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振动频率对饱和黏性土动力特性的影响
引用本文:张茹,涂扬举,费文平,赵忠虎.振动频率对饱和黏性土动力特性的影响[J].岩土力学,2006,27(5):699-704.
作者姓名:张茹  涂扬举  费文平  赵忠虎
作者单位:1. 四川大学,水利水电学院,成都,610065
2. 四川大学,水利水电学院,成都,610065;国电大渡河流域水电开发有限公司,成都,610000
摘    要:在回顾加荷频率对土样动力特性影响的研究基础上,采用某土石坝心墙防渗黏性土饱和试样,通过动三轴试验,研究了振动频率f对土样动力特性的影响。动强度试验结果表明:当 0.1~4 Hz时,动强度随f的升高而增大,但f继续升高后,动强度却有下降趋势。当 0.1~1.0 Hz时,频率愈高动孔压比愈大;当 1.0~6.0 Hz时,总的趋势为频率愈高,动孔压比愈小。表明频率较高时,动孔隙水压力来不及上升和扩散。较高频率f持续作用下,试样有吸水现象并伴随动孔压的下降。动模量阻尼试验结果是:f愈低,试样动变形开展愈充分;f愈高,动模量和阻尼比愈大。

关 键 词:振动频率  饱和黏性土  动强度  动孔压  动模量阻尼
文章编号:1000-7598-(2006)05-0699-06
收稿时间:2004-08-30
修稿时间:2005-01-14

Effect of vibration frequency on dynamic properties of saturated cohesive soil
ZHANG Ru,TU Yang-ju,FEI Wen-ping,ZHAO Zhong-hu.Effect of vibration frequency on dynamic properties of saturated cohesive soil[J].Rock and Soil Mechanics,2006,27(5):699-704.
Authors:ZHANG Ru  TU Yang-ju  FEI Wen-ping  ZHAO Zhong-hu
Affiliation:1.School of Water Resources and Hydropower, Sichuan University, Chengdu 610065, China; 2. China Guodian Dadu Hydropower Development Co., Ltd., Chengdu 610000, China
Abstract:To study the effect of vibration frequency on soil dynamic characteristics, firstly the related research outcomes are reviewed, then the dynamic triaxial tests which used core material of one rockfill dam were performed. The results of dynamic intensity tests show that with the increasing of vibration frequency f, dynamic intensity increases when f equals to 0.1-4 Hz; and with the increasing of f, dynamic porewater pressure ratio increases during f equals to 0.1-1.0 Hz while decreases during f equals to 1.0-6.0 Hz. Under the sustaining operation of higher frequency, there are phenomena of sample sopping up and dynamic porewater pressure declining. This means it hasn’t enough time for dynamic porewater pressure to climb and extend when f is much higher. And the results of dynamic modulus and damping ratio tests show that the lower the vibration frequency acting on the sample, the more sufficiently dynamic deformation could develop; both dynamic modulus Ed and damping ratio D increase with vibration frequency.
Keywords:vibration frequency  saturated cohesive soil  dynamic intensity  dynamic porewater pressure  dynamic modulus and damping ratio
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