Research
computational aeroacoustics and aerodynamics, large-eddy simulations, meso-scale ocean modelling, fluctuating hydrodynamics for nano-scale flows, numerical methods for hyperbolic conservation laws
Biography / Research Interests
Prior to joining SEMS as a Senior Lecturer in 2012, Sergey Karabasov was a Royal Society University Research Fellow in Cambridge University Engineering Department. Sergey has PhD in mathematical modelling from Moscow State University in 1999 and Full Doctorate of Science (Habilitation Degree) from Keldysh Institute of Applied Mathematics Moscow in 2010. His research is devoted to high-resolution and multiscale modelling in computational aero and hydrodynamics. Over the years, his research has been supported by the leading UK industry as well as UK Research Councils (EPSRC and NERC) and the Royal Society of London. Internationally, his research into multiscale modelling methods for sound generated by jet turbulence in collaboration with Ohio Aerospace Institute was supported by Aero Acoustics Research Consortium (AARC). In collaboration with Dr Nerukh?s group in Aston University Sergey developed a new scheme for numerically coupling the continuum fluid dynamics equations with the molecular dynamics. The idea formed the basis for a 1.2 M Euro multi-lateral G8 project which involved Queen Mary, Aston University and several other research institutions in Japan and Russia. The goal of the project was to develop a new non-local boundary condition for industry-standard open-source molecular dynamics codes to allow one to truncate the computational domain size and, thus, speed up the simulation. Sergey was a guest editor of the Royal Society PhilTrans A special issue "Multiscale systems in fluids and soft matter: approaches, numerics, and applications" in 2014. In 2015, together with Dr Nerukh, he organised the CECAM/Lorentz Workshop "Virus as a whole: meso- and macroscopic structure and dynamics at all atom resolution" in Lausanne, Switzerland.
Publications
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Publications of specific relevance to
2021
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Li F, Korotkin I, Farafonov V and
Karabasov SA (2021).
Lateral migration of peptides in transversely sheared flows in water: An atomistic-scale-resolving simulation. Journal of Molecular Liquids vol. 337,
10.1016/j.molliq.2021.116111
Gryazev V, Kalyan A,
Markesteijn AP and
Karabasov SA (2021).
Broadband shock-associated noise modelling for high-area-ratio under-expanded jets. Journal of The Acoustical Society of America vol. 150, (2) 1534-1547.
10.1121/10.00059762020
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Liu X, Korotkin I, Rao Z and
Karabasov S (2020).
A Thermostat-Consistent Fully Coupled Molecular Dynamics—Generalized Fluctuating Hydrodynamics Model. Advanced Theory and Simulations 10.1002/adts.202000209
Markesteijn AP, Gryazev V,
Karabasov SA, Ayupov RS, Benderskiy LA and Lyubimov DA (2020).
Flow and Noise Predictions of Coaxial Jets. American Institute of Aeronautics and Astronautics Aiaa Journal: Devoted to Aerospace Research and Development 1-14.
10.2514/1.j058881
Tsiklauri D,
Karabasov S and Prodaevich VG (2020).
The Effect of Particle Gas Composition and Boundary Conditions on Triboplasma Generation: A Computational Study Using the Particle-in-Cell Method. Institute of Electrical and Electronics Engineers (Ieee) Ieee Transactions On Plasma Science 1-12.
10.1109/tps.2020.2998331
Vorontsov VI, Faranosov GA,
Karabasov SA and Zaitsev MY (2020).
Comparison of the Noise Directivity Pattern of the Main Rotor of a Helicopter for Flight and Hover Modes. Acoustical Physics vol. 66, (3) 303-312.
10.1134/S1063771020030082
Воронцов ВИ, Фараносов ГА, Карабасов СА and Зайцев МЮ (2020).
Сравнение направленности шума несущего вертолетного винта для режимов полета и висения. Acoustical Physics vol. 66, (3) 308-318.
10.31857/s03207919200300892019
Markesteijn AP and
Karabasov SA (2019).
