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The numerical solution of the Dirichlet generalized and classical harmonic problems for irregular n-sided pyramidal domains by the method of probabilistic solutions

Published: October 21, 2025 | arXiv ID: 2510.18667v1

By: M. Zakradze , Z. Tabagari , N. Koblishvili and more

Potential Business Impact:

Solves tricky math problems for weird pyramid shapes.

Business Areas:
Simulation Software

This paper describes the application of the method of probabilistic solutions (MPS) to numerically solve the Dirichlet generalized and classical harmonic problems for irregular n sided pyramidal domains. Here, generalized means that the boundary function has a finite number of first kind discontinuity curves, with the pyramid edges acting as these curves. The pyramid base is a convex polygon, and its vertex projection lies within the base. The proposed algorithm for solving boundary problems numerically includes the following steps: a) applying MPS, which relies on computer modeling of the Wiener process; b) determining the intersection point between the simulated Wiener process path and the pyramid surface; c) developing a code for numerical implementation and verifying the accuracy of the results; d) calculating the desired function value at any chosen point. Two examples are provided for illustration, and the results of the numerical experiments are presented and discussed.

Country of Origin
🇪🇸 Spain

Page Count
14 pages

Category
Mathematics:
Numerical Analysis (Math)