What information can thermal imaging reveal when fused with geometry in VIM that RGB alone cannot?

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Multiple Choice

What information can thermal imaging reveal when fused with geometry in VIM that RGB alone cannot?

Explanation:
Fusing thermal data with a 3D geometry lets you map heat patterns directly onto the actual structure, turning temperature information into location-specific insights. This localization is what makes the fused view powerful: you can pinpoint where insulation is failing (heat leaking through walls, roofs, or cavities) and identify hotspots in equipment or wiring that are overheating. RGB images alone show color and texture but no temperature, so they can miss these hidden thermal issues. While temperature variations are a fundamental feature of thermal imaging, the key benefit of the fusion is that those variations are tied to exact locations in the geometry, revealing insulation faults and overheating that RGB alone cannot visualize.

Fusing thermal data with a 3D geometry lets you map heat patterns directly onto the actual structure, turning temperature information into location-specific insights. This localization is what makes the fused view powerful: you can pinpoint where insulation is failing (heat leaking through walls, roofs, or cavities) and identify hotspots in equipment or wiring that are overheating. RGB images alone show color and texture but no temperature, so they can miss these hidden thermal issues. While temperature variations are a fundamental feature of thermal imaging, the key benefit of the fusion is that those variations are tied to exact locations in the geometry, revealing insulation faults and overheating that RGB alone cannot visualize.

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