Simulations of co-Axial jet flows on graphics processing units: The flow and noise analysis. Philosophical Transactions of The Royal Society a: Mathematical, Physical and Engineering Sciences vol. 377, (2159)
10.1098/rsta.2019.0083
Karabasov S, Ayton L, Wu X and Afsar M (2019).
Advances in aeroacoustics research: recent developments and perspectives. Philosophical Transactions. Series a, Mathematical, Physical, and Engineering Sciences vol. 377, (2159) 20190390-20190390.
10.1098/rsta.2019.0390
Hu J, Korotkin IA and
Karabasov SA (2019).
Hybrid multiscale simulation reveals focusing of a diffusing peptide molecule by parallel shear flow in water. Journal of Molecular Liquids vol. 280, 285-297.
10.1016/j.molliq.2019.01.152
Rorai C, Zaitsev M and
Karabasov S (2019).
On the limitations of some popular numerical models of flagellated microswimmers: importance of long-range forces and flagellum waveform. R Soc Open Sci vol. 6, (1) 180745-180745.
10.1098/rsos.1807452018
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Korotkin IA and
Karabasov SA (2018).
A generalised Landau-Lifshitz fluctuating hydrodynamics model for concurrent simulations of liquids at atomistic and continuum resolution. J Chem Phys vol. 149, (24) 244101-244101.
10.1063/1.5058804
Tan DJ, Honnery D, KALYAN A,
GRYAZEV V,
KARABASOV SA and Edgington-Mitchell D (2018).
Equivalent Shock-Associated Noise Source Reconstruction of Screeching Underexpanded Unheated Round Jets. American Institute of Aeronautics and Astronautics Aiaa Journal 10.2514/1.J057400
Zaitsev MA, Goloviznin VM and
Karabasov SA (2018).
Supercomputer simulation of MATIS-H problem. Supercomputing Frontiers and Innovations vol. 5, (3) 126-129.
10.14529/jsfi180324
Tan DJ, Honnery D, KALYAN A, GRYAZEV V,
KARABASOV SA and Edgington-Mitchell D (2018).
Correlation Analysis of High Resolution Particle Image Velocimetry Data of Screeching Jets. American Institute of Aeronautics and Astronautics Aiaa Journal 10.2514/1.J057041
Zaitsev MA and
Karabasov SA (2018).
Mathematical Modelling of Flagellated Microswimmers. Computational Mathematics and Mathematical Physics vol. 58, (11) 1804-1816.
10.1134/S0965542518110167
Semiletov VA and
Karabasov SA (2018).
A volume integral implementation of the Goldstein generalised acoustic analogy for unsteady flow simulations. Journal of Fluid Mechanics vol. 853, 461-487.
10.1017/jfm.2018.572
NAGHIBI SE,
KARABASOV SA, Jalali MA and Sadati SMH (2018).
Fast spectral solutions of the double gyre problem in a turbulent flow regime. Elsevier Applied Mathematical Modelling 10.1016/j.apm.2018.09.026
Hu J, Korotkin IA and
Karabasov SA (2018).
A multi-resolution particle/fluctuating hydrodynamics model for hybrid simulations of liquids based on the two-phase flow analogy. J Chem Phys vol. 149, (8) 084108-084108.
10.1063/1.50409622017
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Tarasova E, Korotkin I, Farafonov V,
Karabasov S and Nerukh D (2017).
Complete virus capsid at all-atom resolution: Simulations using molecular dynamics and hybrid molecular dynamics/hydrodynamics methods reveal semipermeable membrane function. Journal of Molecular Liquids vol. 245, 109-114.
10.1016/j.molliq.2017.06.124
Kopiev VF, Zaytsev MY, Vorontsov VI,
Karabasov SA and Anikin VA (2017).
Helicopter noise in hover: Computational modelling and experimental validation. Acoustical Physics vol. 63, (6) 686-698.
10.1134/S1063771017060070
Semiletov VA and
Karabasov SA (2017).
