Deep learning model for displacement monitoring of super high arch dams based on measured temperature data
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,Electrical and Electronic Engineering,Condensed Matter Physics,Instrumentation
Reference46 articles.
1. Data-Based Models for the Prediction of Dam Behaviour: A Review and Some Methodological Considerations;Salazar;Arch. Computat. Methods Eng.,2017
2. A novel deep learning prediction model for concrete dam displacements using interpretable mixed attention mechanism;Ren;Adv. Eng. Inf.,2021
3. Performance-improved TSVR-based DHM model of super high arch dams using measured air temperature;Yuan;Eng. Struct.,2022
4. Structural inverse analysis of concrete dams: considering residual hydration heat effect on dam displacements | SpringerLink. https://link.springer.com/article/10.1007/s00366-022-01675-w?utm_medium=affiliate&utm_content=meta. Accessed 30 May 2023.
5. Automatic Damage Detection and Diagnosis for Hydraulic Structures Using Drones and Artificial Intelligence Techniques;Zhu;Remote Sens. (Basel),2023
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