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1)  two-step damage identification
分步损伤识别
2)  step-by-step damage identification
损伤分步识别
1.
The step-by-step damage identification method for long-span cable-stayed bridge by use of different neural networks is beneficial to the improvement on both the efficiency and exactness of damage detection and the feasibility of applying the damage identification method in real structures.
结合神经网络技术进行了斜拉桥损伤分步识别的系统性研究,提出了具体的斜拉桥损伤分步识别过程,给出了每一识别步骤中适当的损伤识别参数,可实现斜拉桥主要构件即拉索和主梁中损伤的有效识别。
3)  damage detection
损伤识别
1.
Applications of neural networks in quantitative analysis of damage detection;
神经网络法在定量损伤识别研究中的应用
2.
Challenges in applying the vibration-based damage detection to civil structures;
土木工程结构振动损伤识别面临的挑战
3.
Application of wavelet transform for early-stage damage detection;
小波变换在早期损伤识别中的应用
4)  damage identification
损伤识别
1.
The damage identification method based on fuzzy clustering and support vector machine;
基于模糊聚类和支持向量机的损伤识别方法
2.
Study on the structural damage identification method based on interval estimation;
基于区间估计的结构损伤识别方法研究
3.
A structural damage identification method based on sensitivity analysis of modal parameter error function;
基于模态误差函数灵敏度分析的损伤识别方法
5)  damage recognition
损伤识别
1.
The application of neural net in bridge damage recognition;
神经网络法在桥梁损伤识别中的应用
2.
Study on Application of Fiber Bragg Grating Senor in Structural Damage Recognition;
光纤布拉格光栅应变传感器在结构损伤识别中的应用研究
3.
Analysis of structural damage recognition based upon BP neutral net
基于BP神经网络的结构损伤识别分析
6)  multiple damage detection
多损伤识别
1.
Based on the curvature mode and flexibility curvature,the multiple damage detection of the first step modal index to one cantilever beam and one simple beam with same damage but different location in different numerical computing cases are calculated by using the result of modal analysis.
以具有损伤位置不同但损伤刚度相同的变截面悬臂梁和简支梁为研究对象,通过结构模态分析,以曲率模态和柔度曲率为识别参数,计算各种工况下仅用第1阶模态参数的多损伤识别结果并进行了对比。
补充资料:分步结晶
      一种古老的用于分离化学性质相近的金属化合物的方法。此法依靠化合物间溶解度的微小差别,通过重复操作而达到分离的目的。钽、铌复合氟化物(如K2TaF7和K2NbOF5·H2O)的分步结晶,锆、铪复合氟化物(如K2ZrF6和K2HfF6)的分步结晶,铷、钾草酸盐的分步结晶,轻稀土硝酸盐和硝酸铵(或硝酸镁)复盐的分步结晶等,都曾经在工业上应用。此法近年来虽然多被溶剂萃取法和离子交换法所代替,但在某些条件下仍然应用。
  

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