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Near-surface simulations of the acoustic field

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Near-surface simulations of the acoustic field. Konstantin Parchevsky. Stanford University, HEPL ... Equations: linearized 3D Euler equations with force or ... – PowerPoint PPT presentation

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Title: Near-surface simulations of the acoustic field


1
Near-surface simulations of the acoustic field
  • Konstantin Parchevsky
  • Stanford University, HEPL

2
Brief description of the code
  1. Equations linearized 3D Euler equations with
    force or pressure sources.
  2. Background model convectively stabilized JCD
    Vernazza Avrett chromosphere (N2 gt0).
  3. Numerical scheme Semidiscrete,
    strong-stability-preserving Runge-Kutta time
    advancing scheme with spatial filtering.
  4. Spatial discretization dispersion-relation-preser
    ving high-order scheme with stable consistent
    boundary conditions with summation-by-parts
    properties.
  5. Boundary conditions non-reflecting boundary
    conditions based on perfectly matching (PML)
    layer .

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Power maps (observations)
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Power maps (simulations)
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Future plans
  1. Produce artificial data for estimation of
    accuracy of the inversion procedure of
    helioseismic data.
  2. Simulate interaction of acoustic field from
    multiple sources with a sunspot (change the
    background model).
  3. Calculate the Greens functions for point dipole
    source and sensitivity kernels for multiple
    sources and compare them with Aarons ones.
  4. Include magnetic field and background flows.
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