标题: 以数值方法模拟振动讯号配合类神经网路在结构破坏检测之应用
THE APPLICATION OF USING N.A.M TO MODEL VIBRATION SIGNAL ASSOCIATED N.N IN EXAMINING STRUCTURE DAMAGE
作者: 杨黎熙
Lee - Shie Yang
郑复平
Fu - Ping Cheng
土木工程学系
关键字: 非破坏性检测;数值方法;类神经网路;裂缝;奇异性;动态;;N.D.T ; N.A.M ; N.N ; CRACK;SINGULAR;DYNAMICS;
公开日期: 1993
摘要: 本文尝试以PC版ANSYS5.0套装软体, 利用节点移动方式产生奇异元, 而以
有限元素法模拟建构出含各种裂缝之钢梁结构, 并求得结构模型之动态特
性, 因裂缝位置及深度的不同, 结构反应出来之动态行为也随着改变, 累
积此一差异性, 我们就可据以预测判断出裂缝之位置及深度.由本文的结
果显示出, 以移动结点至径向 1/4处产生之奇异性元素, 做为裂缝尖端之
分割元素, 可迤得到与试验相当近似之模拟效果, 同时, 以类神经网路中
之倒传递网路, 来判断单一裂缝之无束制自由钢梁之裂缝位置及深度, 可
得到满意之辨识结果, 因此以有限元素法配合类神经网路做为非破坏性检
测之工具, 将是一个可行的方法.
This research used the node moving method form the
commertcial F.E.M package,ANSYS PC version 5.0 , to deduce
singular element. F.E.M used to nodel the cracked steel
structure and fine the dynamic characteritics of this cracking
structure. The inflwence of the position and depth are compled
each orther. Suming up these characteritics, the position and
the depth of the crack can be predicted in the crack tip. In
this paper, the singular element was fromed by moving the
middle node in the radian direction to the quarter point. The
position and depth of the crack can be identified by the BP
model of neural networks excellently. Hence, combining F.E.M
and neural networks as a tool of Nnondestructive Testing will
be a appropriate approach .
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT820015032
http://hdl.handle.net/11536/57549
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