TY - JOUR
T1 - A multi-moment finite volume formulation for shallow water equations on unstructured mesh
AU - Akoh, Ryosuke
AU - Ii, Satoshi
AU - Xiao, Feng
PY - 2010/6
Y1 - 2010/6
N2 - A novel and accurate finite volume method has been presented to solve the shallow water equations on unstructured grid in plane geometry. In addition to the volume integrated average (VIA moment) for each mesh cell, the point values (PV moment) defined on cell boundary are also treated as the model variables. The volume integrated average is updated via a finite volume formulation, and thus is numerically conserved, while the point value is computed by a point-wise Riemann solver. The cell-wise local interpolation reconstruction is built based on both the VIA and the PV moments, which results in a scheme of almost third order accuracy. Efforts have also been made to formulate the source term of the bottom topography in a way to balance the numerical flux function to satisfy the so-called C-property. The proposed numerical model is validated by numerical tests in comparison with other methods reported in the literature.
AB - A novel and accurate finite volume method has been presented to solve the shallow water equations on unstructured grid in plane geometry. In addition to the volume integrated average (VIA moment) for each mesh cell, the point values (PV moment) defined on cell boundary are also treated as the model variables. The volume integrated average is updated via a finite volume formulation, and thus is numerically conserved, while the point value is computed by a point-wise Riemann solver. The cell-wise local interpolation reconstruction is built based on both the VIA and the PV moments, which results in a scheme of almost third order accuracy. Efforts have also been made to formulate the source term of the bottom topography in a way to balance the numerical flux function to satisfy the so-called C-property. The proposed numerical model is validated by numerical tests in comparison with other methods reported in the literature.
KW - Finite volume method
KW - High order scheme
KW - Hydraulic simulation
KW - Multi-moment
KW - Shallow water equations
KW - Unstructured grid
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U2 - 10.1016/j.jcp.2010.02.023
DO - 10.1016/j.jcp.2010.02.023
M3 - Article
AN - SCOPUS:77951621094
SN - 0021-9991
VL - 229
SP - 4567
EP - 4590
JO - Journal of Computational Physics
JF - Journal of Computational Physics
IS - 12
ER -