
        Ivanov A.O. The effect of static magnetic field on the orientational ordering of superparamagnetic nanoparticle easy magnetization axes
      • 30
        Kochurin E. Direct numerical simulation of magnetohydrodynamic wave turbulence on the free surface of a ferrofluid
      • 31
        Chirikov D. Slow remagnetization of ferrofluid. Computer experiment
      • 32
        Poperechny I. The longitudinal magnetic response of polydisperse ensembles of superparamagnetic nanoparticles suspended in a fluid
    • Coffee Break
    • Plenary Talk: Ily'n A. Mathematical aspects of the theory of turbulent dynamo in isotropic stochastic flows
    • Session: 8
      • 33
        Yushkov E. Threshold regime of small-scale magnetic energy generation in the MHD shell approach
      • 34
        Yavorsky N. A new class of exact solutions to the equations of magnetic hydrodynamics
      • 35
        Zheligovsky V. Linear MHD stability with respect to Bloch modes
      • 36
        Kopyev A. Suppression of small-scale dynamo in time-irreversible isotropic turbulence
    • Lunch
    • Session: 10
      • 37
        Lebedev A. Magnetic fluid stabilized by a double layer of surfactant in water: influence of a stabilizer on reological and magnetic prorerties
      • 38
        Rusanov M. Dynamic susceptibility of moving magnetic particles: approximation formu- lae and computer simulation
      • 39
        Koskov M. Friction force in a parralel moving coaxial gap filled with ferrofluid
      • 40
        Shel’deshova E. Influence of a magnetic field on the viscosity of a magnetic fluid in a capillary viscometer
      • 41
        Radushnov D. Magnetic properties of polydispersed magnetically active composite mate- rials: comparison of experiment with theory and computer simulation
    • Session: 9
      • 42
        Ryzhkov S. Approximate calculation of convective heat transfer and drag coefficients for geometric models of aircraft
      • 43
        Korovin V. A model problem for calculating electromagnetic field in an induction plasma torch channel
      • 44
        Khasaeva T. Role of magnetorotational instability in the magnetic field occurrence on the periphery of the galactic disc
      • 45
        Akhmet’ev P. The density of the asymptotic ergodic invariant of magnetic lines has a Kolmogorov spectrum indicator
      • 46
        Ogorodnikov L. Alpha-effect in the three-dimensional coherent geostrophic vortex of con- ducting rotating liquid
    • Coffee Break
    • Session: 11
      • 47
        Kalashnikov I. Laboratory and numerical modelling of the shock wave structure of jets of young stars
      • 48
        Fursov A. Structure of pulsar wind nebulae: predictive ability of MHD models
      • 49
        Ryzhkov S. Calculations on the interaction of intense radiation with matter in a mag- netic field
      • 50
        Frick P. Spectral characteristics of Rikitake-like dynamo models
      • 51
        Okatev R. Dynamical chaos in low-order dynamo models
    • Session: 12
      • 52
        Korovin V. Anisotropy of wave propagation along the free surface of a magnetic fluid induced by a horizontal magnetic field
      • 53
        Sokolov E. Dynamics of the shape of magnetic fluid droplets under the influence of a magnetic field: experiment and lattice boltzmann simulation
      • 54
        Dobroserdova A. The study of magnetoactive core-shell nanogels by computer simulations
    • Plenary Talk: Yang J. Overview of the liquid metal MHD studies on fusion-related components at MFM lab
    • Session: 13
      • 55
        Shestakov A. Non-conservative cascades in HD and MHD turbulence
      • 56
        Lyu Z. Experimental study of liquid metal sheard flow under the influence of magnetic field
      • 57
        Mamykin A. Study of developed turbulence in liquid metal flows in the electromagnetic stirrer
      • 58
        Listratov Ya. The upward flow of liquid metal in a heated pipe affected by transverse magnetic field
    • Coffee Break
    • Plenary Talk: Yankov G. Large eddy simulation of a mercury flow in one-sided heated tubes in a transverse magnetic field considering physical properties of the wall and the contact resistance on its inner surface
    • Session: 14
      • 59
        Zikanov O. Magnetoconvection with walls of finite electric conductivity
      • 60
        Stepanov R. Experimental and numerical modeling of turbulent convection with open boundary conditions in liquid medium
      • 61
        Podvigina O. Generation of magnetic field by convective rolls
      • 62
        Yang J. Effects of magnetic fields and spatial confinement on the liquid metal thermal convection
    • Lunch
    • Session: 15
      • 63
        Mironov I. Investigation of the influence of the magnetic field on the dynamics of the jet flow of liquid metal
      • 64
        Sumin R. Investigation of the applicability of a magnetic flow meter for a heavy liquid metal coolant
      • 65
        Belavina E. Thermogravitational convection of the flow molten salt simulator under a magnetic field for different working section configurations
      • 66
        Shenyagin E. Experimental investigation of a liquid metal vertical natural convection in a cell with heated element affected by transverse magnetic field
      • 67
