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39 lines
1.6 KiB
Plaintext
39 lines
1.6 KiB
Plaintext
/*!
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\page min_distance_page Minimum Distance
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This operation returns the minimum distance between two geometrical objects.
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\image html distance.png
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The query for minimum distance can find one or more solutions, or even an infinite set of solutions.
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However, the currently used OCCT algorithm finds a finite number of
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solutions even if an infinite set of solutions exists.
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Select one of the found solutions in the \b Solution list to display it in the Viewer show values corresponding to this solution in the following fields:
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- \b Length - the distance value;
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- \b DX, \b DY and \b DZ the vector coordinates.
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Press \b Apply or <b>Apply and Close</b> button to create a set of closest
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points, corresponding to all found solutions.
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\note This dialog supports navigation through the selectable objects (in OCC 3D viewer only):
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- Scroll mouse wheel with pressed \em Ctrl key or press \em "S", \em "P" keys when input focus is
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in the viewer to navigate between selectable objects.
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- Press left mouse button to select an appropriate object to the dialog box.
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.
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For more details, please refer to the \em "Functionality common for OCC and VTK viewers" chapter
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of the GUI module's documentation.
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<b>TUI Commands:</b>
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- <em>aDist = geompy.MinDistance(Shape1, Shape2),</em>
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- <em>[aDist, DX, DY, DZ] = geompy.MinDistanceComponents(Shape1, Shape2),</em>
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- <em>[nbSols, (x11, y11, z11, x21, y21, z21, ...)] = geompy.ClosestPoints(Shape1, Shape2),</em>
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.
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where \em Shape1 and \em Shape2 are the shapes, between which the minimal
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distance is computed.
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See also a \ref tui_min_distance_page "TUI example".
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*/
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