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solidificationFront2D.js
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50 lines (40 loc) · 1.72 KB
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/**
* ════════════════════════════════════════════════════════════════
* FEAScript Core Library
* Lightweight Finite Element Simulation in JavaScript
* Version: 0.3.0 (RC) | https://feascript.com
* MIT License © 2023–2026 FEAScript
* ════════════════════════════════════════════════════════════════
*/
// Import Math.js
import * as math from "mathjs";
global.math = math;
// Import FEAScript library
import { FEAScriptModel, printVersion } from "feascript";
console.log("FEAScript Version:", printVersion);
// Create a new FEAScript model
const model = new FEAScriptModel();
// Select physics/PDE
model.setModelConfig("frontPropagationScript");
// Define mesh configuration
model.setMeshConfig({
meshDimension: "2D",
elementOrder: "quadratic",
numElementsX: 12,
numElementsY: 8,
maxX: 4,
maxY: 2,
});
// Define boundary conditions
model.addBoundaryCondition("0", ["constantValue", 0]); // Bottom boundary
model.addBoundaryCondition("1", ["constantValue", 0]); // Left boundary
model.addBoundaryCondition("2", ["zeroGradient"]); // Top boundary
model.addBoundaryCondition("3", ["constantValue", 0]); // Right boundary
// Set solver method (optional)
model.setSolverMethod("lusolve");
// Solve the problem
const { solutionVector, nodesCoordinates } = model.solve();
// Print results
console.log(`Number of nodes in mesh: ${nodesCoordinates.nodesXCoordinates.length}`);
console.log("Node coordinates:", nodesCoordinates);
console.log("Solution vector:", solutionVector);