        Rakhimov R. Features of heat transfer and hydrodynamics of promising coolants by the example of molten salts simulators under conditions relevant for new gen- eration reactor installations
    • Session: 16
      • 68
        Stepanov G. Soft magnetic substance – features of electrical conductivity
      • 69
        Musikhin A. Model of uniaxial stresses in magnetic elastomers
      • 70
        Ryzhkov A. Magnetic polymersome in an inhomogeneous magnetic field studied through computer simulation
      • 71
        Zubarev A. Magnetorheological properties and overshoots in magnetic gels with non- spherical particles
      • 72
        Elfimova E. Pair correlations of the easy magnetisation axes of superparamagnetic nanoparticles in a ferrofluid/ferrocomposite
    • Coffee Break
    • Session: 17
      • 73
        Kolesnichenko I. Purification the liquid metal with the use of electromagnetic force
      • 74
        Kukharev A. One method of conduction stirring in the tundish for continuous casting
      • 75
        Vinter E. MHD processes during 25–30 mm ingot electromagnetic casting
      • 76
        Losev G. Measuring the effective conductivity of liquid metals with solid impurities
      • 77
        Ozernykh V. Features of local distortion of streamlines near an ensemble of particles of different shape and orientation
    • Session: 18
      • 78
        Straube A. Depinning of a kink in a chain of magnetic particles trapped in a periodic energy landscape
      • 79
        Kopytova E. Phase transitions in liquid-crystal composites of goethite nanorods: contin- uum and molecular-statistical theories
      • 80
        Ignatov A. Study of magnetostrain and magnetostriction contributions to magnetoelec- tric response of a polymer multiferroic film
      • 81
        Chemezova E. Magnetic response simulation of the fractal cluster containing superparam- agnetic nanoparticles
    • Conference Dinner
    • Plenary Talk: Illarionov E. Machine Learning in Solar Physics
    • Session: 19
      • 82
        Kotelnikova M. On new simple solutions of MHD equations for total solar magnetic energy
      • 83
        Tolmachev D. Predictive patterns for magnetic field reversals
      • 84
        Mindubaev M. Possible mechanisms for maintaining the earth’s magnetic field in the early stages of its evolution
      • 85
        Mikhailov E. Magnetic field structures generated by accretion disc dynamo
    • Coffee Break
    • Plenary Talk: Brestenský J. The fastest growing modes in magnetoconvection with anisotropic diffusivities in the Earth’s fluid core
    • Session: 20
      • 86
        Tlatov A. Toroidal-U-Toroidal model of solar dynamo
      • 87
        Kleeorin N. Prediction of Solar activity using a mean-field dynamo model with account of magnetic helicity
      • 88
        Stepanov R. Synchronization effect in a nonlinear mean-field model of solar dynamo
      • 89
        Sokoloff D. Long term memory effects in small-scall dynamo and other instabilities in random media
    • Lunch
    • Session: 21
      • 90
        Berdyugin D. Effects of magnetic field on natural convection processes in salt melts
      • 91
        Luchinkin N. Investigation of magnetohydrodynamics and heat transfer in a liquid metal «tube-in-channel» heat exchange system in relation to a fusion reactor blan- ket module
      • 92
        Balabaev N. Experimental investigation of the wall‘s electrical conductivity influence on the formation of magneto-convective fluctuations in vertical channels
      • 93
        Khlybov O. Effect of travelling magnetic field on crystal growth with internal tempera- ture control
      • 94
        Sukhanovskii A. Specifics of large-scale circulation reorientations in tanks of different geom- etry
    • Session: 22
      • 95
        Khripchenko S. Experimental study of a two-channel traveling field pump
      • 96
        Nikulin I. Simulation of surface film rupture caused by AMF-driven metallic melt mo- tion
      • 97
        Khripchenko S. Electrical resistance at the boundary between stainless steel and liquid lead, the effect of liquid lead on stainless steel when electric current flows through the boundary of their contact
      • 98
        Nikulin I. Analysis of possibilities and development of cooling systems for photovoltaic converters to improve the efficiency of current generation
      • 99
        Khripchenko S. Transformer type scroll pump
    • Coffee Break
    • Session: 23
      • 100
        Nekrasov O. On the stability of the oscillating electroosmotic flow in the microchannel
      • 101
        Kazantsev P. Convective instability of ferrofluid in the Hele-Shaw cell
      • 102
        Sadilov E. Kelvin-Helmholtz instability in a system of dielectric and electrically con- ducting fluids under the influence of ampere force
      • 103
        Konovalov V. Stability of the liquid-vapor interface under the combined influence of ver- tical vibrations and electric field
    • Session: 24
      • 104
        Poluyanov A. The flow of a submerged jet of liquid metal in an alternating magnetic field
      • 105
        Bondarenko A. Mathematical simulation of inductive level sensor response to conductivity change
      • 106
        Khalilov R. Testing sodium MHD equipment
      • 107
        Mamykin A. Capabilities of matrix cylindrical induction machine for liquid metal stirring in the process of crystallization
    • Closing