In order to meet the requirement of consistency between crack location prediction and on-site inspection or geophysical laws, crack location prediction calculation is carried out. The dataset is a txt file with the calculation results. The four English words in the first line represent nodes, stress, damage, and safety. Node numbers from left to right in the second row, x stress, y stress, z stress, xy plane stress, yz plane stress, zx plane stress, damage, safety. The third to last rows are all numerical results from the second row, with node numbers without units and all other units being 0.01mpa.
| collect time | 2023/01/01 - 2023/12/31 |
|---|---|
| collect place | Geheyan Hydropower Station |
| data size | 74.3 MiB |
| data format | *.txt |
By constructing a refined finite element simulation model of a high concrete dam, accurately inverting boundary conditions and material parameter loads, and simulating and calculating the results of its pathological disaster cracking damage process.
The calculation mainly uses finite element software SAPTIS, high concrete dam lesion disaster simulation technology, relevant works of Academician Zhu Bofang, software manuals, etc.
The simulation calculation values have been verified through feedback, and the stress cloud map distribution pattern conforms to common sense, indicating accurate model verification; The simulation of the cracking and damage process of the dam conforms to objective laws, which can be used to study the mechanism of pathological disasters.
| # | number | name | type |
| 1 | 2021YFC3090102 | National key R & D plan |
This work is licensed under
CC BY 4.0 (Creative Commons Attribution 4.0 International License).
| # | title | file size |
|---|---|---|
| 1 | dam.txt | 74.3 MiB |
| # | category | title | author | year |
|---|---|---|---|---|
| 1 | achievements | Prediction Technology and Method for Disaster Process of High Concrete Dam Damage | Zhou Qiujing | 2024 |
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