Numerical investigation of three-dimensional compressible flows induced by a train moving into a tunnel
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Sawada, 1993, Role of high speed railways in Japan, 1
Ozawa, 1979, Studies of micro-pressure wave radiated from a tunnel exit, Railway Technical Research Report No. 1121
Fujii, 1995, Unified zonal method based on the fortified solution algorithm, Journal of Computational Physics, 118, 92, 10.1006/jcph.1995.1082
Roe, 1981, Approximate Riemann solver, parameter vectors and difference schemes, Journal of Computational Physics, 43, 357, 10.1016/0021-9991(81)90128-5
Van Leer, 1979, Towards the ultimate conservative difference scheme V. A second order sequel to Godunov's method, Journal of Computational Physics, 23, 276, 10.1016/0021-9991(77)90095-X
Baldwin, 1978, Thin layer approximation and algebraic model for separated turbulent flows, AIAA Paper 78-257
Obayashi, 1986, Improvement in efficiency and reliability for Navier-Stokes computations using the LU-ADI factorization algorithm, AIAA Paper 86-0338
Shimbo, 1993, Steady and unsteady pressure measurement on high speed train, 341
Ogawa, 1994, Effect of train shape on a compression wave generated by a train moving into a tunnel
Ogawa, 1994, Numerical simulation of compressible flows induced by a train moving into a tunnel, CFD Journal, 3, 1
Ogawa, 1993, Numerical simulation of compressible flows induced by a train moving in a tunnel, AIAA Paper 93-2951
Swarden, 1970, Vehicle-tunnel entry at subsonic speeds, MIT Report
Ogawa, T. and Fujii, K., The analytical model of the large compression wave caused by a train moving into a tunnel, in preparation.