Similarity scaling of jet noise sources for low-order jet noise modelling based on the Goldstein generalised acoustic analogy. Multi-Science Publishing International Journal of Aeroacoustics 10.1177/1475472X17730457
Proskurov S, Darbyshire OR and
Karabasov SA (2017).
Aerofoil broadband and tonal noise modelling using stochastic sound sources and incorporated large scale fluctuations. Elsevier Journal of Sound and Vibration 10.1016/j.jsv.2017.08.036
Kalyan A and
Karabasov SA (2017).
Broad band shock associated noise predictions in axisymmetric and asymmetric jets using an improved turbulence scale model. Journal of Sound and Vibration vol. 394, 392-417.
10.1016/j.jsv.2017.01.027
Naghibi SE, Jalali MA,
Karabasov SA and Alam MR (2017).
Excitation of the Earth's Chandler wobble by a turbulent oceanic double-gyre. Geophysical Journal International vol. 209, (1) 509-516.
10.1093/gji/ggx032
Копьев ВФ, Зайцев МЮ, Воронцов ВИ, Карабасов СА and Аникин ВА (2017).
Расчет шума несущего винта вертолета и его экспериментальная проверка на режиме висения, Акустический журнал. Acoustical Physics (6) 651-664.
10.7868/s03207919170600772016
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Korotkin I, Nerukh D, Tarasova E, Farafonov V and
Karabasov S (2016).
Two-phase flow analogy as an effective boundary condition for modelling liquids at atomistic resolution. Journal of Computational Science vol. 17, 446-456.
10.1016/j.jocs.2016.03.012
Semiletov VA, Yakovlev PG,
Karabasov SA, Faranosov GA and Kopiev VF (2016).
Jet and jet–wing noise modelling based on the CABARET MILES flow solver and the Ffowcs Williams–Hawkings method. International Journal of Aeroacoustics vol. 15, (6-7) 631-645.
10.1177/1475472X16659387
Sipatov AM,
Karabasov SA, Gomzikov LY, Abramchuk TV and Semakov GN (2016).
Fluid film break-up modeling using adaptive mesh refinement models. Russian Aeronautics vol. 59, (3) 381-387.
10.3103/S10687998160301442015
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Scukins A, Nerukh D, Pavlov E,
Karabasov S and
Markesteijn A (2015).
Multiscale molecular dynamics/hydrodynamics implementation of two dimensional “Mercedes Benz” water model. European Physical Journal: Special Topics vol. 224, (12) 2217-2238.
10.1140/epjst/e2015-02409-8
Karabasov SA and Sandberg RD (2015).
Influence of free stream effects on jet noise generation and propagation within the Goldstein acoustic analogy approach for fully turbulent jet inflow boundary conditions. International Journal of Aeroacoustics vol. 14, (3-4) 413-430.
10.1260/1475-472x.14.3-4.413
Korotkin I,
Karabasov S, Nerukh D,
Markesteijn A, Scukins A, Farafonov V and Pavlov E (2015).
A hybrid molecular dynamics/fluctuating hydrodynamics method for modelling liquids at multiple scales in space and time. Journal of Chemical Physics vol. 143, (1)
10.1063/1.4923011
Mohan NKD, Dowling AP,
Karabasov SA, Xia H, Graham O, Hynes TP and Tucker PG (2015).
Acoustic sources and far-field noise of chevron and round jets. Aiaa Journal vol. 53, (9) 2421-2436.
10.2514/1.J0529732014
Markesteijn AP,
Karabasov SA, Glotov VY and Goloviznin VM (2014).
A new non-linear two-time-level Central Leapfrog scheme in staggered conservation-flux variables for fluctuating hydrodynamics equations with GPU implementation. Computer Methods in Applied Mechanics and Engineering vol. 281, 29-53.
10.1016/j.cma.2014.07.027
Markesteijn A,
Karabasov S, Scukins A, Nerukh D, Glotov V and Goloviznin V (2014).
