DNS of Magnetic Density Separation in the Wake of a Honeycomb
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-47028-8_42
Reference5 articles.
1. Dennis, S.C.R., Singh, S.N., Ingham, D.B.: The steady flow due to a rotating sphere at low and moderate Reynolds numbers. J. Fluid Mech. 101, 257–279 (1980)
2. Van Hinsberg, M.A.T., ten Thije Boonkkamp, J.H.M. and Clercx, H.J.: An efficient, second order method for the approximation of the Basset history force, J. Comp. Phys., 230, 1465–1478 (2011)
3. Kuerten, J.G.M., Van der Geld, C.W.M., Geurts, B.J.: Turbulence modification and heat transfer enhancement by inertial particles in turbulent channel flow. Phys. Fluids 23, 123301 (2011)
4. Tajfirooz, S., Meijer, J.G., Dellaert, R.A., Zeegers, J.C.H., Kuerten, J.G.M.: Direct numerical simulation of magneto-Archimedes separation of spherical particles. J. Fluid Mech. 910, A52 (2021)
5. Thijs, L.C., Dellaert, R.A., Tajfirooz, S., Zeegers, J.C.H., Kuerten, J.G.M.: Honeycomb-generated Reynolds-number dependent wake turbulence. J. Turbul. 22, 535–561 (2021)
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