Method for accurately capturing shock wave discontinuity surface based on weighted bidirectional mapping
A bidirectional mapping and discontinuous surface technology, applied in the field of computational explosion mechanics, can solve the problems that Euler algorithm is difficult to clearly track discontinuous surface history, Lagrange large deformation and distortion, etc., to achieve the effect of accurate capture and accurate tracking
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[0058] Taking the explosion problem of strong shock wave propagation produced by the gas explosion in the mine tunnel as an example, there is a strong discontinuity on the shock wave interface, which can reflect the tracking accuracy of the algorithm for the discontinuity surface; and can output any point in the calculation area The pressure-time curve, and based on the damage criterion, the target damage assessment analysis is carried out. The specific implementation method comprises the following steps:
[0059] 1. Create a simulation model for the explosion problem, and initialize the created simulation model, including determining the size of the calculation domain, the position information and geometric size information of various materials in the calculation domain, the grid step size and coordinates, and the size of the particle Layout, material properties and parameters, boundary conditions and virtual particle settings, initial calculation control parameters, etc.;
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