{ "metadata": { "name": "3D rendering with vtkTools" }, "nbformat": 3, "nbformat_minor": 0, "worksheets": [ { "cells": [ { "cell_type": "code", "collapsed": false, "input": "import numpy as np, vtk\nimport SimPEG as simpeg", "language": "python", "metadata": {}, "outputs": [], "prompt_number": 1 }, { "cell_type": "code", "collapsed": false, "input": "#Make a mesh and model\nx0 = np.zeros(3)\nh1 = np.ones(20)*5\nh2 = np.ones(10)*10\nh3 = np.ones(5)*20\n\nmesh = simpeg.mesh.TensorMesh([h1,h2,h3],x0)\n", "language": "python", "metadata": {}, "outputs": [], "prompt_number": 2 }, { "cell_type": "code", "collapsed": false, "input": "# Make a models that correspond to the cells, faces and edges.\nmodels = {'cell':{'Test':np.arange(0,mesh.nC),'AllOnce':np.ones(mesh.nC)},'face':{'Test':np.arange(0,np.sum(mesh.nF)),'AllOnce':np.ones(np.sum(mesh.nF))},'edge':{'Test':np.arange(0,np.sum(mesh.nE)),'AllOnce':np.ones(np.sum(mesh.nE))}}\n# Make the vtk viewer object.\nvtkViewer = simpeg.visulize.vtk.vtkView(mesh,models) \n ", "language": "python", "metadata": {}, "outputs": [], "prompt_number": 3 }, { "cell_type": "code", "collapsed": false, "input": "# Show the image \nvtkViewer.Show(imageType='cell')\n", "language": "python", "metadata": {}, "outputs": [], "prompt_number": 4 }, { "cell_type": "code", "collapsed": false, "input": "", "language": "python", "metadata": {}, "outputs": [], "prompt_number": 4 } ], "metadata": {} } ] }