Concurrent multiscale modelling of atomistic and hydrodynamic processes in liquids. Philosophical Transactions of The Royal Society a: Mathematical, Physical and Engineering Sciences vol. 372, (2021)
10.1098/rsta.2013.0379
Karabasov S, Nerukh D, Hoekstra A, Chopard B and Coveney PV (2014).
Multiscale modelling: Approaches and challenges. Philosophical Transactions of The Royal Society a: Mathematical, Physical and Engineering Sciences vol. 372, (2021)
10.1098/rsta.2013.0390
Semiletov VA and
Karabasov SA (2014).
CABARET scheme for computational aero acoustics: Extension to asynchronous time stepping and 3D flow modelling. International Journal of Aeroacoustics vol. 13, (3-4) 321-336.
10.1260/1475-472X.13.3-4.321
Semiletov VA,
Karabasov SA, Faranosov GA, Kopiev VF and Goloviznin VM (2014).
Jet-wing interaction: Computational modelling based on MILES CABARET and acoustic analogy. 20th Aiaa/Ceas Aeroacoustics Conference 10.2514/6.2014-2475
Semiletov VA and
Karabasov SA (2014).
Adjoint linearised euler solver and source modelling for goldstein acoustic analogy equations for 3D jet flow problems: Verification and capability study. 20th Aiaa/Ceas Aeroacoustics Conference 
Sipatov AM,
Karabasov SA, Gomzikov LY, Abramchuk TV and Semakov GN (2014).
Structural optimization of the air-blast atomizer based on three-dimensional simulation techniques. Russian Aeronautics vol. 57, (1) 75-83.
10.3103/S1068799814010115
Pavlov E, Taiji M, Scukins A,
Markesteijn A,
Karabasov S and Nerukh D (2014).
Visualising and controlling the flow in biomolecular systems at and between multiple scales: From atoms to hydrodynamics at different locations in time and space. Faraday Discussions vol. 169, 285-302.
10.1039/c3fd00159h
Goloviznin VM,
Karabasov SA and Kondakov VG (2014).
Generalization of the CABARET scheme to two-dimensional orthogonal computational grids. Mathematical Models and Computer Simulations vol. 6, (1) 56-79.
10.1134/S2070048214010050
Глотов ВЮ, Головизнин ВМ, Карабасов СА and Маркештейн АП (2014).
Новая схема “двухслойный крест” для моделирования стохастических уравнений Ландау–Лифшица. Computational Mathematics and Mathematical Physics vol. 54, (2) 298-317.
10.7868/s00444669140200822013
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Faranosov GA, Goloviznin VM,
Karabasov SA, Kondakov VG, Kopiev VF and Zaitsev MA (2013).
CABARET method on unstructured hexahedral grids for jet noise computation. Computers and Fluids vol. 88, 165-179.
10.1016/j.compfluid.2013.08.011
Semiletov VA and
Karabasov SA (2013).
CABARET scheme with conservation-flux asynchronous time-stepping for nonlinear aeroacoustics problems. Journal of Computational Physics vol. 253, 157-165.
10.1016/j.jcp.2013.07.008
Kondakov VG,
Karabasov SA and Goloviznin VM (2013).
On the effect of Mach number on subsonic jet noise sources in the Goldstein acoustic analogy model. 19th Aiaa/Ceas Aeroacoustics Conference 10.2514/6.2013-2275
Semiletov VA,
Karabasov SA, Lyubimov DA, Faranosov GA and Kopiev VF (2013).
On the effect of flap deflection on jet flow for a jet-pylon-wing configuration: Near-field and acoustic modelling results. 19th Aiaa/Ceas Aeroacoustics Conference 10.2514/6.2013-2215
Semiletov VA and
Karabasov SA (2013).
3D frequency-domain linearised Euler solver based on the Goldstein acoustic analogy equations for the study of non-uniform mean flow propagation effects. 19th Aiaa/Ceas Aeroacoustics Conference 10.2514/6.2013-2019
Semiletov VA and
Karabasov SA (2013).
