基于地形融合与锚点路径拟合的山地建筑设计方法和系统

By identifying flat areas, planning building base outlines, and setting anchor points in mountain architecture design, a three-dimensional streamline network is generated, solving the problems of low terrain fusion accuracy and mismatch of three-dimensional connection paths, and realizing efficient integration of buildings and terrain and a convenient pedestrian system.

CN122413554APending Publication Date: 2026-07-17ARCHITECTURAL DESIGN & RES INST OF SOUTHEAST UNIV CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
ARCHITECTURAL DESIGN & RES INST OF SOUTHEAST UNIV CO LTD
Filing Date
2026-06-10
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In complex terrain environments such as mountains and hills, existing architectural design methods suffer from low terrain integration accuracy and mismatch between the three-dimensional connection path between the building and the mountain, resulting in large amounts of earthwork excavation and ecological landform modification.

Method used

A design method based on terrain fusion and anchor point path fitting is adopted. By identifying the target flat area, planning the building base outline, setting up building and mountain anchor points, and generating a three-dimensional streamline network, the precise integration and dynamic fit between the building and the terrain are achieved.

Benefits of technology

It reduces earthwork excavation and ecological landform modification, achieves efficient integration of buildings with natural terrain, and provides a convenient and comfortable three-dimensional pedestrian system.

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Abstract

本发明公开基于地形融合与锚点路径拟合的山地建筑设计方法和系统,通过在目标山地中识别和规划目标平坦区,将建筑体量模型导入目标平坦区中,在建筑体量模型边缘布设若干个建筑边缘候选锚点,并在数字地形模型上对应生成若干个山体连接候选锚点;将建筑边缘候选锚点与山体连接候选锚点两两进行配对,输出最优锚点对;将最优锚点对中的建筑边缘候选锚点与山体连接候选锚点进行直线连接,上述直线和目标山体等高线、建筑体量模型边缘线共同形成流线网络,通过进一步相互连接最终形成完善的连接山体和建筑的三维流线网络。该方法实现了科学地在山体中进行建筑落位及建筑和山体的路径连接,极大减少了土方开挖与生态地貌改造。
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