arXiv:2504.04448cs.CVeess.IV2025-04被引 4

用稀疏影像生成可直接用于热仿真建模的3D体素模型

Thermoxels: a voxel-based method to generate simulation-ready 3D thermal models

  • 基于体素构建含颜色与温度信息的3D场景表示
  • 生成的模型经转换后可直接用于有限元分析,热传导仿真成功收敛
  • 适合建筑节能评估、智能运维等需要高精度热建模的场景

欧盟建筑占能源消耗42%和温室气体排放35%。由于多数现有建筑将在2050年前继续使用,改造是减排关键。当前评估多依赖定性热成像,难以支持数据驱动决策;而基于有限元分析(FEA)的定量评估虽精确,却需手动建模,耗时且易错。近期3D重建技术如NeRF和Gaussian Splatting能从稀疏图像生成精准3D模型,但缺乏明确定义的体积极其界面,无法直接用于FEA。本文提出Thermoxels,一种基于体素的新方法,仅需稀疏的RGB与热成像即可生成包含几何与温度信息的FEA兼容模型。通过优化体素表示,再经简单转换生成四面体网格,适配于FEA。实验表明,Thermoxels能生成高质量的RGB+热成像三维网格,优于现有先进方法。进一步应用中,利用其热重建初始化状态,成功完成热传导仿真并实现收敛。同时,与现有方法对比显示其图像合成能力具有竞争力,并指出当前评估网格质量指标的局限性。

原文摘要 · Abstract (English)

In the European Union, buildings account for 42% of energy use and 35% of greenhouse gas emissions. Since most existing buildings will still be in use by 2050, retrofitting is crucial for emissions reduction. However, current building assessment methods rely mainly on qualitative thermal imaging, which limits data-driven decisions for energy savings. On the other hand, quantitative assessments using finite element analysis (FEA) offer precise insights but require manual CAD design, which is tedious and error-prone. Recent advances in 3D reconstruction, such as Neural Radiance Fields (NeRF) and Gaussian Splatting, enable precise 3D modeling from sparse images but lack clearly defined volumes and the interfaces between them needed for FEA. We propose Thermoxels, a novel voxel-based method able to generate FEA-compatible models, including both geometry and temperature, from a sparse set of RGB and thermal images. Using pairs of RGB and thermal images as input, Thermoxels represents a scene's geometry as a set of voxels comprising color and temperature information. After optimization, a simple process is used to transform Thermoxels' models into tetrahedral meshes compatible with FEA. We demonstrate Thermoxels' capability to generate RGB+Thermal meshes of 3D scenes, surpassing other state-of-the-art methods. To showcase the practical applications of Thermoxels' models, we conduct a simple heat conduction simulation using FEA, achieving convergence from an initial state defined by Thermoxels' thermal reconstruction. Additionally, we compare Thermoxels' image synthesis abilities with current state-of-the-art methods, showing competitive results, and discuss the limitations of existing metrics in assessing mesh quality.

3D建模热仿真体素建筑节能

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