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动力机器基础碎石砂垫层隔振系统的研究
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作者 张元农 《建筑结构》 CSCD 北大核心 2019年第S02期415-418,共4页
碎石砂垫层是一种很常见地基处理方法,通过建立隔振力学计算模型对碎石砂垫层隔振系统的研究,阐述了在动力机器基础的设计中用碎石砂垫层来隔振的概念,并推导了相关公式,用工程实例说明碎石砂垫层也是一种隔振和减振的实用方法。在动力... 碎石砂垫层是一种很常见地基处理方法,通过建立隔振力学计算模型对碎石砂垫层隔振系统的研究,阐述了在动力机器基础的设计中用碎石砂垫层来隔振的概念,并推导了相关公式,用工程实例说明碎石砂垫层也是一种隔振和减振的实用方法。在动力机器基础下铺设碎石砂垫层隔振属于地基隔振,不同于工业设计和制造的具有衰减振动功能的隔振器,它施工简便,工期短,造价低,实际应用中效果良好,具有一定的使用价值。 展开更多
关键词 碎石砂垫层 隔振 基础
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Dynamic behavior of laterally loaded caisson foundations based on different cushion types: an experimental and theoretical study 被引量:3
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作者 Wen-bo TU Mao-song HUANG Xiao-qiang GU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第7期565-579,共15页
Bridge foundations located in deep water are usually subjected to horizontal dynamic loads and moments which may be caused by the wind, waves, earthquake, and the possibility of boat crashing or vehicle braking. Caiss... Bridge foundations located in deep water are usually subjected to horizontal dynamic loads and moments which may be caused by the wind, waves, earthquake, and the possibility of boat crashing or vehicle braking. Caisson foundations based on gravel or sand cushions are a new type of deep-water foundation for bridges, suitable for meizoseismal areas. In this paper, harmonic horizontal excitation tests for the study of the lateral dynamic response of caisson foundations based on cushion layers are described. Different lateral loads and two different cushion types are considered. The results show that the lateral dynamic responses of caisson foundations based on sand and gravel cushions both show strong nonlinear characteristics, and the resonant frequency of the foundation decreases with the increase of the excitation force. The dynamic displacement of a foundation based on a sand cushion is far less than that based on a gravel cushion, and the rate of decrease of the resonant frequency of a foundation based on a gravel cushion is faster than that of a foundation based on a sand cushion under the same conditions. Under dynamic loading the gravel cushion can more effectively dissipate vibration energy and isolate the vibration, than the sand cushion can. A simplified nonlinear analysis method is proposed to simulate the lateral dynamic response of caisson foundations, and the predicted response shows a reasonable match with the results observed in laboratory tests. Scaling laws have also been applied in this small-scale vibration model test to predict the dynamic behavior of the prototype foundation. 展开更多
关键词 Nonlinear dynamic response Caisson foundation Harmonic vibration test Gravel cushion Sand cushion
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