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New artificial boundary condition for saturated soil foundations
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发布时间: 2019-03-09
发布时间:2019-03-09
论文类型:期刊论文
发表时间:2012-03-01
发表刊物:EARTHQUAKE ENGINEERING AND ENGINEERING VIBRATION
收录刊物:EI、SCIE
卷号:11
期号:1
页面范围:139-147
ISSN号:1671-3664
关键字:multi-directional transmitting artificial boundary; viscous-spring artificial boundary; saturated soil foundation; Biot's equations
摘要:A new artificial boundary model based on multi-directional transmitting and viscous-spring artificial boundary theories is proposed to absorb stress waves in a saturated soil foundation in dynamic analysis. Since shear waves (S-waves) are the same in a saturated soil foundation and a single-phase medium foundation, a tangential visco-elastic boundary condition for a single-phase medium foundation can also be used for saturated soil foundations. Thus, the purpose of the artificial boundary proposed in this paper is primarily to absorb two types of P-waves in a saturated soil foundation. The main idea is that the stress of the P-waves in the saturated soil foundation is decomposed into two types. The first type of stress, sigma (ra) , is absorbed by the first artificial boundary. The second type of stress, sigma (rb) , is balanced by the stress generated by the second artificial boundary. Ultimately, both types of P-waves (fast-P-waves and slow-P-waves) are absorbed by the artificial boundary model proposed in this paper. In particular, note that the fast-P-waves and slow-P-waves are absorbed at the position of the first boundary. Thus, the artificial boundary model proposed herein can simultaneously absorb P-fast waves, P-slow waves and shear waves. Finally, a numerical example is given to examine the proposed artificial boundary model, and the results show that it is very accurate.

陈健云

教授   博士生导师   硕士生导师

性别: 男

毕业院校:大连理工大学

学位: 博士

所在单位:水利工程系

学科:水工结构工程. 防灾减灾工程及防护工程. 结构工程. 工程管理

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