Airfoil flow and noise computation using monotonically integrated large eddy simulation and acoustic analogy: Effect of the grid resolution. J Acoust Soc Am vol. 133, (5)
10.1121/1.4805995
Nerukh D and
Karabasov S (2013).
Water-peptide dynamics during conformational transitions. Journal of Physical Chemistry Letters vol. 4, (5) 815-819.
10.1021/jz400051p
Obabko AV, Fischer PF, Tautges TJ, Goloviznin VM, Zaytsev MA, Chudanov VV, Pervichko VA, Aksenova AE and
Karabasov SA (2013).
Large Eddy Simulation of Thermo-Hydraulic Mixing in a T-Junction. Nuclear Reactor Thermal Hydraulics and Other Applications 10.5772/53143
Karabasov S, Bogey C and Hynes T (2013).
An investigation of the mechanisms of sound generation in initially laminar subsonic jets using the Goldstein acoustic analogy. Journal of Fluid Mechanics vol. 714, 24-57.
10.1017/jfm.2012.448
Faranosov GA, Kopiev VF and
Karabasov SA (2013).
Application of azimuthal decomposition technique for validation of CAA methods. 19th Aiaa/Ceas Aeroacoustics Conference 10.2514/6.2013-2238
Sipatov AM,
Karabasov SA, Gomzikov LY, Abramchuk TV and Semakov GN (2013).
Application of three-dimensional numerical study in air-blast atomizer designing. Computational Continuum Mechanics vol. 6, (3) 346-353.
10.7242/1999-6691/2013.6.3.392012

Semiletov VA,
Karabasov SA, Faranosov GA and Zaitsev MA (2012).
Airfoil flow and noise computation using monotonically integrated LES and acoustic analogy. 18th Aiaa/Ceas Aeroacoustics Conference (33rd Aiaa Aeroacoustics Conference) 10.2514/6.2012-2108
Depuru Mohan NK,
Karabasov SA, Graham O, Dowling AP, Hynes TP, Tucker PG and Xia H (2012).
Reduced-order jet noise modelling for chevrons. 18th Aiaa/Ceas Aeroacoustics Conference (33rd Aiaa Aeroacoustics Conference) 10.2514/6.2012-2083
(2012).
CABARET method on unstructured hexahedral grids for jet noise computation. 18th Aiaa/Ceas Aeroacoustics Conference (33rd Aiaa Aeroacoustics Conference) 10.1016/j.compfluid.2013.08.011
Karabasov SA and Sandberg RD (2012).
On the effect of Mach number and coflow for turbulent jet noise sources. 18th Aiaa/Ceas Aeroacoustics Conference (33rd Aiaa Aeroacoustics Conference) 10.2514/6.2012-2298
Yakovlev PG,
Karabasov SA and Goloviznin VM (2012).
Direct modeling of the interaction between vortex pairs. Mathematical Models and Computer Simulations vol. 4, (3) 288-296.
10.1134/S207004821203009X
Karabasov SA and Goloviznin VM (2012).
Direct Numerical Simulations of Compressible Vortex Flow Problems. Advanced Fluid Dynamics 10.5772/26473
Gomzikov LY,
Karabasov SA, Latyshev VG and Sipatov AM (2012).
ADVANCED HEAT ANALYSIS OF TURBINE ROTOR BLADES COUPLED WITH COMBUSTION CHAMBER SIMULATION. Tsagi Science Journal vol. 43, (5) 647-666.
10.1615/tsagiscij.20130071522011
Karabasov SA, Bogey C and Hynes T (2011).
Computation of the noise of initially laminar jets using a statistical approach for the acoustic analogy: Application and discussion. 17th Aiaa/Ceas Aeroacoustics Conference 2011 (32nd Aiaa Aeroacoustics Conference) 10.2514/6.2011-2929
Yakovlev PG,
Karabasov SA and Goloviznin VM (2011).
