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Rotor wake capture improvement based on high-order spatially accurate schemes and chimera grids

Rotor wake capture improvement based on high-order spatially accurate schemes and chimera grids
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摘要 A high-order upwind scheme has been developed to capture the vortex wake of a helicopter rotor in the hover based on chimera grids. In this paper, an improved fifth-order weighted essentially non-oscillatory (WENO) scheme is adopted to interpolate the higher-order left and right states across a cell interface with the Roe Riemann solver updating inviscid flux, and is compared with the monotone upwind scheme for scalar conservation laws (MUSCL). For profitably capturing the wake and enforcing the period boundary condition, the computation regions of flows are discretized by using the struc- tured chimera grids composed of a fine rotor grid and a cylindrical background grid. In the background grid, the mesh cells located in the wake regions are refined after the so- lution reaches the approximate convergence. Considering the interpolation characteristic of the WENO scheme, three layers of the hole boundary and the interpolation boundary are searched. The performance of the schemes is investigated in a transonic flow and a subsonic flow around the hovering rotor. The results reveal that the present approach has great capabilities in capturing the vortex wake with high resolution, and the WENO scheme has much lower numerical dissipation in comparison with the MUSCL scheme. A high-order upwind scheme has been developed to capture the vortex wake of a helicopter rotor in the hover based on chimera grids. In this paper, an improved fifth-order weighted essentially non-oscillatory (WENO) scheme is adopted to interpolate the higher-order left and right states across a cell interface with the Roe Riemann solver updating inviscid flux, and is compared with the monotone upwind scheme for scalar conservation laws (MUSCL). For profitably capturing the wake and enforcing the period boundary condition, the computation regions of flows are discretized by using the struc- tured chimera grids composed of a fine rotor grid and a cylindrical background grid. In the background grid, the mesh cells located in the wake regions are refined after the so- lution reaches the approximate convergence. Considering the interpolation characteristic of the WENO scheme, three layers of the hole boundary and the interpolation boundary are searched. The performance of the schemes is investigated in a transonic flow and a subsonic flow around the hovering rotor. The results reveal that the present approach has great capabilities in capturing the vortex wake with high resolution, and the WENO scheme has much lower numerical dissipation in comparison with the MUSCL scheme.
作者 徐丽 翁培奋
出处 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2011年第12期1565-1576,共12页 应用数学和力学(英文版)
基金 supported by the National Natural Science Foundation of China(No.10802046)
关键词 hovering rotor vortex wake Navier-Stokes equation chimera grid weightedessentially non-oscillatory (WENO) scheme hovering rotor, vortex wake, Navier-Stokes equation, chimera grid, weightedessentially non-oscillatory (WENO) scheme
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  • 1LIOU MENG-SING,CHRISTOPHER J.STEFFEN,JR.A new flux splitting scheme[J].Journal of Computational Physics,1993,107:23-39.
  • 2LIOU MENG-SING.A sequel to AUSM,AUSM+[J].Journal of Computational Physics,1996,129:364-382.
  • 3YASUHIRO WADA,LIOU MENG-SING.A flux splitring scheme with high resolution and robustness for discontinuities[R].AIAA-94-0083.
  • 4KYU HONG K/M,JOON HO LEE,OH-HYUN RHO.An improvement of AUSM schemes by introducing the pressure-based weight functions[J].Computers and Fluids,1998,27(3),311-346.
  • 5KYU HONG KIM,CHONGAM K/M,OH-HYUN RHO.Methods for the accurate computations of hypersonic flows 1.AUSMPW+ scheme[J].Journal of Computational Physics,2001,174,38-80.
  • 6KYU HONG KIM,CHONGAM KIM.Accurate,efficient and monotonic numerical methods for multi-dimensional compressible flows part Ⅰ,spatial discretization[J].Journal of Computational Physics,2005,208,527-569.
  • 7LIOU MENG-SING.A sequel to AUSM,part Ⅱ,AUSM+-up for all speeds[J].Journal of Computational Physics,2006,214:137-170.
  • 8CHIH-HAO CHANG,MENG-SING LIOU.A robust and accurate approach to computing compressible multiphase flow,stratified flow model and AUSM+-up scheme[J].Journal of Computational Physics,2007,225,840-873.
  • 9TITAREV V A,TORO E F.WENO schemes based on upwind and centred TVD fluxes[J].Computers and Fluids,2005,34:705-720.
  • 10SHU CHI-WANG.Essentially non-oscillatory and weighted essentially non-oscillatory schemes for hyperbolic conservation laws[R].NASA/CR-97-206253.ICASE Report NO.97-65.

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