A method of engineering building evolution
By constructing a digital mapping of the entire life cycle of buildings and structures through digital twin technology, the problems of resource waste, reduced safety, and information gaps in the renovation of existing buildings and structures have been solved. This has enabled low-carbon emission reduction and dynamic demand adaptation throughout the entire process, and improved the accuracy of construction management and the recycling rate of building materials.
Patent Information
- Authority / Receiving Office
- CN ยท China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- CHANGCHUN GOLD DESIGN INST
- Filing Date
- 2026-06-11
- Publication Date
- 2026-07-14
AI Technical Summary
In existing technologies, the renovation of existing buildings and structures lacks a systematic, full-lifecycle evolution plan, resulting in resource waste, reduced safety, information gaps, inability to achieve low-carbon emission reduction, inability to accurately adapt to dynamic needs, and inability to achieve full-process digital closed-loop management.
By constructing a digital mapping of the entire life cycle of buildings and structures through digital twin technology, a full-process digital closed-loop evolution system of "demand identification - strategy generation - simulation verification - construction control - closed-loop iteration" is established to achieve accurate adaptation of buildings and structures to dynamic needs, and a hierarchical evolution strategy is adopted to replace the traditional static renovation mode of large-scale demolition and construction.
It has enabled the sustainable evolution of buildings and structures through multiple cycles with low disturbance and low carbon emissions throughout their entire life cycle, solved the problems of resource waste and safety, improved the accuracy of design and construction management, realized the recycling of building materials and low-carbon construction, and adapted to dynamic changes in demand.
Smart Images

Figure CN122390911A_ABST