On the acoustic super-directivity of jittering vortex systems for the study of jet noise. 17th Aiaa/Ceas Aeroacoustics Conference 2011 (32nd Aiaa Aeroacoustics Conference) 10.2514/6.2011-2889
Berloff P,
Karabasov S, Farrar JT and Kamenkovich I (2011).
On latency of multiple zonal jets in the oceans. Journal of Fluid Mechanics vol. 686, 534-567.
10.1017/jfm.2011.345
Karabasov SA (2011).
On the powerof second-order accurate numerical methods for model problems of gas- and hydrodynamics. Mathematical Models and Computer Simulations vol. 3, (1) 92-112.
10.1134/S20700482110100782010
Karabasov SA (2010).
Once again on the importance of propagation effects for jet noise modelling. 16th Aiaa/Ceas Aeroacoustics Conference (31st Aiaa Aeroacoustics Conference) 10.2514/6.2010-3966
Karabasov SA (2010).
Understanding jet noise. Philosophical Transactions of The Royal Society a: Mathematical, Physical and Engineering Sciences vol. 368, (1924) 3593-3608.
10.1098/rsta.2010.0086
Karabasov SA, Afsar MZ, Hynes TP, Dowling AP, McMullan WA, Pokora CD, Page GJ and McGuirk JJ (2010).
Jet noise: Acoustic analogy informed by large eddy simulation. Aiaa Journal vol. 48, (7) 1312-1325.
10.2514/1.44689
Karabasov SA, Xia H, Graham O, Hynes TP, Tucker PG and Dowling AP (2010).
Low-order modelling for chevron jet noise based on LES data. 16th Aiaa/Ceas Aeroacoustics Conference (31st Aiaa Aeroacoustics Conference) 10.2514/6.2010-3964
Dowling AP,
Karabasov SA and Hynes TP (2010).
USE OF ACOUSTIC ANALOGY WITH LARGE EDDY SIMULATION FOR TURBULENT JET NOISE MODELING. Tsagi Science Journal vol. 41, (1) 79-95.
10.1615/tsagiscij.v41.i1.802009
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Tucker PG and
Karabasov SA (2009).
Unstructured grid solution approach for eikonal equation with acoustics in mind. 47th Aiaa Aerospace Sciences Meeting Including The New Horizons Forum and Aerospace Exposition 10.2514/6.2009-374
Karabasov SA, Kopiev VF and Goloviznin VM (2009).
On a classical problem of acoustic wave scattering by a free vortex: Numerical modelling. 15th Aiaa/Ceas Aeroacoustics Conference (30th Aiaa Aeroacoustics Conference) 10.2514/6.2009-3234
Goloviznin VM,
Karabasov SA, Kozubskaya TK and Maksimov NV (2009).
CABARET scheme for the numerical solution of aeroacoustics problems: Generalization to linearized one-dimensional Euler equations. Computational Mathematics and Mathematical Physics vol. 49, (12) 2168-2182.
10.1134/S096554250912015X
Karabasov S and Goloviznin V (2009).
High-resolution cabaret scheme for sound scattering problems. 16th International Congress On Sound and Vibration 2009, Icsv 2009 vol. 1, 637-644.
Karabasov SA and Goloviznin VM (2009).
Compact Accurately Boundary-Adjusting high-REsolution Technique for fluid dynamics. Journal of Computational Physics vol. 228, (19) 7426-7451.
10.1016/j.jcp.2009.06.0372008
Karabasov SA and Goloviznin VM (2008).
Contrasting high-resolution characteristic shock-capturing methods in aeroacoustic test problems. 14th Aiaa/Ceas Aeroacoustics Conference (29th Aiaa Aeroacoustics Conference) 10.2514/6.2008-2924
Dowling AP, Afsar M,
Karabasov S and Hynes TP (2008).
Reduced‐order models for jet noise. The Journal of The Acoustical Society of America vol. 123, (5) 3021-3021.
10.1121/1.2932639
Karabasov SA, Afsar MZ, Hynes TP, Dowling AP, McMullan WA, Pokora CD, Page GJ and McGuirk JJ (2008).
