Particle movement driving finite element algorithm applied to PIC
A particle motion and finite element technology, applied in special data processing applications, calculations, instruments, etc., can solve problems such as poor boundary matching, heavy numerical simulation burden, and low solution accuracy, and achieve optimal spatial grids and time steps The effect of long, simple calculation and high calculation accuracy
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[0053] The present invention will be described in further detail below through implementation examples.
[0054] Taking the ion thruster seven-hole double-grid ion optical system as an example, the schematic diagram is as follows Figure 5 shown. Adopt algorithm among the present invention to carry out the specific implementation steps of PIC electrostatic simulation to this example as follows:
[0055] Step 1, electric field solution.
[0056] The electric field at all grid points is obtained by solving the electrostatic discrete Poisson equation satisfied by the electric field;
[0057] Step 2. Solve the ion force, obtain the potential distribution in the grid through the potential value on the relevant grid point, and solve the negative gradient to obtain the electric field at the position of the particle, and then solve the force;
[0058] Step 3. Promote ion movement.
[0059] Using the global unstructured grid, by solving the discrete ion motion equation, update the ...
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