Unit type glass curtain wall connecting component performance evaluation system based on data analysis
By constructing a multi-dimensional component state space and virtual node model, generating a performance response field, and calculating a health sequence, the problem of real-time performance evaluation of unitized glass curtain wall connection components in existing technologies is solved. This enables continuous trajectory tracking and intelligent evaluation throughout the entire life cycle, improving the timeliness and objectivity of operation and maintenance management.
CN121960011APending Publication Date: 2026-05-01WUXI HENGSHANG DECORATION ENG CO LTD
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Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- WUXI HENGSHANG DECORATION ENG CO LTD
- Filing Date
- 2025-12-24
- Publication Date
- 2026-05-01
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Figure CN121960011A_ABST
Abstract
The invention discloses a unit type glass curtain wall connecting component performance evaluation system based on data analysis, and relates to the technical field of structural component testing, and the system comprises a response field generation module which is used for receiving a virtual node model, and applying a predefined load spectrum sequence to the virtual node model for numerical simulation, generating and outputting a performance response field describing continuous performance evolution; and the health degree sequence calculation module is used for receiving the performance response field, extracting features from the performance response field according to a pre-constructed degradation criterion function, and calculating and outputting a health degree scalar sequence reflecting performance evolution. According to the method, parameterized scanning and numerical simulation are carried out on the virtual node model through the response field generation module, a continuous performance response field with load amplitude and duration as independent variables and key part stress response as a dependent variable is constructed, continuous mapping of performance evolution of a component under different load working conditions is achieved, and the reliability of the component is improved. And a high-fidelity and inquirable mechanical response reference is provided for fatigue damage analysis.
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