Using large eddy simulation within an acoustic analogy approach for jet noise modelling. 14th Aiaa/Ceas Aeroacoustics Conference (29th Aiaa Aeroacoustics Conference) 10.2514/6.2008-29852007
Karabasov SA and Goloviznin VM (2007).
New efficient high-resolution method for nonlinear problems in aeroacoustics. Aiaa Journal vol. 45, (12) 2861-2871.
10.2514/1.29796
(2007).
Jet noise in the 'zone of silence'. 13th Aiaa/Ceas Aeroacoustics Conference (28th Aiaa Aeroacoustics Conference) 10.2514/6.2007-3606
Karabasov SA, Hynes TP and Dowling AP (2007).
Effect of mean-flow evolution on sound propagation through non-uniform jet flows. 13th Aiaa/Ceas Aeroacoustics Conference (28th Aiaa Aeroacoustics Conference) 10.2514/6.2007-3655
Goloviznin VM, Semenov VN, Korotkin IA and
Karabasov SA (2007).
A novel computational method for modelling stochastic advection in heterogeneous media. Transport in Porous Media vol. 66, (3) 439-456.
10.1007/s11242-006-0022-z2006
Karabasov SA and Hynes TP (2006).
A method for solving compressible flow equations in an unsteady free stream. Proceedings of The Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science vol. 220, (2) 185-202.
10.1243/09544062C03105
Karabasov SA and Hynes TP (2006).
Adjoint linearised Euler solver in the frequency domain for jet noise modelling. Collection of Technical Papers - 12th Aiaa/Ceas Aeroacoustics Conference vol. 6, 3550-3563.
10.2514/6.2006-2673
Afsar MZ, Dowlingt AP and
Karabasov SA (2006).
Comparison of jet noise models. Collection of Technical Papers - 12th Aiaa/Ceas Aeroacoustics Conference vol. 4, 2466-2479.
10.2514/6.2006-2593
Karabasov SA, Goloviznin VM, Kozubskaya TK and Abalakin IV (2006).
A new high-resolution balance-characteristic method for aeroacoustics. Collection of Technical Papers - 12th Aiaa/Ceas Aeroacoustics Conference vol. 1, 190-204.
10.2514/6.2006-24152005
Karabasov SA and Hynes TP (2005).
An efficient frequency-domain algorithm for wave scattering problems with application to jet noise. Collection of Technical Papers - 11th Aiaa/Ceas Aeroacoustics Conference vol. 1, 347-358.
10.2514/6.2005-2827
Morgans AS,
Karabasov SA, Dowling AP and Hynes TP (2005).
Transonic helicopter noise. Aiaa Journal vol. 43, (7) 1512-1524.
10.2514/1.66792004
Karabasov SA (2004).
A method for solving compressible flow equations in unsteady free stream. Collection of Technical Papers - 10th Aiaa/Ceas Aeroacoustics Conference vol. 2, 1091-1106.
10.2514/6.2004-28942003
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Morgans AS,
Karabasov SA, Dowling AP and Hynes TP (2003).
Low order models for blade response to vorticity gusts in bounded systems. 9th Aiaa/Ceas Aeroacoustics Conference and Exhibit 10.2514/6.2003-32202002
Karabasov SA and Hynes TP (2002).
Open boundary conditions of predictor-corrector type for external flows. 8th Aiaa/Ceas Aeroacoustics Conference and Exhibit 10.2514/6.2002-24422001
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Goloviznin VM, Hynes TP and
Karabasov SA (2001).
Cabaret finite‐difference schemes for the one‐dimensional Euler equations. Mathematical Modelling and Analysis vol. 6, (2) 210-220.
10.3846/13926292.2001.9637160
Goloviznin VM, Hynes TP and
Karabasov SA (2001).
Cabaret finite-difference schemes for the one-dimensional euler equations. Mathematical Modelling and Analysis vol. 6, (2) 210-220.
10.1080/13926292.2001.9637160