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1
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0033906352
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Control of Burgers equation by means of mode reduction
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H.M. Park, Y.D. Jang, Control of Burgers equation by means of mode reduction, Int. J. Engrg. Sci. 38 (2000) 785-805.
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Boundary velocity control of incompressible flow with an application to viscous drag reduction
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Characteristic-eddy decomposition of turbulence in a channel
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Moin, P.1
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4
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36549091839
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Turbulent thermal convection in a finite domain: Numerical results
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Park H.M., Sirovich L. Turbulent thermal convection in a finite domain: numerical results. Phys. Fluids A. 2(9):1990;1659-1668.
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Phys. Fluids a
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Park, H.M.1
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The dynamics of coherent structures in the wall region of a turbulent boundary layer
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Aubry N., Holmes P., Lumley J.L., Stone E. The dynamics of coherent structures in the wall region of a turbulent boundary layer. J. Fluid Mech. 192:1988;115-173.
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Low-dimensional models for complex geometry flows: Application to grooved channels and circular cylinders
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Deane A.E., Kevrekidis I.G., Karniadakis G.E., Orszag S.A. Low-dimensional models for complex geometry flows: application to grooved channels and circular cylinders. Phys. Fluids. 3:1991;23-27.
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Deane, A.E.1
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7
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Feedback control of turbulence
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Moin, P.1
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0029732249
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The use of the Karhunen-Loève decomposition for the modeling of distributed parameter systems
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Park H.M., Cho D.H. The use of the Karhunen-Loève decomposition for the modeling of distributed parameter systems. Chem. Eng. Sci. 51(1):1996;81-98.
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Chem. Eng. Sci.
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Park, H.M.1
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9
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0032031194
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An efficient method of solving the Navier-Stokes equation for the flow control
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Park H.M., Lee M.W. An efficient method of solving the Navier-Stokes equation for the flow control. Int. J. Numer. Meth. Engrg. 41:1998;1131-1151.
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Park, H.M.1
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11
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84950242370
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Interscience, New York
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R. Courant, D. Hilbert, Methods of Mathematical Physics, vol. 1, Interscience, New York, 1953.
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Methods of Mathematical Physics
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Courant, R.1
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12
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0000615669
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Function minimization by conjugate gradients
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The Computer J.
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